Showing posts with label diet. Show all posts
Showing posts with label diet. Show all posts

Friday, December 13, 2013

The Starch Satiety Shootout: Potatoes, Baked or Mashed, Pasta, Brown Rice or Even White Bread? What's the Best After a 12h Fast? Plus: Science Round-Up Preview!

Pasta! From a satiety perspective even white bread would be a better choice for breakfast.
It's one of those Thursday's where I am alone here at the SuppVersity - no Adelfo Cerame Jr. guest lecture today. But don't worry, there will not only be another guest post next Thursday, but both, today's SuppVersity post, which is actually related to Adelfo's "Carbophobia" post from last week, as well as the SuppVersity Science Round-Up  with Carl Lanore (live at 1PM EST on the Super Human Radio Network), will compensate at least somewhat for Adelfo's absence.

Apropos Science Round-Up, I am absolutely not sure where today's show will be heading to, but I can tell you that by now it looks as if we would start out with a very recent study on the leucine <> leptin connection and it's role in getting big and ripped.

It stands to reason that the big "L"s are not going to get the job done without some sort of workout, we will then segue into the acute hormonal effects of doing cardio before vs. after a workout - something I suppose many of you who have listened to the last installment and read the follow-ups (the Seconds and the post on PGC-1 alpha-4), here at the SuppVersity, will be intrigued to hear and something on which I want to provide a little more background information with respect to the role of fasting, overall energy intake, glyogen depletion, stress and a couple of other things that will primarily effect your luteinizing hormone levels and are thus equally important for male and female SuppVersity students.

I am honestly not sure how much time will be left, afterwards, but either live at 1PM EST, or as part of tomorrows "Seconds" you will also get the chance to learn something about the little known link between nicotine (as in cigarettes) and brain aromatase, the muscle building effects of exercise induced nNOS and the certainly not advisable, but probably likewise anabolic effects of capsaicin injections. And while there is more on the list, I guess this is enough for a preview... unless you were waiting for me to mention the endocrine disrupting effects of bottled water? No!? Well, then let's finally get to the actual post ;-)

Judging carbohydrates by their GI is like adopting another man's prejudice

As I already mentioned today's post is in a way an indirect follow up on Adelfo's confession that his love-and-hate affair with carbohydrates turned into a true friendship now. I mean starches are carbs and though Adelfo explicitly said that he says a place (in moderation) for all of them in his diet, it would be nice to know a little more about the differences between the dreaded potatoes, of which I have argued before that it is in your own hands whether they will (French fries, meshed potatoes, puree, etc.; "The Potato Manifesto") turn into a problem, or not, the demonized white bread and the "healthy" - since organic and brown - starch from pasta and rice.

I guess Allan Geliebter Michelle, I.-Ching Lee, Mariane Abdillahi and James Jones from the New York Obesity Nutrition Research Center at the St. Luke’s-Roosevelt Hospital Center that's part of the Columbia University College of Physicians and Surgeons in New York, when they devised the experimental procedures for their latest study (Geliebter. 2013). And in fact their approach to the problem appears to be pretty down to earth. Instead of just measuring insulin, glucose and what-not - we have had other scientists do that before - they simply fed their twelve healthy normal-weight participants (6 male, 6 female; mean age 25.6 years,  mean BMI 22.4kg/m², mean percent body fat 19.0%) who were recruited from the Columbia University community equienergetic portions (240kcal) of starch-rich side dishes:
  • baked potato, no skin - nutrient composition as
  • mashed potato, instant - Betty Crocker Idaho potato buds
  • brown rice - Carolina natural whole grain brown rice
  • pasta - Bionature organic pasta
  • white bread - Wonder Classic Giant*
As the (*) indicates, the white bread was in there mainly as a GI standard (you usually supply GI values w/ reference to either glucose or white bread) and in order to make sure that it had it's 50g of carbs, just like all the other meals, the scientists needed so much that the overall caloric value of this "standard" meal was 33kcal higher (keep that in mind, thats ~12.5% and could therefore very well make a difference). In order to exclude any confounding variables, the water content (400g) and salt content were likewise standardized - both were added if necessary.

Pasta, rice and potatoes for breakfast?

In know, its not realistic that you have only pasta, rice, potatoes or white bread ... hold on, I know a couple of people in fact a large amount of my students eats nothing but white bread right from the baker for breakfast in their first lecture of the day :-( So it's not that unrealistic: At least we could ask ourselves would they be better off, if they ate potatoes, pasta or rice as their first meal after a 12h overnight fast, when maximal satiety is what we are looking for?
Figure 1: Hunger ratings and desire to eat from 10min before to 120min after the breakfast (Geliebter. 2013)
Well let's see, what do we have here? First off, one thing that's not in any of the graphs is the statistically significant gender bias, with the women experienced greater fullness across the test meals than men (p < 0.01). As far as the rest is concerned, the ...
  • AUC of the appetite ratings from 10 minutes before to 120min after the ingestion of the meal did not differ, and still there was a...
  • lower ‘desire to eat’ AUC following bakedpotato compared to pasta (p = 0.027) and brown rice (p = 0.004) and a much less significant advantage for rice over pasta (p = 0.041);
  • changes in fullness, however, did not differ between test meals (not shown in figure 1)
So, obviously the baked potato, which was incidentally the only food that had no nutrition label (all the rest was packaged branded and labeled), was the subjectively most satiating starch source, followed by rice and trailed by the mashed potatoe and the distant (given the overall difference) "healthy" pasta.

So, to get back to my research question, whether my real students (not you, but those at the University), would be better off eating another bland starch instead of their buns, the answer would be yes - in the long run, both brown rice and baked potatoes would qualify. 

Potato-ish insulin spikes and low GI white bread

What is interesting though, is that the spike in the "How much food could you eat now?" graph in figure 2 coincides with the early insulin spike in response to the potato meals. If you are into grazing like a cow, i.e. if you like to eat bazillions of small meals, all day long, potatoes may therefore be not your best choice.
Figure 2: Insulin after breakfast,estimation how much the participants believe the could eat and calculated GI values (based on the measured glucose response; Geliebter. 2013)
What could be downright surprising for some of you, I guess, is yet probably the fact that anyone adhering to a low GI diet, would actually have to copy my students and eat the white bread, which had the lowest GI of all the test meals ... but I guess this and the fact that pasta by far the least satiating of the 4 meals had an only 7.6% higher GI should be the nail to the real-world relevance of the glycemic index, anyway.

The non-significance of the glycemic index  was also evident during the following lunch, where the subjects were allowed to chose or simply eat both of an on an individual base already non-manageable amount of chicken or tuna salad with mayonnaise, celery, salt, and pepper that were served "in covered serving containers with openings on top to reduce visual feedback" (Geliebter. 2013) and bundled with six slices of wheat bread and six slices of seedless rye bread:
"The group mean IAUC glucose and GI using the white bread standard and adjusted for the glucose load standard are listed in table 2 . Mashed potato had the highest GI of the side dishes. The correlation between the group mean fullness AUC and the group mean GI was 0.59. The correlation between the group mean fullness AUC and the group mean lunch energy intake was –0.21. These corrrlations are not significant." (Geliebter. 2013)
Remember Peter Czerwinski, aka Furious Pete's 900g of protein in 3:30min binge (Furios Pete, 2010)? No? In that case the fact that whey is more insulinogenic than white bread is probably news to you, as well, after all, the video was part of the SuppVersity post discussing that.
So, if you intend to become friends with starches and other carbohydrates, just like Adelfo did, don't judge them by the GI value you've found in whatever online or print source. Don't fear potatoes and if you need something to count to satisfy your OCD tendencies, count total amount carbohydrates (not the rice crumbs), keep the simple sugars in check and match both of them to your personal preferences / needs.

The GI is not the "unit of food quality"

And if that's not enough counting for you, what about counting the nutritional labels on the stuff you buy? The less you have, the better your diet - after all, whole foods you buy at the farmer's market or wherever else you can still get non-industrialized real food, does not have nutritional labels ;-)

References:
  • Geliebter A, Lee MI, Abdillahi M, Jones J. Satiety following Intake of Potatoes and Other Carbohydrate Test Meals. Ann Nutr Metab. 2013 Dec 4;62(1):37-43.

Friday, November 22, 2013

Adelfo Cerame: Contest Prep Update on Turkey Day! Plus: Losing Fat W/ Intermittent Fasting & 200g Carbs/Day Works

When you look at these images yo will have to concede that Adelfo brings a better conditioning to the Thanksgiving table than many a competitor to the stage ;-)
In a way it's funny how the Internet has brought us all so close together and yet we still have so little in common, when we are not "on the line". I believe it was two weeks ago, when I almost missed my own radio show on Thursday, because I assumed there wouldn't be a SuppVersity Science Round-Up on a holiday. Literally in the last minute I thought, maybe you better check whether the US guys have a holiday, as well - and what should I say? You didn't! Today, I am just back from the office and do now have an 'evening off', 'cause today it's you (or at least ~65% of you, which is the relative amount of US visitors in the last week), who have a holiday that' leaving me somewhat clueless why you are giving thanks and I am not ;-)

In the end, it does not matter for me what the deeper meaning of Thanksgiving is, as long as I know that you spend the day with your loved ones, it's a day to celebrate and that's all that counts - so HAPPY THANKSGIVING! Enjoy Adelfo's short progress update and get your share of the holiday roast - even if it will have it's share in the 0.5kg the average college student in a 2006 study by Hull et al. gained during the Thanksgiving holiday (. I will make sure there is "Get Lean and Stay Lean Quickie" either on Sunday or Monday, just in case ;-)

Happy Turkey Day SuppVersity readers! 

I’m going to make this short and sweet since I know most of you will be celebrating the Thanksgiving holiday with loved ones and eating good food, because I know I will. I’ve been getting some comments and request from a few people for an update on my progress, and I know I have not done one in a while, so this will be just a quick update on my diet, training and progress pictures… I promise that’s all!
Figure 1: Adelfo's current total caloric intake and macronutrient ratio (left); Adelfo's latest progress pics (right) comparing photos from week 2 and week 7 of this contest prep (img. Adelfo Cerame Jr. 2013).
Trainingwise, I am still following the Hybrid of P.H.A.T. training using an RPE scale with 3 to 4 workouts per week depending on what day workouts land (click here to learn more about Adelfo's routine). In addition I am doing cardio twice a week: 9 laps around a trace. Everything is pretty much the same since I started in October - the aforementioned cardio is in fact he only addition I have made to my regimen at the beginning of this month.

One thing I do notice is that my carb intake is a lot higher this year and has not yet to change. By this time last year I was probably already at 125-150g of carbs. I never realized that I was able to maintain 200g of carbohydrates (which is big for me) for a long period of time while still dropping body fat. 

When I come to think about it, it's probably less that I could not do it, but rather that I never even gave the 200g of carbs per day a chance. Ever since working with coach Alberto, I’ve learned that dieting and listening to your body is like a game of wits, and sometimes, the best move is no move, at all.
Image 1: Progress picture (backshots) comparing week 2 and week 7 of this competition (Adelfo Cerame. 2013)
With regards to my training split, it’s still kicking my ass day in day out. I’m exhausted most days every time I stroll out the gym after a training session. I feel sore more than usual nowadays, and my muscles feel tight like I’m somewhat pumped all day long. After mentioning this to Alberto and maybe second guessing myself that it was just in my head; he assures me that it’s not in my head…
“Just pushing you a bit on the frequency tip which is important for an athlete of your level. We will go back and fourth with it, and you are NOT imagining what you feel dude. Your muscle are under constant turnover now, and because of this I think you will keep a much fuller look.”
Here is another conversation between coach Alberto and I, when I mentioned still feeling sore and tight but was feeling and noticing more density in my frame especially in my chest area because I feel that the chest area is my weakest body part…
“Yep! It was about time you rode the frequency train. It’s going to pay off! This week we are going to not change a thing, since we added more cardio. I want to cruise a bit this month December push a bit, but right now it’s coming off easy. We will have some good detail in your back by the end of the month.

So far so good, and given the new frequency you are working with I think you are going to really see you keep more even though you got leaner”
But yes… I am very pleased with my training and how everything is coming along. I am confident that I will be able to outdo my old self this coming March of 2013.
Image 2: Progress picture (front double biceps) week 2 vs. week 7 of this competition (Adelfo Cerame. 2013)
That’s all I have for this Thursday edition but since it is the holidays, just in case you didn’t get to read it last year. I wrote an article on “5 simple rules to survive the feast without too much damage” So for those of you who just started following my blogs; here is the link to the respective article.

Have A blessed Holiday SuppVersity readers!


References:
  • Hull HR, Hester CN, Fields DA. The effect of the holiday season on body weight and composition in college students. Nutr Metab (Lond). 2006 Dec 28;3:44.

Monday, November 4, 2013

Get Lean & Stay Lean Quickie: Add Cinnamon to Cereals. NPY Detrimental? Melatonin Beneficial! 50,000IU Vitamin D3 Useless. Phtalate DHEP Dangerous! PPAR, AKT & GLUT-4 Agonist From False Black Pepper Surprisingly Potent!

In 1998 the Consumer Union wrote a letter to the FDA complaining about the occurrence of DEHP and other "endocrine disrupting chemicals" in cheese and dairy of which they suspected that they were partially emitted from the plastic wrappings (read more)
Those of you who are following the SuppVersity news on Facebook very closely, will be aware that I announced yesterday, already that there was going to be another installment of On Short Notice, today... another "Quickie", so to say with a couple of selected news on getting and staying lean. Something I know is pretty much a pain in the a** of most of us and if you take a closer look at the news about phtalates it is actually no wonder. I guess on their own those nasty plasticizers would probably not even be a problem, but together will all the other byproducts of our convenient lives, they form a perfect storm.

And you know what's worst, simply wrapping all those plastics that 'infect' even organic foods with the 'P-Virus' around your waist while you're working out will probably make things worse, not better.

Let's get down  to business ;-)

Enough of that! Are you ready for today's quickie -- Note: The next installment of the Athletes' Triad is scheduled for next week. I am honestly sorry for these delays, but I just have "real" work to do on the weekends at the moment and no time to do the respective research that would be necessary to provide you with not just any, but actually useful information. In the mean time I hope you like this post, as well.
  • 6g of cinnamon stretch postprandial glucose response to cereals over more than 2h. That's the result of the latest study from the Ball State University in Muncie (Magistrelli. 2013). Interestingly the effects of 6g of ground Cassia Cinnamon were independent of the body weight and metabolic health of the thirty-seven 18 to 30 year-old normal-weight and obese study participants.

    Figure 1: Postprandial blood glucose with plain cereal containing 50g  carbs and the same cereal with cinnamon in all subjects, normal-weight and obese; by the way if you go by the AUC I doubt there is a benefit, after all the glucose does not drop base to baseline within 120min (Magistrelli. 2013).
    There is however one slight downside to this study: The scientists measured the blood glucose response for only 120min. If you take a look at the graph in figure 1 you will immediately notice that the co-ingestion of 75g of "Cream of Wheat", an instant farina cereal, with 6g of regular cinnamon did lead to a 24% reduction in the area under the glucose curve, but only if you discard what happened after the 120-min period the scientists used to measure. After all, the co-administration of Cassia cinnamon did not do anything that could not be ascribed to a mere reduction in glucose uptake - there is no evidence for an improvement of insulin sensitivity here. On the other hand, the absence of spikes in blood glucose will protective effects against the development of type II diabetes, esp. in the presence of a diet that's overall high in carbohydrates where one blood sugar spike chases the other.
    "To date, no study has documented cinnamon's influence on postprandial blood glucose after a mixed meal. Although preliminary in nature, the available research suggests cinnamon supplementation can significantly reduce short-term glycemic response in healthy adults." (Magistrelli. 2013)
    The last information is actually pretty surprising. Personally I expect the effects to be less pronounced with mixed meals, but since we still don't really know the underlying mechanism it's difficult to predict what exactly is going to happen, when you eat a spoon full of cinnamon right before your steak with rice. This as well as the previously discussed prolonged elevation of blood glucose (see figure 1)  actually raise some doubts about the real-world usefulness of eating tons of cinnamon if you don't actually like it, just as a way to manage blood glucose - specifically if you are not a type II diabetic (or on your way to become one) and avoid "food" like cereals and similar junk, anyways.
  • Neurpeptide Y (NPY) does not protect against obesity -- Based on the results of a recent rodent study from the University of Turku in Finland, it seems that the exact opposite is the case. In that it does not seem as if it would fail to make you satiated and happy. Rather than that it appears to put your metabolism in "high efficacy" mode, so that you gain weight despite the fact that you are not eating more.

    The Finish researchers exposed two strains of mice to a typical Western type diet (high energy, high fat, high carbohydrate) for seven weeks. One strain, the OE-NPY(DBH) mice, had 'naturally' high amounts of NPY in the noradrenergic neurons of the brain, the other were normal wild type mouse. Actually, the scientists had expected that the high NPY expressing mice would gain less weight than their wild-type peers, but much to their surprise, the exact opposite was the case.

    In 1990 Kaye et al. conducted post-mortem analyses on the brains of patients with anorexia nervosa and found highly elevated levels of NPY. These results do actually stand in line with those of the study at hand, after all anorexic patients don't feel any exuberant hunger (in the later stages of the disease) and their bodies are running in a mode that is meant to conserve even the smallest amount of energy they consume.
    And as if that was not already strange enough, the scientists also found that female OE-NPY(DBH) were much more prone to gain significantly more weight and larger white and brown fat depots with no difference in UCP-1 levels, hyperphagia (=overeating) or decreased activity. And the weight gain was not without consequence, as these mice
    "...also displayed impaired glucose tolerance and decreased insulin sensitivity. OE-NPY (DBH) and WT males gained weight robustly, but no difference in the degree of adiposity was observed." (Ruohonen. 2013)
    Now what's interesting is that similar effects were only observed in 40% of their male counterparts and in exactly none of the wild type males on the Western type diets. These observations lead Ruhonen et al. to the conclusion that ...
    "[...] increased NPY release may predispose females to a greater risk of weight gain under high caloric conditions." (Ruhonen. 2013)
    And if you asked me this must be mediated by whatever gender-specific direct effect on feed efficacy and the changes in brown adipose tissue morphology the researchers observed in the NPY overexpressing mice. This would be good news, since brown fat figure much less in human beings than in rodents. Unfortunately, with identical body temperatures and UCP-1 expression in all animals that is at best one of the causative factors. It can hardly explain all the profound weight and fat gains in the non-hyperphagic (not overeating) OE-NPY mice.

    Now, at least for me this raises the question if this is not yet another instance, where the artificially increased NPY levels in the absence of the natural confounding factors, such as increased GLP-1 levels, for example (click here to learn more about GLP-1), couldn't be the actual reason and any conclusions with respect to pro- or anti-obesogenic effect of NPY based on the results at hand would be as unwarranted as the usage of drugs that target this and other neuropeptides in isolation.
  • Just in case you have missed the Circadian Rhythm Series, this would be the right time to read about how to boost / not hamper melatonin, live by your internal clock and get healthy and lean (and stay the same) - light and foods timing are key, here (learn more).
    Thiazolidinediones + melatonin, a dynamic duo vs. insulin resistance -- A group of researchers from the Indira College of Pharmacy in Tathawade, India, have just published a study on the combined effects of PPAR agonists and melatonin as a means to ameliorate dexmethasone (artificial cortisol) induced insulin resistance in rodents (Ghaisas. 2013).

    The data of the study casts a particularly good light on melatonin which does, contrary to the potentially fattening PPAR agonists pioglitazone and rosiglitazone, not entail a simple increase in glucose storage within the adipose tissue. The combination treatment did also normalize the levels of superoxide dismutase, catalase, glutathione reductase and lipid peroxidation in liver homogenates, an effect the scientists partly ascribe to the antioxidant effects of melatonin , as well (the reduced blood glucose is obviously another factor) 
  • 50,000 IU of vitamin D per week improve 25OHD in previously vitamin D deficient subjects but don't produce the expected improvements in insulin sensitivity. Contrary to one of the most underrated dietary supplement, namely melatonin (see previous news item), the most overrated, namely vitamin D3, does not do anything for insulin sensitivity -- even when the subjects are deficient to begin with and their 25OHD levels do actually respond to supplementation (Simha. 2013).

    Despite a weekly dose of 50,000 IU of vitamin D3 and a + 42% increase in 25-OHD levels (to be fair it must be said that the levels were still relatively low and nowhere near where some experts want to see it), the researchers from the Department of Internal Medicine at the Texas Tech University Health Sciences Center at Permian Basin did not observe any improvements in glucose uptake after 8 weeks of supplementation in their 12 healthy subjects with baseline plasma 25-hydroxy vitamin D (25OH-D) levels of less than 20 ng/mL.
  • More about DEHP and its occurrence in your environment: Prepackaged foods are among your best sources to get your detrimental dose of DEHP every day. Belgian children have been shown to get up to 80% of their DEHP and other phtalates from school lunch. And bread was the worst offender (Sioen. 2013) - probably because it's packed 'sandwich style' in plastic containers of which Cirillo et al. were able to demonstrate that these and other plastic packagings leech the phtalates right into the food (Cirillo. 2011). It is therefore no wonder that the packaged hopsital foods are full of it (Teresa. 2013).
    Apropos, having a venyl flooring in either schools or hospitals will only increase the DEHP load due to the emission of the plasticizer into the air (Yu. 2013) and the DEHP content of the bags with blood transfusions are so high that the anti-doping agencies use it as a marker of illegal blood transfusions (Monfort. 2013). Moreover, phtalates leech into milk and dietary products fat-enriched food such as cheese and cream during processing and storage (Kappenstein. 2013); vegetable oils in plastic containers are likewise full of it (Wu. 2013).
    Cooking seems to remove some of the phatalates, but that does not work for vegetables for example (Fierens. 2013). No wonder foods are still the #1 source, followed by bottled water and indoor air of phatalate exposure in Westerners (Martine. 2013).
    Unfortunately, the negative effects of DEHP and its metabolites are not restricted to obesity or the prenatal period, they also induce insulin resistance and metabolic syndrome later in life (Rajesh. 2013) - effects which can be ameliorated by increased vitamin C + E intakes. DEHP has also been shown to reduce progesterone and lead to apoptosis of the ovarian granulosa cells and subsequent infertility (Li. 2013a). Similar detrimental effects have been seen in male rodents (Li. 2013b).
    Natural metabolite of ubiquitous plasticizer DEHP sets you and your unborn kids up for obesity DEHP is used in a wide range of soft PVC products ranging from lifesaving medical devices such as medical tubing and blood bags, to footwear, electrical cables, packaging, tarpaulins for lorries, flooring, stationery and roofing. According to a recent study that's been published in Bioscience Reports its natural metabolite MEHP [mono-(2-ethylhexyl) phthalate] has the potential of turning you into a fat, sick slob:
    "In the present study, we show the dose-dependent effects of MEHP on adipocyte differentiation and GPDH (glycerol-3-phosphate dehydrogenase) activity in the murine 3T3-L1 cell model. MEHP induced the expression of PPARγ as well as its target genes required for adipogenesis in vitro. Moreover, MEHP perturbed key regulators of adipogenesis and lipogenic pathway in vivo. In utero exposure to a low dose of MEHP significantly increased b.w. (body weight) and fat pad weight in male offspring at PND (postnatal day) 60. In addition, serum cholesterol, TAG (triacylglycerol) and glucose levels were also significantly elevated. These results suggest that perinatal exposure to MEHP may be expected to increase the incidence of obesity in a sex-dependent manner and can act as a potential chemical stressor for obesity and obesity-related disorders." (Hao. 2013)
    In the latest risk assessment of the EU and the DEHP Information Center it is of course 100% save... which bags the question, whether the guys working there simply consider being obese normal, so that anything that makes you even fatter is "save" and does not pose any more of a health threat than life in general, or if they just deliberately ignore that molecules rarely go in and out of our bodies unmetabolized and thus settled for a set of totally meaningless petri dish experiments, before they concluded:
    "The use of DEHP has been carefully considered by EU scientists and it is already well regulated by European legislation relating to toys and childcare articles, cosmetics, food contact materials and medical devices." (DEHP Information Center. 2009)
    Hallelujah! Unfortunately it's metabolite MEHP [mono-(2-ethylhexyl) phthalate] obviously is not such a nice guy :-/  
  • Figure 2: Serum markers and adiposity, as well as mRNA expression in adipose tissue of male and female mice after 14 weeks on "high fat" diets (based on Estrany. 2013)
    High fat diets (Western style) for women only? I know, this is once again a rodent study, but it is still intriguing that scientists from the Universitat de les Illes Balears in Palma de Mallorca and the Instituto de Salud Carlos III in Madrid, Spain, found that male rodents become insulin resistant and obese, when they are fed a high fat diet (30% fat, in other words high fat + high carb), the female rodents, on the other hand, switch to a 'fat burning mode' or as the scientists state they ...
    "[...] counteract excessive fat intake by improving their ability to use lipid fuels, which limits adiposity and maintains insulin sensitivity." (Estrany. 2013)
    Just as in a previous study neither the male nor the female rats showed the usual symptoms of hyperphagia (overeating), and the body weight gains in all groups were normal.

    "Normal" body weight gain and insulin resistance? That should actually ring a bell. Correct! "Normal-weigh obesity" or being skinny fat! And in fact, the underlying reason for Estrany et al.'s observations seems to be that the diet increased the inflammation in the male rats, while it did not do so in the female rodents. What exactly it was that made the difference here, will yet still have to be elucidated, but my best bet is estrogen, which is by no means just the bad guy as which it is portrayed within the fitness community.
  • Molecule in false black pepper aka Embelia ribes turns out to be natural GLUT-4 + PI3K/AKT activator, PPAR-gamma agonist and anti-diabetic. What's particularly exciting about the embelin the active ingredient in Embelia ribes Burm, a member of the species Myrsinaceae, which is widely distributed in India and and has a documented history of being used as a diabetes 'medication' in the Ayurvedian traditional medicine system, is that it increases insulin sensitivity without predisposing to further weight gain and adiposity, as the standard Thiazolidinediones (TZDs) such as rosiglitazone and pioglitazone do.

    Using the same streptozotocin (STZ) induced rodent model of type II diabetes you have encountered in numerous other studies that have been covered here at the SuppVersity a group of researchers from the Loyola College in Chennai and the University of Madras (Gandhi. 2013), have found that 50mg/kg body weight of embelin that had been extracted from fresh E. ribes fruits by drying and eluting the raw material in benzene...
    • Figure 3: Effects of embelin vs. rosiglitazone on insulin levels and rel. expression of antioxidant enzyme activity (Gandhi. 2013)
      reduced body weight gain, blood glucose and plasma insulin in treated diabetic rats,
    • modulated the altered lipid profiles and antioxidant enzymes,
    • exerted cytoprotective effects on the β-cells of the pancreas,
       
    • increased the PPARγ expression in epididymal adipose tissue,
    • inhibited adipogenic activity (=fat gain),
    • mildly activated PPARγ levels in the liver and skeletal muscle, and
       
    • regulated insulin mediated glucose uptake in epididymal adipose tissue through translocation and activation of GLUT4 in PI3K/p-Akt signaling cascade.
    And best of all, contrary to most natural anti-diabetes, these effects were no mere downstream effects of the antioxidant effects of Embelin, but can be ascribed to direct receptor binding: The active ingredient from false black pepper does not only show a high binding affinity for PPARγ, in the experiments Gandhi et al. condcted, it also had stable binding affinities for the active sites of PI3K, p-Akt and GLUT.

    Embelia ribes in Ayurveda The false black pepper is no newcomer to the scene of natural medicine / health supplements. Embelia ribes has been used in Ayruveda for centuries as an appetiser, laxative, carminative, anti tape-worm cure, to ameliorate / protect from snake bites, against skin deseases, bronchitis and urinary discharges, versus dyspepsia, liver ailments, jaundice, and glatulence.
    The results certainly are exciting, specifically in view of the fact that emeblin could be interesting not just for type II diabetics and individuals with insulin resistance, but also for lean mean women who are looking for a tool that would optimize their insulin sensitivity without the pro-obesogenic effects that render most other "insulin sensitizer" at best useless. And if we assume that similar effects on PI3K and p-AKT do occur in skeletal muscle, as well (this was unfortunately not measured in the study at hand), embelin could even help you build some muscle. Just as its general efficacy in human beings the last hypothesis does of course still require experimental verification... but don't worry, you know that I will keep you posted on any future studies!
That's it! What? You want more? But that's what a quickie is supposed to be it's the frequency that makes it worthwile not the length... ah, I guess I better wish everyone a happy Sunday before I am starting to go into further details here ;-)


References:
  • Cirillo T, Fasano E, Castaldi E, Montuori P, Amodio Cocchieri R. Children's exposure to Di(2-ethylhexyl)phthalate and dibutylphthalate plasticizers from school meals. J Agric Food Chem. 2011 Oct 12;59(19):10532-8.
  • DEHP Information Center. DEHP Fact Sheet (revised). June 14, 2013. <  www.dehp-facts.com/upload/documents/webpage/ECPI%20-%20factsheet%20DEHP%20revised%20-%20140609.pdf > retrieved on Nov. 03, 2013.
  • Estrany ME, Proenza AM, Gianotti M, Lladó I. High-fat diet feeding induces sex-dependent changes in inflammatory and insulin sensitivity profiles of rat adipose tissue. Cell Biochem Funct. 2013 Oct 30.
  • Fierens T, Vanermen G, Van Holderbeke M, De Henauw S, Sioen I. Effect of cooking at home on the levels of eight phthalates in foods. Food Chem Toxicol. 2013 Sep 14;50(12):4428-4435.
  • Ghaisas MM, Ahire YS, Dandawate PR, Gandhi SP, Mule M. Effects of Combination of Thiazolidinediones with Melatonin in Dexamethasone-induced Insulin Resistance in Mice. Indian J Pharm Sci. 2011 Nov;73(6):601-7.
  • Gandhi GR, Stalin A, Balakrishna K, Ignacimuthu S, Paulraj MG, Vishal R. Insulin sensitization via partial agonism of PPARγ and glucose uptake through translocation and activation of GLUT4 in PI3K/p-Akt signaling pathway by embelin in type 2 diabetic rats. Biochim Biophys Acta. 2013 Oct 24. doi:pii: S0304-4165(12)00302-9.
  • Hao C, Cheng X, Xia H, Ma X. The endocrine disruptor mono-(2-ethylhexyl) phthalate promotes adipocyte differentiation and induces obesity in mice. Bioscience Reports. 2013; 32:619–629.
  • Kaye WH, Berrettini W, Gwirtsman H, George DT. Altered cerebrospinal fluid neuropeptide Y and peptide YY immunoreactivity in anorexia and bulimia nervosa. Arch Gen Psychiatry. 1990 Jun;47(6):548-56.
  • Li N, Liu T, Zhou L, He J, Ye L. Di-(2-ethylhcxyl) phthalate reduces progesterone levels and induces apoptosis of ovarian granulosa cell in adult female ICR mice. Environ Toxicol Pharmacol. 2013 Sep 1
  • Li XW, Liang Y, Su Y, Deng H, Li XH, Guo J, Lian QQ, Ge RS. Adverse effects of di-(2-ethylhexyl) phthalate on Leydig cell regeneration in the adult rat testis. Toxicol Lett. 2013 Oct 11. 
  • Martine B, Marie-Jeanne T, Cendrine D, Fabrice A, Marc C. Assessment of Adult Human Exposure to Phthalate Esters in the Urban Centre of Paris (France). Bull Environ Contam Toxicol. 2013 Oct 23.
  • Magistrelli A, Chezem JC. Effect of ground cinnamon on postprandial blood glucose concentration in normal-weight and obese adults. J Acad Nutr Diet. 2013 Nov;112(11):1806-9. 
  • Monfort N, Ventura R, Balcells G, Segura J. Determination of five di-(2-ethylhexyl)phthalate metabolites in urine by UPLC-MS/MS, markers of blood transfusion misuse in sports. J Chromatogr B Analyt Technol Biomed Life Sci. 2013 Sep 21. doi:pii: S1570-0232(12)00560-0.
  • Rajesh P, Sathish S, Srinivasan C, Selvaraj J, Balasubramanian K. Exposure to diethyl hexyl phthalate (DEHP) to adult male rat is associated with insulin resistance in adipose tisssue: Protective role of antioxidant vitamins (C & E). J Cell Biochem. 2013 Sep 18.
  • Ruohonen ST, Vähätalo LH, Savontaus E. Diet-induced obesity in mice overexpressing neuropeptide y in noradrenergic neurons. Int J Pept. 2013;2013:452524. doi: 10.1155/2013/452524. Epub 2013 Oct 18. 
  • Simha V, Mahmood M, Ansari M, Spellman CW, Shah P. Effect of Vitamin D Replacement on Insulin Sensitivity in Subjects With Vitamin D Deficiency. J Investig Med. 2013 Oct 29.
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  • Xu Y, Liu Z, Park J, Clausen PA, Benning JL, Little JC. Measuring and Predicting the Emission Rate of Phthalate Plasticizer from Vinyl Flooring in a Specially-Designed Chamber. Environ Sci Technol. 2013 Oct 23.

Tuesday, October 29, 2013

Natural Resistant Starch Reduces Body Fat & Weight Gain in Obesity Prone & Lean Rodents. 8% RS2 Necessary for Weight Loss Effect, Only 4% for Increases in GLP-1 and PYY

Potatoes! I don't suggest you eat them raw, but if you did they would make a good source of resistant starch. You don't eat potatoes at all? Read the Potato Manifesto and learn why regular potatoes are not as black as they are portrait!
I guess, you will remember my post on WM-HDP from back in the day. As usual you, as a SuppVersity reader were in the know, way before the ThermiCarbs and its identical clones hit the supplement market. It has however gotten relatively quiet around these purported super starches, which bypass enzymatic breakdown in the small intestine and get converted to short-chain fatty acids (SFCA) in the colon. Why? Well, my best bet is that people expected some sweet junk of which they could eat as much as they wanted with the only side effect being increased muscularity and decreased body fat levels. I am well aware that you knew better than that, but you know how people are: Always on the look-out for the magc pill... or in this case, the magic starch ;-)

Cutting fat by eating more: The old adage of the "fat burning foods"

Be that as it may, a soon to be published study by researchers from the Commonwealth Scientific & Industrial Research Organization in Australia confirms: If you exchange a high enough amount of regular carbohydrates with resistant starches (even regular ones, lower resistance to enzymatic breakdown that WM-HPD), this can be a viable tool to shed some body fat.

Unfortunately, though, the results of the very this study do also suggest that the effectiveness of this regimen will largely depend on (a) your phenotype and (b) your willingness to follow your hopefully not totally messed up satiety response and decrease your caloric intake voluntarily, just as the male Sprague-Dawley, the 'subjects in this study by Belobrajdic, King, Christophersen and Bird.
Figure 1: Energy intake and final body weight (left) and relative changes in fat mass and total liver weight after 6 weeks on diets with different resistant starch content (based on data from Belobrajdic. 2013)
Both (a) and (b) could however be major caveats when it comes to the practical realization of similar results in human beings, to whom I would not suggest that they follow a standardized diet with ~15% fat, 19% protein and ~66% carbohydrate, either - regardless of whether they exchange 0%, 4%, 8%, 12% and 16% of the mostly high GI carbs in their diets by resistant starch or not (the values are relative to the weight of the chow).
Just as raw potatoes, green bananas contain RS-2, the natural form of fermentable resistant starch. When you cook them, the RS2 content is continuously reduced.
Note: The "2" in "RS2", indicates that RS2 is, contrary to WM-HDP, which belongs to the "RS4" variety of resistant starches, a naturally occurring molecule. And though this is the case for WM-HDP vs. high amylase maize starch, the latter does not necessarily mean that one is more resistant to enzymatic breakdown than the other. You could for example think of special applications, where you want to have a starch that of which roughly 75% will be broken down into glucose in the small intestine, while the other 25% are fermented further down in the large intestine. This would be a synthetic molecule and therefore categorized as RS4, but still relatively easily "digested".
What I consider especially problematic, though is the fact that people who like to eat, let alone those, who use food as a, if not the only way to experience pleasure in their lives (eating for reward), are going to have a very hard time to satisfy their cravings with this blatant "food". I mean, we all know that "satiety" is not really an issue for most people with weight problems, so it remains questionable to which degree those who actually need a crouch like this will eventually benefit from a resistant starch which exerts its fat loss effect in rodent experiments at least partly via dose-dependent decreases in food intake -- 3%, 6%, 9% and 11% in the 4%, 8%, 12% and 16% resistant starch groups, respectively.

Ok, I have to admit there is more to it than just eating less

Figure 2: For the lean rodents, body weight gain and feed efficacy (weight gain per gram of chow) favor different "optimal" RS2 levels.
Allegedly, the reduction in food intake alone cannot explain the decrease in weight gain in either the obese or lean rodents, but if you take a closer look at the data I plotted in figure 2, it does still become obvious that  the ameliorative effects weight gain in the obesity resistant (i.e. naturally lean) rodents don't obey the "more is more" rule, as the scientists would have it in their abstract:
"Obesity prone rats (OB) gained less weight with 4, 12 and 16% RS compared to 0% RS, but the effect in obesity resistant [lean] animals was significant only at 16% RS. Irrespective of phenotype, diets  containing ≥8% RS reduced adiposity compared to 0% RS. Energy intake decreased by 9.8 kJ/d for every 4% increase in RS. [...] Insulin sensitivity was not affected by RS." (Belobrajdic. 2013)
In the naturally lean animals, the "optimal", i.e. the lowest feed efficacy would be achieved with 8% of RS2 in the chow and not as the "≥8% RS" implies with 16% of resistant starch in the diet.

Ok, I have to admit there is more to it than "minimal feed efficiency"

In the scientists defense, it must however be mentioned that the plasma lipid and gut / satiety regulating hormone levels they measured did in fact show an almost linear increase with the amount of fermentable resistant starch in the diets (see figure 3). Since Belobrajdic et al. do not provide individual data from the two groups, but settle for a table that will tell you that there were no treatment x group interactions  (this means that the outcome was not different for obesity resistant and prone animals) and a phenotype interaction with the overall outcome was only present for leptin, there is no way to tell for sure.
Figure 3: Inter-group comparison (not differentiated for lean vs. obese, because there were no significant interactions, except for leptin) of plasma lipid and gut derived hormone levels (data adapted from Belobrajdic. 2013)
So, with all these "admission" (as in "I have to admit..."), I have to admit *lol* that using high-amyolse starch as a part of your contest prep, maybe to bake pancakes or use it in another food, where the "taste" does not matter that much is could in fact be a viable dietary tool. It won't get you stage ready on its own, though and has one major caveat I have not even mentioned yet: You better make sure you always know where the next clean toilette is. Assuming that those 16% RS2 have the same effect on the volume of your feces as they had on that of the rodents in the study at hand, you may be spending 5-times more time on the loo thhan usually ;-)

If you can't remember what WM-HDP was, click on the image to go back to the article. Regardless of whether you pick up a natural or an artificial starch, this stuff is not "zero calories"! The high amylose maize starch in the study at hand has 10.45kJ (WM-HDP should be similar), i.e. 2.5kcal/g you will have to make up for by cutting out real foods.
Bottom line: Assuming that the results from the study at hand translate to human beings the incorporation of resistant starches in your diet seems - at least to a degree at which your bowel can handle it - to entail a lot of health benefits. The problem I see, is that you will have to force down these empty calories instead of eating healthy foods if you want to benefit.

If you simply add resistant starches (natural or artificial) to your diet, without cutting back on calories, elsewhere, you will become fatter, not leaner.

You will also have to take into account that adding resistant starch to the high sucrose diet of the rodents in this study will necessarily entail greater benefits than exchanging some tubers, rice, fruit and other non-sugary carbohydrate sources from a healthy diet with resistant starch powder - not to speak of all the beneficial micro-nutrients you will be missing!

References:
  • Belobrajdic DP, King RA, Christophersen CT, Bird AR. Dietary resistant starch dose-dependently reduces adiposity in obesity-prone and obesity-resistant male rats. Nutr Metab (Lond). 2013 Oct 25;9(1):93.

Wednesday, August 28, 2013

Mercury in Fish NOT Harmless, Regardless of Cysteine, Selenium, EPA or DHA! Plus: No Cardioprotective Effect of Omega-3 in Men With Higher Hair Mercury Levels

Image 1: Nice! Luckily nothing you will catch everyday, because if you ate this little bastard, a Tile Fish from the Gulf of Mexico, everyday, you could - in the worst case - be consuming 933µg of mercury with every 250g serving!
"Mercury from fish is not a problem, because you get plenty of selenium to counter it... moreover it's mostly protein bound, already..." - Another Myth Busted!? I must admit, I did believe (without ever checking scientific references) the common mantra that the mercury (Hg) content of fish would not actually be a problem, as long as there is enough selenium (Se) in the fish to "buffer" the Hg load. Now, this certainly makes sense and even very recent studies confirm that the effective uptake is reduced with higher Se:Hg ratios (e.g. Calatayud. 2013). Moreover, the notion that selenium exerts a protective effect is bolstered by data from various indigenous populations in the Brazilian Amazon (Lemire. 2011).

Cysteine, Omega-3 & Selenium? Won't help!

Unfortunately, a recent study by a group of scientists from the Arcachon Marine Station in Acachon, France, does now remind me why I have made it a rule over the year to question every conventional wisdom regardless how logical it may seem (Bourdineaud. 2013). The researchers fed a group of mice diets that contained either 4.88% fishmeal powder that had been produced from the flesh of H. aimara fish that had been caught in the Sinnamary River in French Guiana and contained 5µg Hg/g or a control diet which had slightly less protein (14.2% vs. 18.1%) and contained higher concentrations of EPA(10x), DHA(>30x) and DPA (>5x) - obviously right from the fish.
Figure 1: Fatty acid composition of the diets (left) and breakdown of the omega-3 part of the diets (rel. to total PUFA content - right; data calculated based on Bourdineaud. 2013)
In addition, the fish diet contained methylmercury in its purportedly less toxic largely peptide bound form, methylmercury-cysteine (MeHg-cysteine), while the mercury the scientists had added to the control diet was the purportedly more toxic salt form of mercury, i.e. methylmercury-chloride (MeHgCl).
Which fish contains how much mercury? I knew you would ask this and in essence it is impossible to answer without analyzing the very same fish, because as we are about to see, even the same species from the same fishing ground won't do.

Figure 2:  Mean (bottom axis!) and max (top axis!) mercury content (mg/kg) in fish (based on FDA Monitoring Program. 1990-2010)
Now, I would be a hilarious smartass if I left you with this "you never know" statement, but would still advice you to regard the following information as very broad estimations and heavily generalized categorizations:
  • the worst offenders: Mackerel, King Shark, Swordfish & Tilefish (from the Gulf of Mexico) with mercury levels in the 1,000µg/kg range - 250g of those and you are on par with the mice in the study
  • examples from the rest of the pack (see figure 2): It is plain to see that even fish with a relatively low mean mercury concentration such as Pollock (mean: 31µg/kg) can be laden with mercury, if you just pick the wrong one (max: 780µg/kg!)
Regardless of in some cases 20x higher outliers, you are probably on the safer side of things, when you pick one of the fish / shellfish that are on top of figure 2 and thus have the lowest mean mercury concentration.

How much did the mice consume? With  253 and. 237µg/kg in the MeHgCl and fish diets the mice in the study at hand consumed ~1µgof mercury per day this corresponds to a human equivalent dose of approximately 3.2µg/kg or 263µg/day for a 80kg adult.
Next to the aformentioned selenium argument (the selenium content of the fish diet was likewise higher 480 vs. 300µg/kg), the presence of MeHg-cysteine instead of MeHgCl and the healthy fish oils, are arguments #2 and #3 in the unquestionably convincing "mercury from fish is not a problem" argument.

It takes 8 weeks of mercury expose for the mice to go havoc - only from fish, though!

The mice were maintained on the diets for either 29 or 58 days. At the end of the exposure period, mice were subjected to an open-field maze test, in order to quantify anxiety levels, and to a Y-shaped maze test, to assess cognitive ability. Thereafter, the rodents were anesthetized and tissue samples were taken. Here are the main findings:
  • within the first 10 days of the feeding period, the mice on the Hg containing diets gained  weight faster than rodents on a non-Hg control diet - 4%  and 7.4% more weight gain in the MeHgCl and Fish group, respectively; afterwards the weight development was identical
  • both Hg diets lead to significant increases in serum and tissue MeHg with the kidneys being the "preferred" storage place with a tissue concentration of 7.3 and 6.8 mg Hg/g in mice fed the MeHgCl and fish diets, respectively (17x and 16x higher than in controls); there was a statistically significant inter-group difference only in the striatum, which accumulated ~30% less methylmercury in the fish group compared to the MeHgCl group
  • significant behavioral abnomalies did only occur on the 2nd test at the end of the study period (day 58) and were exclusive to the Fish group, which also exhibited an increased dopamine metabolic turnover in the hippocampus
In the end, there is little to add to the scientists somewhat disillusioned conclusion that despite the fact that they had had good reason to assume (like you and I ;-) that the mercury induced metabolic and neurocrine perturbations in the Fish group "should appear less severe than that observed with the MeHg-containing diet [..] the present study" falsified the original hypothesis and suggests that rather than being less toxic, the peptide bound MeHgCysteine in fish is even more toxic than its chloride bound counterpart.

"Mice are nice, but what about men? I am sure know fish oil protects us!" Not really, no...

Another of the pieces that's still missing to get at least a preliminary grasp of the fish oil, selenium, mercury-toxicity puzzle, comes from a recent study that's been conducted at the University of Eastern Finland in Kuopio, and in the course of which the scientists analyzed the relation of mercury exposure (as quantified by hair mercury levels), long-chain poly-unsaturated fatty acids (LC-PUFA = omega-3) levels and individual risk of CVD, in general, and sudden cardiac death, in particular, in a group of 42-60 year-old men who had been free of any adverse cardiovascular events at baseline in 1984-1989 (Virtanen. 2013); and the results Virtanen et al. present in a paper in the July edition of the free medical Journal PloS One are astonishing, to say the least:
  • of the three long-chain polyunsaturated fatty acids, EPA, DHA and DPA (=docosapentaenoic acid), only the latter, i.e. DPA, correlated significantly with the absence of sudden cardiac death within the time to the follow up (p < 0.01)
  • the by far best predictor of whether or not the study participants would pass away before their time was yet the hair mercury content, which was 53% higher in those unlucky 91 patients who died from sudden cardiac death, than in the "survivor" group (2.85µg/g vs. 1.86µg/g)
Before we take a closer look at how this translates into the calculated hazard risks, I do yet feel inclined to draw your attention to some more basic, and not statistically processed baseline characteristics of the participants with the highest (4.96–15.59%) serum LC-PUFA values.

Don't deduce from pairs of associations!

A brief lesson in interpretation of scientific data - If A & B, and A & C, then B & C... NO!

Actually this thing about associations and logical reasoning is nothing extraordinary, but I thought it may be worth reminding you not to make the false assumption that  "if A is associated with B and A is associated with C, then B must be associated with C, as well", or to give you a more concrete example: If people with high LC-PUFA levels have higher incomes and people with high LC-PUFA levels have higher mercury levels, then people with higher mercury levels should also have higher incomes"

I see, now you are laughing, but I bet, everyone of us has once fallen for a similar mistake, esp. if the result of this falsely applied deduction was in support of your original hypothesis.
The study participants with the highest long-chain omega-3 levels in their blood also had the highest...
  • physical activity (borderline significant p = 0.06)
  • income (p < 0.001) and eduction (p = 0.01)
  • fish, fruit, berry and vegetable intakes (p < 0.001)
  • the highest hair mercury concentration (p < 0.001)
  • the highest alcohol intake (p < 0.001, and 53% more than those w/ 1.7-3.9% LCPUFA)
  • the highest rates of coronary heart disease in the family (p = 0.03, but only 6% difference total)
Despite the fact that higher mercury levels in the had were thus obviously associated with higher omega-3 levels in the blood, it would be preliminary to assume that all other of these variables, such as a higher income, or the physical activity would also be associated with higher mercury levels. And in fact, the exact opposite is the case,...
  • higher income,
  • higher education,
  • higher fruit and vegetable intake and
  • higher physical activity
... all of which were also associated with higher omega-3 levels in the blood were statistically significantly associated with lower mercury levels!

Mercury, fish oil and heart disease a marvelous triumvirate 

Let's get back to the harzard ratios and how fish oil intake and methylmercury intoxication interact in terms of the sudden cardiac death risk of the middle-aged (mean age at baseline 52.1 years) study participants.
Figure 3: Hazard ratios relative to lowest - adjusted for age and examination year (model 1),  adjusted for model 1 and body mass index, pack-years of smoking and alcohol intake (model 2),  adjusted for model 2 and hair mercury content (model 3); and hazard ratios associated with each 0.5%  unit increase in serum LC-PUFA, stratified by the median hair mercury content (calculated based on model 2, right; data compiled based on Virtanen. 2013).
While there is certainly much that could be said about the overall study outcome, there are three things that are remarkable, novel and particularly noteworthy in the data in figure 3:
  • EPA is not only useless, without additional statistical shenanigan, it is even associated  (yet non-significantly) with an increased risk of CVD, when it's really high (+2% risk increase for each unit increase in EPA).
  • DHA is only protective, when the methylmercury levels are low (model 3 in figure 2 adjusts for that), when this is the case, however, each unit increase in DHA is associated with a whopping -19% decrease in
  • the statistical significance of the protective effects of DPA against sudden cardiac death is lost, when the data is adjusted for body mass index, pack-years of smoking and alcohol intake.
If we take the interactions with the hair (and thus presumably bodily) mercury load into consideration (see figure 3, right), it becomes obvious that hair mercury levels above the >1.28mg/g range renders both EPA and DHA practicually useless.

"Where do I get this DPA from; and what's that anyway?"

Figure 4: Enzymatic cascade from ALA to DHA; if you take a closer look the cascade does also explain why an increased conversion of ALA can competitively reduce the generation of EPA (see Portolesi. 2007)
Unfortunately, EPA and DHA are the two major forms of long-chain omega-3 fatty acids you will find in supplemental and dietary fish oil, so that your body will have to derive the DPA via Δ5-desaturase from EPA on its own (Leslie. 1985; see my illustration in figure 4 to get an idea of the whole cascade). This is not impossible, but obviously a rate limited step that could be avoided by direct supplementation, which is in fact something Miller et al. have done, only recently, and, as you have read, right here at the SuppVersity (see "On Short Notice" from July 29, 2013), which remarkable success (Miller. 2013).

Whether the beneficial effects of DPA are in fact related to its "reservoir function", Miller and his colleagues speculate about, cannot be said but would certainly constitute an intriguing research question for another rodent trial, maybe the mice in the Bourdineaud study would have been normal if they had had more DPA in their diets (see figure 1, right)

Bottom line: Until more scientific data is available (and probably still thereafter), there are actually three practical implications from this study you should bear in mind: (1) It does not make sense for anyone who carelessly shovels down tons of potentially mercury loaden fish to freak out about a tiny amalgam filling; (2) if you intend to benefit from the cardioprotective effects of fish oil, you better make sure that you are getting supplements and fish that have been tested for mercury, because the selenium alone obviously won't do the trick and save your ass... ah, pardon, your heart ;-) and (3) if you don't eat the worst offenders on a daily basis the benefits will probably still outweigh the negatives: I have recommended to fatty fish once or twice a week numerous times in previous articles and I don't see why these results would change anything about the recommendation.

References:
  • Bachmanov AA, Reed DR, Beauchamp GK, Tordoff MG. Food intake, water intake, and drinking spout side preference of 28 mouse strains. Behav Genet. 2002 Nov;32(6):435-43.
  • Bourdineaud JP, Marumoto M, Yasutake A, Fujimura M. Dietary mercury exposure resulted in behavioral differences in mice contaminated with fish-associated methylmercury compared to methylmercury chloride added to diet. J Biomed Biotechnol. 2013;2013:681016. Epub 2013 Jul 26.  
  • Calatayud M, Devesa V, Virseda JR, Barberá R, Montoro R, Vélez D. Mercury and selenium in fish and shellfish: Occurrence, bioaccessibility and uptake by Caco-2 cells. Food Chem Toxicol. 2013 Aug;50(8):2696-702. Epub 2013 May 22. 
  • Lemire M, Fillion M, Frenette B, Passos CJ, Guimarães JR, Barbosa F Jr, Mergler D. Selenium from dietary sources and motor functions in the Brazilian Amazon. Neurotoxicology. 2011 Dec;32(6):944-53.
  • Miller E, Kaur G, Larsen A, Loh SP, Linderborg K, Weisinger HS, Turchini GM, Cameron-Smith D, Sinclair AJ. A short-term n-3 DPA supplementation study in humans. Eur J Nutr. 2013 Jun 23.
  • Portolesi R, Powell BC, Gibson RA. Competition between 24:5n-3 and ALA for Delta 6 desaturase may limit the accumulation of DHA in HepG2 cell membranes. J Lipid Res. 2007 Jul;48(7):1592-8. 
  • Virtanen JK, Laukkanen JA, Mursu J, Voutilainen S, Tuomainen TP. Serum Long-Chain n-3 Polyunsaturated Fatty Acids, Mercury, and Risk of Sudden Cardiac Death in Men: A Prospective Population-Based Study. PLoS One. 2013;7(7):e41046.

Tuesday, July 30, 2013

What's Worse: YoYo-Dieting or Constant Gluttony? What Happens During Weight Cycling? And Why Does Every Diet Make You Fatter? Lots of Questions, a Couple of Answers

Image 1: To eat or to diet, what's worse?
Despite the fact that the magazines are still full of "X pounds in Y weeks" diets, more and more people begin to realize that "diet hopping" and even "dieting" in the conventional sense, i.e. following a special, usually very strict and non-sustainable nutritional regimen for a very short amount of time, are futile. But can calling a halt before you blow up like a balloon from time to time actually be worse than letting yourself go all-day, everyday? According to the results of an experiment that has been conducted at the Institute of Biology of the State University of Rio de Janeiro, the results of which have just been published in the open access journal PLoSOne, the answer to this question must be: YES, it can! And that may be true, even when you are not starving yourself!

Even "healthy" weight cycling turns out to be profoundly unhealthy!

Now, the unfortunate news first: We are, as so often dealing with a rodent study - one that was done conducted with 80(!) 3-months old C57BL/6 mice. "Wow! 80 mice? That's plenty!" Yeah, initially it may sound like that, but in view of the fact that their number was decimated every 8 weeks, there would not have been the necessary 4x8 rodents left at the end of the 24-week study period for the final evaluation of the four experimental groups, which were
  • standard chow (SC; 15kJ/g) - rodents in this group received the standard chow (76% energy from carbohydrates, 14% energy from protein, and 10% energy from fats) for the whole study period
  • high fat diet (HF; 21kJ/g) - rodents in this group received a fattening hypercaloric diet (26% energy from carbohydrates, 14% energy from protein, 50% energy from animal lard and 10% energy from soy bean oil 
  • SC ↔ HF - rodents in this group received standard chow for the first 8-week cycle, high fat diet for the 2nd 8-week cycle and standard chow for the third and last 8-week cycle
  • HF SC - rodents in this group received high fat diet for the first 8-week cycle, standard chow for the 2nd 8-week cycle and high fat  for the third and last 8-week cycle 
If we go back to the initial question, the HF group would be our 24/7, 365 days a year eat everything the worst Western diet you can imagine has to offer, while the animals in the group SC ↔ HF and HF ↔ SC group would be representative of
  • the high school football player who turns to a sedentary lifestyle and bad eating habits when he goes to college, is partying all night, bear pizza, etc. eventually, he realizes he got fat, and diets again (SC ↔ HF ↔ SC) and
  • the obese kid who eventually turns to physical culture, works out, eats health and loses weight, when he starts college, to then fall back into his old bad habits and starts letting himself go, when he marries and has kids (HF ↔ SC ↔ HF)
I know this is a little far-fetched and as we are going to see later, mice are not exactly the best model to study things like that, but still, the way the weight of the rodents, who had free access to the respective chow they were on during the whole experimental period, developed is quite telling:
Figure 1: Despite intermediate fat loss the increased feed efficiency (=weight gain per kcal) that is especially pronounced in the HF phases of the weight cycling groups quashed the previous weight loss. If age effects had not become a problem this effect would have been more obvious in a 4th cycle.
And the message the data in figure 1 is sending is quite clear: Dieting, as in changing your eating habits only intermediately, is useless, at best! - "at best", because it becomes increasingly difficult to lose and constantly easier to gain weight or, as Barbosa-da-Silva et al. put it:
[...] after three consecutive WC [weight cycles], the reduction of BM is less marked during the SC cycle, as well as the increase of BM is more prominent during HF cycle (Barbosa-da-Silva. 2013).
Now, we probably would not have had to do a 24-week rodent study to know that, right? Right! Notwithstanding, though, the beauty of working with rodents - instead of Biggest Losers, for example - is that they usually don't complain much when you slaughter them, so that the scientist could not only measure the serum leptin (figure 2, left), triglycerides, cholesterol, insulin and glucose levels, but also count the number and measure the size of the adipocytes in their visceral fat pads.
Figure 2: Leptin expression and adipocyte density per area of adipose tissue mass after the 1st, 2nd and 3rd weight gain/loss cycle (data adapted from Barbosa-da-Silva. 2013)
And as you can see in figure 2 (right) the weight cycling induced quite profound effects on the adipose tissue morphology; effects that are similar to what we have seen in previous discussions on the underlying causes of the yoyo effect (see "Nasty Insights into the YoYo-Effect"). You have to keep in mind, though, that you would be comparing apples and oranges if you compare the two weight cycling groups with each other, as one group has always just lost weight, when the other has gained weight so that in one group the adipocytes will  be depleted, when they are filled to the seams in the other one. If there had been a fourth cycle in the course of which the fat cells of the SC ↔ HF group would have been repleted, we may thus safely assume that the absolute size-differences, which reached statistical significance only in the HF ↔ SC group after the third cycle (violette bar in figure 2, right), would have been similar or even more pronounced after 32 weeks and 4 cycles in the then HF dieting SC ↔ HF (note: one of the reasons the researchers did extend the experiment for another 4 weeks was that even now, age-related effects and obesity related morbidities would have reduced the significance of the data).

Adipocyte morphology, leptin expression, fat pad restructuring and body fat that sticks

Apropos significance, you ay remember from the "previously mentioned post" on this issue that one of the currently discussed hypothesis that could  (at least partly) explain why formerly obese people are not just having a really hard time to lose weight, but also, and often even more so, to keep that weight off, relates to what I have previously labeled "relative leptin defiency" (too little leptin production per adipose tissue mass) or, and this would be an alternative hypothesis, "leptin resistance" (more than enough leptin in the blood, but the signal transmission does not work).

The first thing we can say based on the data Barbosa-da-Silva acquired on the absolute fluctuations of leptin in the blood of the rodents (figure 2, left) ist that previously made conclusions about the effects of weight gain, weight loss and energy intake on leptin, like
  1. weight loss and fasting are associated with reduced leptin levels
  2. weight gain is associated with an increase in leptin concentration 
  3. chronically increased leptin can lead to leptin resistance
  4. meals and according to meal composition or short-term swings in energy balance such as fasting or overfeeding induce swings in systemic leptin levels
appear to be accurate. To check whether there is evidence for my "relative leptin deficiency" hypothesis, especially in weight cycling groups, I ploted the ratio of serum leptin to body fat in figure 3 (left):
Figure 3: Leptin levels in serum per body fat (left), leptin expression in adipose tissue (middle), and sectional area of adipocytes of the different groups (based on Barbosa-da-Silva. 2013)
And what is interesting is that in this calorically non-restricted scenario, the respective "relative leptin deficiency" occurs only in the SC ↔ HF group during the third and last cycle, when their relative leptin levels which should actually be identical to the SC group (we must compare them to the SC group, because the current diet will influence leptin expression as well) are 36% lower than they "should" be. In the same third cycle, the HF ↔ SC group (remember, those are our "formerly obese kids") have 21% more leptin in their blood than they "should" - given their current adipose tissue mass.

Some food for thought - Though not directly related to the topic, there is one thing pertaining to the heavily debated "CLA post" from last week (cf. "CLA Destroys Body Fat"), I want to mention. If we assume that the CLA-induced adipose tissue apoptosis Kim et al. observed in their recent study is as rodent-specific as the natural death and rejuvenation of adipose tissue Cinti et al. observed in the study I cite relating to the limited adipose tissue growth in rodents, this would not just indicate that taking copious amounts of CLA would not help to reverse the damage you may have done during previous "diets", but could also explain why conjugated linoleic acid supplements don't work in humans (or horses; see yesterday's news).
Now this segues directly into the allegedly somewhat counter-intuitive conclusion that anything that soothes the raging inflammation in your fat cells may ameliorate the downstream detrimental effects on glucose and lipid metabolism, but will, on the other hand, help your fat cells to survive or maybe even proliferate in amidst the TNF-alpha induced cytokine storm (Prins. 1997), which would otherwise kill them. Now with the current paradigm of "inflammation = bad" this may sound hilarious. In the the end, it does yet only echo the title of a 1999 paper by Hube and Hauner, "The role of TNF-alpha in human adipose tissue:  Prevention of weight gain at the expense of insulin resistance?" (Hube. 1999) and would provide us with a mechanistic explanation of several otherwise non-explicable phenomena such as the profound fat loss in rodents who lack the master antioxidant glutathion (see "Inflammation Is the True Fat Burner"),,, but as indicated: This is just some food for thought ;-)
In combination with the leptin overshoot (+153%) in the "former football players on their college binge", this data would suggest that we are not dealing with "relative deficiency" and "leptin resistance" but rather with a complex mixture of both, where the latter is probably a result of repeated overshoots like the one we see in the SC ↔ HF group after their first high fat feeding cycle (2nd cycle, 154% elevated leptin levels).

Relative leptin deficiency, systemic resistance and now local differences?

And as if things were nor already complicated enough, there are also potentially important differences between circulating leptin levels and local leptin expression in isolated fat pads figure 3 (middle; compare data to figure 2, left, 3rd cycle). Thus, the drop in leptin levels upon "fasting" in the (SC ↔ HF, 2nd cycle  and HF ↔ SC, 3nd cycle) is systemic, but does not reflect the expression of leptin in the intra-abdominal tissue. This stands in line with my previous dissertation on "relative leptin deficiency" and the differences between...
  • intra-abdominal (easy to shed on a diet), and 
  • subcutaneous (esp. in the lower body compartment difficult to shed on a diet)
...adipose tissue in "Nasty Insights into the YoYo-Effect" (a similar depot-specificity has been reported for pre-adipocytes, i.e. developing fat cells, as well - intriguingly only in 9 out of human subjects (=81%); cf. Niesler. 1998). Due to the fact that the expansion of adipose tissue in rodents appears to be limited and the cell-turnover high (contrary to humans, where you get the impression that obesity is only limited by death and the cell-turnover - if it exists at all - must be very slow), these effects are probably even more pronounced in humans than in mice. Consequently, it can be expected that the diet / feasting induced upward shifts of the body fat set point are more pronounced and their morphological reversal either more time-consuming (probably true for the visceral body fat) than in rodents or simply impossible (could be the case for parts of the subcutaneous body fat) in human beings.
Image 1 : Lose 20lbs now, gain 25 back and have 5 stick with every diet! We still don't understand exactly why, but by now it should be clear, diets like the "Kendra diet" are rather part of the problem than viable solutions
Implications: Despite the fact that we still don't really understand what's happening, when we are trying to shed the body fat we have acquired in times of gluttony, the few novel insights we have gained from the study at hand should make it even more obvious that "classic" dieting does not hold the answer to the obesity problem. Neither on an individual, nor on a societal level. Instead of "eat less, exercise more", the main message should read: "Don't ever think of dieting, again! Revamp your life, your activity profile and the way you eat and wait for things to fall in place." After all, the "formerly obese kids" in the HF ↔ SC group were not too bad off, when they had returned to a (for rodents!) healthy diet in the 2nd cycle. We may even speculate that the difference the rodents in the control group (SC) would not have been significant anymore, if the scientists had kept the HF ↔ SC rodents on standard chow for another 8 weeks.

The same group is however living (now dead ;-) proof that the notion that you could diet today, look better tomorrow and then return to what has gotten you into misery before is not just illusive, but outright life-threatening. Since caloric restrictions, which are still at the heart of 99% of the mainstream diets, will probably magnify the amplitude (i.e. the up and down) of the yoyo effect and its negative metabolic consequences, it appears reasonable to assume that the yoyo-dieter will eventually be worse off than the "happy fatso" who has been eating whatever he wanted for all his life and dropped dead morbidly obese with a heart attack at 45. After all, it seems likely that he (or she!) will not even live to the 45th year before he falls victim to the very same fate and that after not despite, but rather because of all the temporary austerities... now, this may be like choosing between pest and cholera, and the third option, i.e. following the path of physical culture would alway be my first choice, but honestly, if I had to choose, I'd rather be the fatso who enjoyed his 45 years of pizza, pasta and chocolate pie than the frustrated yoyo dieter.
References
  • Barbosa-da-Silva S, Fraulob-Aquino JC, Lopes JR, Mandarim-de-Lacerda CA, Aguila MB. Weight Cycling Enhances Adipose Tissue Inflammatory Responses in Male Mice. PLoS ONE 2013; 7(7): e39837.
  • Cinti S, Mitchell G, Barbatelli G, Murano I, Ceresi E. Adipocyte death defines macrophage localization and function in adipose tissue of obese mice and humans. J Lipid Res 2005; 46: 2347–2355.
  • Hube F, Hauner H. The role of TNF-alpha in human adipose tissue: prevention of weight gain at the expense of insulin resistance? Horm Metab Res. 1999 Dec;31(12):626-31.
  • Kim JH, Kim J, Park Y. trans-10,cis-12 Conjugated Linoleic Acid Enhances Endurance Capacity by Increasing Fatty Acid Oxidation and Reducing Glycogen Utilization in Mice. Lipids. 2013 Jul 11.
  • Niesler CU, Siddle K, Prins JB. Human preadipocytes display a depot-specific susceptibility to apoptosis. Diabetes. 1998 Aug;47(8):1365-8.  
  • Prins JB, Niesler CU, Winterford CM, Bright NA, Siddle K, O'Rahilly S, Walker NI, Cameron DP. Tumor necrosis factor-alpha induces apoptosis of human adipose cells. Diabetes. 1997 Dec;46(12):1939-44.
  • Zhu. Ncb5or in Fatty Acid Desaturation and Metabolic Diseases. Zhu Diabetes Research Group. University of Kansas School of Health Professionals. < http://www.alliedhealth.kumc.edu/school/research/zhu/more_info.html > retrieved July 22, 2013