Showing posts with label visceral fat. Show all posts
Showing posts with label visceral fat. Show all posts

Sunday, December 1, 2013

5-10% Weight Reduction From Set to Set For Hypertrophy, Heavy Leg Workouts for Cyclists, Garlic For 400% Higher Test/Cortisol Ratios & Max(!) 1g Vitamin C for Muscle Gains

7% increase in breast cancer risk for every 500g above "normal" birthweight for Scandinavian women. Weight is yet not all that counts, mommy's gestational diabetes and even a large body size also precipitate to later disease.
7% per 500g that's the increase in breast cancer risk, the female offspring of Scandinavian women will have, if they are born heavier than normal. This figure is the SuppVersity Figure of the Week and comes from a study I came across a couple of days ago (Troisi. 2013). The statistics are based on birth register data of women from Norway, Sweden or Denmark who were subsequently diagnosed with primary, invasive breast cancer (n=51419) and 10 controls for each case from the birth registries matched by country and year of birth (n = 514,190).

Contrary to what you may think, the birth weight does yet not pose as much of a risk to become obese later in life as being larger than "appropriate" for your gestational age does (Eyzaguirre. 2013). If you also consider that gestational diabetes has been linked with increased risk of metabolic syndrome in the offspring (Davis. 2013) and that obesity in itself is an independent risk factor for breast cancer (Patterson. 2013), these should be more than enough good arguments not to surrender to your occasional food cravings and laziness - pregnant or not.

It's not all in your genes, but most in your hands

Although some people would love, if this was the case, because they could blame their own misery on the mistakes other  may have made, our lives and health are not fully determined by our genes and/or the mistakes our mothers may or may not have made. As Poston and Foreyt wrote in 1999, already: "Obesity is an environmental issue." And we are lucky: It is in our hands to change the environment we are exposing ourselves to and thus influence which of our genetic disposals will become active and are  promoted and which of them won't. Now that's obviously not just the case for obesity, muscular hypertrophy would be another example. Irrespective of your genetic make-up your strength and muscle gains stand and fall with the way you train, eat and supplement... and guess what, all of these points will be addressed in today's installment of On Short Notice.

  • Experimentally validated: 5-10% drop in weights per set is "optimal" for hypertrophy training (Medeiros. 2013) -- Scientists from the Laboratory of Physiology and Biokinetic at the Faculty of Biological Sciences and Health on the UNIG Campus V at Itaperuna in Brazil find: The average resistance trainee - in this case a young man aged 24.0±4.5 years with a body mass of 78.3±10.2 kg and a height of 177±7 cm - can remain in the hypertrophy range (10-12 reps to failure) for most of his sets, when he reduces the weight by 5-10% after each set.

    Whether this will also yield optimal gains was yet not within the scope of this 5-week study. What these results do however tell you is that you are not training hard enough if you perform all your sets with the exact same weight in the exact same rep range - well, unless you don't just like to listen to Super Human Radio, but are actually related to Superman himself ;-)

  • Sir Chris Hoy's legs are not as hilarious as those of the German Robert Forstemann (Robert is the right guy), but I am pretty certain their size and strength played a very important part in becoming the most successful Olympic track cyclist of all times (six gold and one silver Olympic Medal + 11 times world champion)
    Heavy leg training could make the difference between victory or defeat at the end of a cycling race (Hansen. 2013) -- In a soon-to-be-published paper, Ernst A. Hansen et al. report that the addition of 12-weeks of heavy resistance training in the form of 4 lower body exercises (3 × 4–10 repetition maximum) which had to be performed twice a week enhanced the cycling performance of highly trained cyclists by 7% compared to the training outcome of the subjects in a control group who simply followed their regular endurance-only, protocols:
    "Performance was determined as average power output in a 5-min all-out trial performed subsequent to 185 min of submaximal cycling. The performance enhancement, which has been reported previously, was here shown to be accompanied by improved pedaling efficacy during the all-out cycling. Thus, E+S shortened the phase where negative crank torque occurs by ~16°, corresponding to ~14%, which was more than in E (P = .002)" (Hansen. 2013)
    Since the test was conducted at the end of a 3h cycling session, it should be plain obvious that those 15% increases in torque will catapult the strength trained endurance athlete to the forefront on every final sprint.

  • Human dose equivalent of ~0.1g/kg garlic per day could not just boost your testosterone and lower the high protein diet induced increases in cortisol, it could also improve the way your body utilizes dietary protein (Oi. 2013)-- Actually this is not a new study, but since Maxim was not happy with things "so yesterday" as the increases in HDL and LDL the Arabian scientists observed in the garlic study I have been talking about at the end of Thursday's SuppVersity Science Round-Up on SHR, I thought others may be as happy as Maxim will hopefully be to hear that there is more to garlic than "just" its beneficial effects on your heart.

    Figure 1: Higher testosterone levels, an amelioration of the high protein induced increase in corticosteroids and a 40% increase in net protein balance are unquestionably impressive results given the fact that the all those differences were brought about within 28 days and by no more than 0.1g/kg (HED) of "supplemental" garlic in form of heat dried powder that was added to the chow (Oi. 2001)
    In fact, I am almost sure that the >400% increase in the testosterone to cortisol ratio you will see if you take a closer look at the data in figure 1, is probably rather what Maxim would have liked to hear me talk about. Especially in view of the fact that this endocrine effects went hand in hand with a highly significant +60% increase in protein retention (figure 1, top right). Think about it, if only part of he protein that was now no longer excreted in the urine / feces would be used for protein synthesis this would entail exactly those hypertrophy effects you don't see with your average "scientifically proven" herb-based testosterone booster.

    Unfortunately, the scientists did only measure the body weight and visceral fat pads, not the actual muscle mass of the rodents,. But if you go by their ratios it is obvious that the high protein + garlic group were not just the heaviest, but also the leanest.

    With +11 % vs. +5% in both the medium and high protein diets, the animals on the low protein did yet exhibit the most profound benefits as far as the body weight / visceral fat ratio goes. Against the background that their net protein balance remained the same, this observation does actually suggest that the pro-anabolic effects of garlic are not solely a result of a decreased protein excretion (see figure 1).
    Table 1: Principal sulphur compounds of garlic preparations (Hammami. 2013)
    Warning: Don't live on garlic alone! While the provision of 0.8% garlic powder did have beneficial effects on testosterone production in the study at hand, there are a couple of studies which suggest that a diet with 15-30% of crude garlic (Hammami. 2008 & 2009), as well as the administration of Diallyl trisulphide in isolation (Qian. 1986) and raw garlic juice (e.g. 600mg/kg per day for 21 days in Fehri. 1991) can compromise testosterone production and/or testicular function. In view of the difference between 0.8% garlic powder in the diet of the rodents in study at hand and 15-30% of pure garlic in the diet of the animals in the Hamami studies, it is most likely that the effects were dose-depended, but in case you are interested in health benefits of specific sulfor compounds in garlic, the data in table 1 on the left may still come handy to pick "your" preferred form of garlic.
    Rather than that, it appears as if the human equivalent of 0.1g/kg body weight of heat dried garlic powder that contained a total amount of 5.05 mg/g of total diallylsulfide (0.05 mg of monosulfide, 1.0 mg of disulfide, 3.4 mg of trisulfide, 0.6 mg tetrasulfide) had the ability to improve the incorporation of dietary protein into muscles (and other organs).
 
  • Study shows: Vitamin C supplementation does reduce skeletal muscle hypertrophy in response to chronic overload (Makanae. 2013) -- Despite the fact that it has not even been published yet, the paper by Yuhei Makanae et al. actually only confirms what more and more scientists have been speculating about within the last couple of years. The provision of high does of active antioxidants, and as it seems in particular vitamin C, blunts the hypertrophy response to skeletal muscle overload.

    Figure 2: 14-day of 500mg/kg  (HED 0.08g/kg) supplemental vitamin C blunt skeletal muscle hypertrophy in rodents (Makanae. 2013)
    As you can see in figure 2 the effect size was relatively small, but statistically highly significant (p < 0.01) and that despite the fact that the supplementation regimen (500mg/kg body weight; HED: 0.08g/kg body weight) was not even that much higher than what some "vitamin C enthusiasts" are taking on a daily basis in the futile (and useless) effort to boost their serum vitamin C levels to a concentrations your body does - probably not without reason - try to counter by increasing renal vitamin C clearance.

    As the data in figure 2 shows, the same homeostatic mechanism we know from humans worked in the rodents, as well - well, at least with respect to the serum levels. In the plantaris muscle of the supplemented group, on the other hand, there was a significantly higher accumulation of vitamin C than in the placebo group. This increase went hand in hand with an attenuation of the repressive effects the chronic overload of the muscle had on the expression of the catabolic protein atrogin-1 and the increases in the pro-anabolic protein Erk1/2 (p < 0.01) in the non-supplemented animals. Based on this observations and with reference to the results of previous studies and the fact that neither the water content of the muscle, nor a significant reduction in food intake in the vitamin C group could explain the observed differences, Makanae et al. conclude "that oral vitamin C administration attenuates plantaris muscle hypertrophy induced by chronic mechanical load." (Makanae. 2013).

    What the study does not answer, though, is the question whether the effects would be identical in a real-world training scenario, where the temporary, yet more intense wear and tear on the muscle could in fact be sufficient to induce skeletal muscle hypertrophy human despite vitamin C supplementation. But let's be honest in view of the fact that scientific evidence for ergogenic benefits of more than 1g of supplemental vitamin C  per day (in humans) is simply non-existent, the take away message from the study at hand should actually read: Do not escalate your vitamin C beyond the 1g per day, if you don't want to risk compromising the results of all the hard work you are investing into your training.

That's is, another installment of On Short Notice and the first day of the weekend approaching it's peak. If you still have some time before whatever your plan for Saturday night may be and feel like you could use some seconds on today's short news, I suggest you head over to the SuppVersity Facebook Wall and check out the latest news on
  • Ever thought about what green tea, grape seed, curcumin, cranberry, and tons of other Super Food have antimicrobial effects? Considering the LPS-influx from the gut turns out to be a major contributor to all sorts of diseases, I am curious about how much of their effects are actually mediated by the gut microbiome.
    The differential role of intramuscular lipids in trained athletes and sedentary slobs and how the difference between performance enhancement and insulin resistance it all comes back to getting your as off the coach (learn more)
  • Metformin 2.0? Scientists have developed a hypolipidemic, anti-atherosclerotic, anti-obesity, and glucose lowering agent called ETC-1002 (learn more)
  • Confirmed: Grape seed could be the go-to neuroprotector for diabetics - GSE administration was found to be able to ameliorate most of the biochemical altered parameters in diabetic rats (read more)
  • Fermenting your own dairy? Just add some catechin rich teas and the lactobacilli will strive. Makes you wonder about the 'internal' probiotic effects of green and black teas, as well. Doesn't it? (learn more)
There will be more, don't worry - so feel free to check for updates either directly on the SuppVersity Facebook Wall or simply by taking a look at the navigation in the right under "SuppVersity Facebook Wall" from time to time. Obviously, you can also simply "like" the SuppVersity on facebook to make sure you don't miss anything.

    References:
    • Davis JN, Gunderson EP, Gyllenhammer LE, Goran MI. Impact of Gestational Diabetes Mellitus on Pubertal Changes in Adiposity and Metabolic Profiles in Latino Offspring. J Pediatr. 2013 Nov 10.
    • Eyzaguirre F, Bancalari R, Román R, Silva R, Youlton R, Urquidi C, García H, Mericq V. Prevalence of components of the metabolic syndrome according to birthweight among overweight and obese children and adolescents. J Pediatr Endocrinol Metab. 2013;25(1-2):51-6. 
    • Fehri B, Aiache JM, Korbi S, Monkni M, Ben Said M, Memmi A, Hizaoui B, Boukef K (1991) Toxic effects induced by the repeat administration of Allium sativum L. J Pharm Belg 46:363–374.
    • Hammami I, Nahdi A, Mauduit C, Benahmed M, Amri M, Ben Amar A, Zekri S, El May A, El May MV. The inhibitory effects on adult male reproductive functions of crude garlic (Allium sativum) feeding. Asian J Androl. 2008; 10:593–601.
    • Hammami I, Amara S, Benahmed M, El May MV, Mauduit C. Chronic crude garlic-feeding modified adult male rat testicular markers: mechanisms of action. Reprod Biol Endocrinol. 2009; 24:57–65.
    • Hansen EA, Rønnestad BR, Vegge G, Raastad T. Cyclists Improve Pedalling Efficacy and Performance After Heavy Strength Training. Int J Sports Physiol Perform. 2011 Dec 2. 
    • Hammami I, El May MV. Impact of garlic feeding (Allium sativum) on male fertility. Andrologia. 2013 Sep 3.
    • Makanae Y, Kawada S, Sasaki K, Nakazato K, Ishii N. Vitamin C administration attenuates overload-induced skeletal muscle hypertrophy in rats. Acta Physiol (Oxf). 2013 Nov 26.
    • Medeiros Jr HS, Mello RS, Amorim MZ, Koch AJ, Machado M. Planned Intensity Reduction to Maintain Repetitions Within Recommended Hypertrophy Range. Int J Sports Physiol Perform. 2013 Nov 19. 
    • Oi Y, Imafuku M, Shishido C, Kominato Y, Nishimura S, Iwai K. Garlic supplementation increases testicular testosterone and decreases plasma corticosterone in rats fed a high protein diet. J Nutr. 2001 Aug;131(8):2150-6.
    • Patterson RE, Rock CL, Kerr J, Natarajan L, Marshall SJ, Pakiz B, Cadmus-Bertram LA. Metabolism and Breast Cancer Risk: Frontiers in Research and Practice. J Acad Nutr Diet. 2013 Nov 2. doi:pii: S2212-2672(12)01426-8.
    • Qian YX, Shen PJ, Xu RY, Liu GM, Yang HQ, Lu YS, Sun P, Zhang RW, Qi LM, Lu QH.  Spermicidal effect in vitro by the active principle of garlic. Contraception. 1986; 34:295–302.
    • Troisi R, Grotmol T, Jacobsen J, Tretli S, Toft­Sørensen H, Gissler M, Kaaja R,Potischman N, Ekbom A, Hoover RN Stephansson O. Perinatal characteristics and breast cancer risk in daughters: a Scandinavian population­based study. Journal of Developmental Origins of Health and Disease, Available on CJO 2013.

    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

    Saturday, June 29, 2013

    Topical Fat Loss: Capsaicin Cream Blunts Weight Gain in Rodent Model and Increases Leptin, Adiponectin, Lipolysis and Fatty Acid Oxidation in Visceral Fat Depots

    Image 1: If you infused your ice-water with an extract of those, that could supercharge your "cold thermogensis" (see "Ephedra vs. Cold Thermogensis" ;-)
    Those last 1-2lbs of stubborn fat have been and still are the focal point of countless of discussions among trainees, trainers and  magazines even average Joes and Janes who would not even remotely consider to go to the gym to get rid of those love handles - interestingly, all these groups are similarly susceptible to one message: "Revolutionary breakthrough in topical fat loss: "Whatever-Our-Marketing-Department-Came-Up-With-Burn will obliterate the stubborn body fat that's still covering your abs, obliges, butt, and whatever else you hate about yourself in record time!" Sounds and, as the countless disappointed testimonies on the Internet confirm, is usually too good to be true.

    How many scoville (SHU) does it take to burn 1lbs of body fat?

    A soon to be published study by researchers from the University of Ulsan in Korea does however show that many of the companies which advertise with the afore "cited" slogans could in fact be on the right track - at least with respect to one of the key ingredients many of those topical fat-burners contain: Capsaicin, a major pungent molecule that is found in hot chilies and other peppers and has already been shown to exert direct effects on isolated adipocytes in vitro (Kang. 2007; Hsu. 2007) and anti-obesity activity in animal models (Yoshioka. 1999; Zhang. 2007). Interestingly enough, epidemiological (Wahlqvist. 2001) and controlled human trials (Bloomer. 2010) suggest that these effect do - despite the often-touted differences in the thermogenic capacity of humans and rodents - in fact manifest in all the usual steps of scientific experimentation in the medical field, i.e. the petri dish, the animal model and the controlled, randomized, placebo-blinded human trial.

    From the mouth onto the skin

    As far as its topical usage is concerned the main focus of scientific research has yet been on the ameliorative effects of capsaicinoids on painful neuropathies and neuralgia (Harding. 2001; Roberts. 2011) and Lee et al. claim that their study is the first one to investigate the effects of in vivo application of 100mg of a 0.075% hydrophillic capsaicin cream applied to the shaved abdominal skin of pre-fattened mice who were pair-fed (=equal caloric intake for rodents in both groups to exclude reduced appetite as a cause for the observed effect) for 7-weeks.
    Figure 1: Body composition (left) and adipocyte size (right) after 7-weeks on HFD with our without topical appliaction of 100mg 0.075% capsaicin cream to the abdomen of obese mice (based on Lee. 2013)
    As the data in figure 1 clearly shows, the topical application of capsaicin elicited similar beneficial effects on the blood lipids (not shown) as its oral ingestion in a previous HFD rodent trial (Kang. 2010). What is however particularly striking is that it did at the same time totally blunt further increases in body weight and reduced body fat storage in both the mesenteric, as well as the epididymal, visceral fat depots. The latter went hand in hand with profound changes in the adipocyte morphology of both fat depots which shifted from fewer large, to many small adipocytes - a feature which is usually associated with lower adipocyte inflammation and thus reduced risk of cardiovascular disease & co.

    Topical application, systemic effects?

    Both results, the improved lipid profile, as well as the reduction in visceral (intra- not super-abdominal) obesity appear to suggest that the effects of the capsaicin cream was by no means as localized as the producers of respective "supplements", would have it.
    Figure 2: Adiponectin, leptin, TNF-alpha, lipoprotein lipase, UCP-2 and PPAR expression in mesenteric fat pads of the animals at the end of the 7-week study period (based on Lee. 2013)
    The localized decreases in TNF-alpha, a central regulator or inflammation and the profound increases in adipokine expression (adiponectin + leptin), lipoprotein lipase, as well as UCP-2 and all three varieties of the peroxisome proliferator receptors (PPARs), Lee et al. observed in the mesenteric fat pads of the animals do yet confound this theory - capsaicin is, at least partially, a topical fat burner in the literal sense.

    Caution! Stimulant-laden fire hazard!

    Aside from the fact that its certainly non-negligible effects on visceral fat should not be of great interested for any avid trainee who is following a wholesome whole-foods diet, as those last slabs of body fat that are covering your abs belong to your subcutaneous and not visceral fat depots, there are two more things you should be aware of before you (most likely) waste your money on one of those products.
    1. The capsaicin itself will make the body part you rub the product on look like a tomato on fire and burn worse than stinging nettle and that usually for hours!
    2. The systemic effects of the stimulants most of these products contain can become an issue especially for leaner folks, as the dosages are usually adjusted for customers with a thick "insulation" that has to be penetrated, first. 
    If you still feel that you have to give one or another of those preparations a shot, start with a moderate dose first and wait for a couple of hours to see what it does (don't expect it to do anything to your body fat in that time - if your waistline goes down within the first days of application that's simply water loss!).

    My personal recommendation would still be to keep away from any of these products. Regardless of your personal tolerance to stimulants or the specific composition of the different formulas that are currently on the market - 99% of the feedback I have heard and read about states that these products are much better money- than fat-burners  ;-)

    References:
    1. Bloomer RJ, Canale RE, Shastri S, Suvarnapathki S. Effect of oral intake of capsaicinoid beadlets on catecholamine secretion and blood markers of lipolysis in healthy adults: a randomized, placebo controlled, double-blind, cross-over study. Lipids Health Dis. 2010 Jul 15;9:72.
    2. Kang JH, Kim CS, Han IS, Kawada T, Yu R Capsaicin, a spicy component of hot peppers, modulates adipokine gene expression and protein release from obese-mouse adipose tissues and isolated adipocytes, and suppresses the inflammatory responses of adipose tissue macrophages.FEBS Lett. 2007;581:4389-96. 
    3. Kang JH, Goto T, Han IS, Kawada T, Kim YM, Yu R. Dietary capsaicin reduces obesity-induced insulin resistance and hepatic steatosis in obese mice fed a high-fat diet. Obesity (Silver Spring). 2010 Apr;18(4):780-7.
    4. Lee GR, Shin MK, Yoon DJ, Kim AR, Park NW, Yu R, Han IS. Topical application of capsaicin reduces visceral adipose fat by affecting adipokine levels in high-fat diet (HFD)-induced obese mice. Obesity (Silver Spring). 2013 Jun 18. doi: 10.1038/oby.2013.166. [Epub ahead of print]
    5. Hsu CL, Yen GC Effects of capsaicin on induction of apoptosis and inhibition of adipogenesis in 3T3-L1 cells.J Agric Food Chem. 2007;55:1730-6. 
    6. Wahlqvist ML, Wattanapenpaiboon N Hot foods--unexpected help with energy balance? Lancet. 2001;358:348-9.
    7. Yoshioka M, St-Pierre S, Drapeau V, Dionne I, Doucet E, Suzuki M, Tremblay A Effects of red pepper on appetite and energy intake.Br J Nutr. 1999;82:115-23. 
    8. Zhang LL, Yan Liu D, Ma LQ, Luo ZD, Cao TB, Zhong J, Yan ZC, Wang LJ, Zhao ZG, Zhu SJ, Schrader M, Thilo F, Zhu ZM, Tepel M Activation of transient receptor potential vanilloid type-1 channel prevents adipogenesis and obesity.Circ Res. 2007;100:1063-70.

    Saturday, January 12, 2013

    Saturated Fat & Postprandial Endotoxemia. Caffeine & Max. vs. Submaximal Exercise. Lactoferrin & the Battle Against Visceral Obesity. High Intensity Strength Training, Free Testosterone & the Use of Perceived Recovery Scales

    Gram negative bacteria, as these E. coli bacteria which have been photographed with a low-temperature electron micrograph (magn. x10,000) tend to produce endotoxins in your gut, while gram positive bacteria tend to produce exotoxins on your food - nasty, ha?
    It has been estimated that a single cell of Escherichia coli contains approximately 106 Lipid A or endotoxin molecules with a mass of about 100,000 Da (the exact mass varies according to the LPS type). The typical human intestinal tract can harbor approximately one gram of endotoxin, which is ~2-4x more than what scientists used in previous rodent studies as a "lethal dose" (Kawai. 1991). Aside from the information about the lethal dose of endotoxins in rodents, these figures, which are at the same time the SuppVersity figures of the week are part of the study by Mani et al. with which we are going to kick off this week's installment of On Short Notice. I guess these figures give you an idea of the toxic potential within your gut and why all the hoopla about leaky guts, the human microbiome, pro- and prebiotics, endotoxemia and co. is probably not all hype, but a hitherto largely neglected aspect of human health (and disease)

    Saturated fat < > gut interaction sheds a dark shadow on the "benign fat of our ancestors"

    (Mani. 2013) -- According to a study from the University of Iowa, the endotoxemia response to a meal, i.e. the amount of inflammatory innately produced toxins from your gut that enter circulation in the postprandial phase, is increased in response to a meal that's high in saturated fat.
    Figure 1: Endotoxin permeablity and changes in serum endotoxin levels in the hours subsequent to the ingestion of a test meal containing either 50ml  coconut (CO), vegetable (VO) and fish oil (FO) in otherwise healthy pigs (Mani. 2013).
    The scientists also found that omega-3 fatty acids from fish and cod liver oil reduced the amount of endotoxins hitting the blood stream and that olive, as well as vegetable oils exhibited a neutral effect. As the data in figure 1 (left) goes to show you, the underlying mechanism behind the saturated fat induced influx of toxins was a whopping +60% increase in the endotoxin permeability (Papp) of the guts of the 24 pigs on which the experiments have been conducted.

    Click here to read more about a previous study that shed some light on the effects of certain nutrients on the gut microbiome.
    Now you can certainly argue that the ground corn-soybean meal dough that was at the base of the test-meal was "the devil" here, but let's be honest, for the average Jane and Joe, there are similar "devils" in any standard meal, they consume, so that the finding that the addition of 50 ml fish oil (FO), vegetable oil (VO) or coconut oil (CO) made such a difference in terms of the influx of pro-inflammatory endotoxins is nothing you can simply ignore. The same goes for the fact these effects occurred in response to the ingestion of organic coconut oil (according to the researchers purchased from Spectrum Naturals Inc.), is actually somewhat unsettling and certainly not in line with some of the previously established benefits of coconut oil consumption, such as it's waist reducing effects in overweight subjects (click here to learn more).

    What's also interesting is that previous rodent studies yielded different results. Laugerette et al., for example, found a similar increase as Mani et al. in mice, but in response to canola and sunflower oil (Laugerette. 2013). This raises the question in how far the effects may be mediated by the baseline diet and the corresponding bacterial composition of the small and large intestine (or species specific effects?). After all, the gram negative bacteria of which scientists believe that they increase in response to high fat diets have the highest endotoxin content. They populate the distal ileum and the colon and are supposedly the main sources for circulating endotoxin (Berg. 1999) - if you had less of them to begin with, you are not as likely to suffer from an acute influx of endotoxins in response to the ingestion of SFAs. Moreover, what it the endotoxins were released in response to the antimicrobial effects of coconut oil?
    Update: Wyatt Brown left an interesting comment on this issue on the SuppVersity facebook wall, I do not want to deny anyone, so I thought I'd just update the post with it:
    I'm glad people are talking about the endotoxemia thing, that's what we do at SuppVersity, have the discussions nobody else does! I think it's important to recognize that, especially for the paleo/ancestral types who accuse grains of inducing intestinal permeability and then go and eat diets that cause intestinal permeability...and because endotoxemia is bad...

    But I don't think that all is lost, the evolutionary argument may just need to be modified a little. The current paradigm involves looking at individual foods, or worse yet (though that was supposed to be an improvement) broad classes of macronutrients, and our adaptation to them. Well, it looks like those might have been wrong in some ways, maybe we aren't fully adapted to some foods, but then again maybe we are adapted to a particular kind of diet that makes those foods all right.

    Some of the antioxidants in orange juice prevent intestinal permeability from dietary fats it seems the bile acids secreted during digestion are to blame, and it's an oxidative mechanism, so the orange juice prevents this (Ghanim. 2010). It also works with grape polyphenols (Ghanim. 2011).

    Moreover, it seems that feeding mice a diet rich in fermentable fibers prevents endotoxemia - maybe due to butyrate production and its protective effects on intestinal cells (Cani. 2007). And acutely, fiber with a high fat meal also prevents the effect (Ghanim. 2013). It's probably due its ability to sequester excess bile acids (Vahouny. 1980)

    So it would appear that we are adapted to a diet containing those fats but also containing fruit and fiber.
    As you see, Wyatt makes a pretty valid point, when he hints at other contributing factors of which I know that they got forgotten way too often in the paradigmatic and downright stupid and unproductive high fat vs. low fat and the SFA vs. PUFA skirmishes on the Internet.
    I guess, there is still much to learn here and I hope you are aware that the SuppVersity is the place you can do just that: Learn something new everyday!

    Caffeine's effect on muscular fatigability during maximal vs. supramaximal stimulation

    There is no question that caffeine can have beneficial effects on exercise performance - whether every athlete benefits to a similar degree is yet as questionable as the "ideal" dosage to elicit optimal fat loss effects without the negative side effects that are associated with the chronic overconsumption of any type of stimulant (click here to learn more about the narrow margin between "just enough" and "already too much")
    (Tallis. 2013) -- In a very straight forward in vitro experiment, researchers from the Coventry University in the UK found that the ergogenic effects of caffeine depend on the intensity of the muscular contractions. When the scientists exposed isolated soleus muscles to up to 70µM of caffeine (that's still within what you would consider a "physiological dosis"), Tallis et al. observed that the muscular endurance increased only, when the muscles were challenged at submaximal intensities (+19.2%), while it decreased by 17.6% upon maximal challenge.

    Whether or not this is important for the average strength trainee remains questionable. After all the "endurance" part of your regimen is usually conducted at submaximal intensities and weheter you can do one interval more or less probably doesn't matter as well. For a professional cyclist participating in a time trial, those 17.6% may well make the difference between victory and defeat. On the other hand, there is more to "endurance" than local muscular fatique, so that caffeines effects on the central nervous system will at least ameliorate, if not totally counter these potential downsides.

    Lactoferrin, an overlooked visceral fat annihilator?

    I don't even know if all of you are familiar with the globular glycoprotein lactoferrin that is widely represented in various secretory fluids, saliva, tears, nasal secretions and - above all - colostrum. It has a very important role in the immune defenses of your body and according to a recent review by Japanese scientists, it does also exert direct lipolytic (breakdown and release of fat from) and anti-adipogenic effects in vitro and in vivo.

    All of you who read the "Ask Dr. Andro" installment on Milk & Colostrum should at least have heard of lactoferrin before. It's one of the anti-microbial, anti-fungal and immune modulating molecules in the white elixir of mammalian life that's also suppose to exert antagonist effects on the opioid receptors (read more).
    A hitherto still unsolved problem is the delivery of the lactoferrin to the target tissue, but with the advent of specifically enteric coated lactoferrin which circumvents the breakdown of the 80kDa protein in the acidic milieu of the stomach and allows its passage via the lymphatic system into the mesenteric (visceral) fat pad, where it accumulates, interacts with the lactoferrin receptor LRP1 which is directly located on the adipocytes of the visceral adipocytes and suppresses the expression of PPARγ reduces the expression of perilipin and thus shuts down lipogenesis and increases lipolysis in existing adipocytes. Accordingly, respective supplements could in fact become "a highly safe and a promising dietary supplement" that has in addition to its already well-known beneficial effects on the immune system the ability the potential to "be used to promote human health globally" (Ono. 2013). But let's be honest, haven't we heard claims like that before?

    Perceived recovery 48h after a workout correlates with free testosterone levels

    (Sikorski. 2013) -- Yeah, I know the whole free testosterone after a workout discussion is pathetic, but what about free testosterone levels 48h hours after the workout, i.e. amidst the hot recovery phase? According to a soon to be published study in the Journal of Strength and Conditioning Research a standardized test to elicit the perceived recovery (PRS) appears to be surprisingly accurate to predict the drop in free testosterone after a session of high volume resistance training designed to elicit a large amount of fatigue and muscle damage. 
    "All subjects participated in a high volume resistance training session consisting of 3 sets of 10-12 repetition maximum loads for each of the following exercises: full squats, bench press, deadlifts, pullups, bent over rows, dips, shoulder press, barbell curls and triceps extensions. Rest periods were 1 minute between sets, and 2 minutes between exercises." (Sikorski. 2013)
    The scientists from the University of Tampa recruited 35 highly resistance-trained subjects (aged 21.3 ± 1.9 years) with an average squat, bench press, and deadlift of 1.7± 0.2, 1.38 ± 1.9 and 2.07 ± 2.7 times their bodyweight for their study. The subjects had a minimum experience of 3 years of resistance training and were thus probably way more capable to access their own recovery status than the average Jane or Joe after with a dozen of irregular workouts under her / his belt. Blood analyses, soreness and PRS tests were conducted at before, immediately after and 48h after the workout (total weight lifted in the training session was 16,353 ± 3,691.8 kg) and revealed ...
      Read more about the hormonal effects of different workout styles in this previous SuppVersity post
    • a significant increases in leg, chest and arm soreness from pre to post exercise,
    • a significant increases in creatine kinase (CK; measure of muscle damage) from 189.4 ± 100.2 to 512 ± 222.7 U/L (p < 0.05),
    • no changes in cortisol, testosterone, and free testosterone from pre to immediately post workout,
    • a significant moderate, and inverse relationship between leg soreness and PRS scores and  low, inverse relationships between chest and arm soreness and PRS scores, 
    • a significant, moderate inverse relationship between CK and PRS 
    yet only when the CK values peaked 48h after the workout, however, the aforementioned "low, direct relationship with PRS" (Sikorski. 2013) was observed. As the researchers point out this result could be
    "[...] important for those individuals that have neither the resources (time, monetary or otherwise) nor the expertise to draw blood and perform chemical assays to determine recovery status and or muscle damage. [...] This, in the bigger picture, may help appropriately design periodization plans designed aimed at functional overreaching and ensure proper overload. Moreover, and perhaps more importantly, the ability to indicate level of recovery following heavy resistance training expeditiously and accurately may be a critically important step in prevention of overtraining." (Sikorski. 2013)
    The scientists do yet also emphasize that "future work is needed addressing other variable influencing recovery and long-term studies investigating the usefulness of the PRS in training" before a more general recommendation can be issued.



    That's it for today folks. As usual there are a couple of interesting facebook posts for you to check out and discuss
    • Upping your vitamin D levels does nothing to reduce knee pain or cartilage loss in patients with symptomatic knee ostearthritis (read more)
    • "The one-two punch", retinoic acid suppresses obesity by both promoting energy expenditure and by inhibiting adipogenesis (read more)
    • More evidence of intrauterine dietary priming: Low protein in the womb + high caloric diet afterwards => insulin resistance (read more)
    and obviously, you are invited to post your thoughts or questions on any of today's items in the comment area of this post.Aside from that, I wish all of you an exciting weekend ;-)

    References:
    • Berg RD. Bacterial translocation from the gastrointestinal tract. Adv Exp Med Biol 1999, 473:11–30. 
    • Cani PD, Neyrinck AM, Fava F, Knauf C, Burcelin RG, Tuohy KM, Gibson GR, Delzenne NM. Selective increases of bifidobacteria in gut microflora improve high-fat-diet-induced diabetes in mice through a mechanism associated with endotoxaemia. Diabetologia. 2007 Nov;50(11):2374-83.
    • Ghanim H, Sia CL, Upadhyay M, Korzeniewski K, Viswanathan P, Abuaysheh S, Mohanty P, Dandona P. Orange juice neutralizes the proinflammatory effect of a high-fat, high-carbohydrate meal and prevents endotoxin increase and Toll-like receptor expression. Am J Clin Nutr. 2010 Apr;91(4):940-9.
    • Ghanim H, Sia CL, Korzeniewski K, Lohano T, Abuaysheh S, Marumganti A, Chaudhuri A, Dandona P. A resveratrol and polyphenol preparation suppresses oxidative and inflammatory stress response to a high-fat, high-carbohydrate meal. J Clin Endocrinol Metab. 2011 May;96(5):1409-14.
    • Ghanim et al. The Intake of Fiber Suppresses the High-Fat High-Carbohydrate Meal-Induced Endotoxemia, Oxidative Stress and Inflammation. Endocr Rev, Vol. 33 (03_MeetingAbstracts): OR03-1
    • Kawai Y, Kaneda K, Morisawa Y, Akagawa K. Protection of mice from lethal endotoxemia by use of an ornithine-containing lipid or a serine-containing lipid. Infect Immun. 1991 Aug;59(8):2560-6. Erratum in: Infect Immun 1992 Jan;60(1):320.
    • Laugerette F, Furet JP, Debard C, Daira P, Loizon E, Geloen A, Soulage CO, Simonet C, Lefils-Lacourtablaise J, Bernoud-Hubac N. Oil composition of high-fat diet affects metabolic inflammation differently in connection with endotoxin receptors in mice. Am J Physiol Endocrinol Metab. 2013;302:E374–386.
    • Mani V, Hollis JH, Gabler NK. Dietary oil composition differentially modulates intestinal endotoxin transport and postprandial endotoxemia. Nutrition & Metabolism. 2013;10(6).
    • Ono T, Morishita S, Murakoshi M. Novel  function of bovine lactoferin in lipid metabolism: Visceral fat reduction by enteric-coated lactoferrin. Pharma Nutrition. 2013 [accepted manuscript] 
    • Sikorski EM, Wilson JM, Lowery RP, Joy JM, Laurant CM, M-C Wilson S, Hesson D,
      Naimo MA, Averbuch B, Gilchrist P. Changes in Perceived Recovery Status Scale
      Following High Volume, Muscle Damaging Resistance Exercise. J Strength Cond Res.
      2013 Jan 2. [Epub ahead of print]
    • Tallis J, James RS, Cox VM, Duncan MJ. The effect of a physiological concentration of caffeine on the endurance of maximally and submaximally stimulated mouse soleus muscle. J Physiol Sci. 2013 Jan 6.
    • Vahouny GV, Tombes R, Cassidy MM, Kritchevsky D, Gallo LL. Dietary fibers: V. Binding of bile salts, phospholipids and cholesterol from mixed micelles by bile acid sequestrants and dietary fibers. Lipids. 1980 Dec;15(12):1012-8.

    Monday, January 7, 2013

    20 Weeks of Gluttony Without Gaining a Single Gram of Visceral Fat? A Water Extract From Hops Made It Possible

    Hops: More than an ingredient of the majority of OTC sleeping pills (photo LuckyStarr)
    Hops beer made from the female flowers of Humulus lupulus was the (safer) alternative to untreated water in medieval Europe. Hops are the female flowers (also called seed cones or strobiles) of a hop species and are currently still used as a flavoring and stability agent in beer. Aside from that, the vigorous, climbing, herbaceous perennial has a longstanding history of medical uses and is probably best known for its sedative effects. That a hot water extract from hop could make an excellent addition to an anti-obesity and even fat loss regimen is yet news and - in view of its efficacy - even SuppVersity news ;-)

    Eat like a pig, look like a goddess with hops!

    Actually the subheading is pretty unfair, after all pigs don't eat much different from us, they are opportunistic omnivores... but this is no biology lesson, so let's get back to the topic at hand. There was a time, when I thought that 99% of us would eat crap all day, if it would not make us fat - well, unless I realized that I would not and that there are many others out there who don't even like crap (=convenience food) who would refuse to eat pizza, chips, fries, pancakes, ... all day long. That being said, imagine you could do just that or, if you were a rodent in a lab cage, gorge yourself on a high fat diet with 30% maize starch, 14% casein, 10% sugar, 5% cellulose, 4% soyabean oil, 32.5% lard and some minerals and vitamins (546 kcal/100 g diet - calorically and macrowise this looks much like chocolate and candy bars to me ;-) and end up not just exactly as lean, but even a little leaner than your peers on a "healthy" after two years of gluttony? Sounds crazy? Yeah, but it worked!

    In the latest study from the Ehime University Graduate School of Medicine in Japan (Sumiyoshi. 2013), the scientists demonstrated that 20 weeks on the previously described high fat diet (if you use the rule of thumb that a mouse year equals 40 human years this would be the aforementioned 2 years).
    Figure 1:Body weight trajectory and micrographs of the adipose tissue (Sumiyoshi. 2013)
    Not being fat on the outside and, even more, having a regular weight on the scale is yet only the superficial clue to a more subtle, yet highly important internal difference: the fat cell size. With the hop extracts ability to inhibit lipid accumulation within adipose tissue cells by down-regulating our new acquaintance PPAR-gamma (see "PPARs - High or Low? How Are They Supposed to Be?", red box) and thus blocking both their expansion and their proliferation, the mice in the male C57BL/6J and Balb/c mice in the hop extract groups did in fact end up with less visceral body fat than their peers on the regular chow:
    Figure 2: Organ weights (rel. to group on standard chow) and blood glucose clearance in OGGT (Sumiyoshi. 2013)
    And if that's not enough as far as good news are concerned, their insulin sensitivity and ability to clear glucose from the blood stream was not compromised, either. In this context, it is also worth mentioning that the hop water extract had no effect on faecal fat excretion in mice fed a HF diet (in vivo), and pancreatic lipase activity (in vitro). In other words, the remarkable results were not simply the result of an inhibition of fat absorption.

    Do you remember Rhein the natural PPAR-gamma antagonist in Rhubarb? No? Then I suggested you go back in the archives and (re-)read the respective article. You will be surprised how similar the results were... a total amelioration of the HFD induced weight gain, normal body fat levels and no insulin resistance - sounds familiar, no?
    Bottom line: So, just as the scientists point out in their discussion of the results, the main mechanism behind this miraculous anti-obesity effects is the suppression of the HFD induced increases in PPAR-gamma activity. Against that background it appears ridiculous that already overweight, often obese diabetics and pre-diabetics are still treated with thiazolidinediones including pioglitazone and rosiglitazone (all PPAR-gamma agonists), which 'improve' insulin sensitivity by allowing the adipose organ to proliferate via adipocyte differentiation and increases in lipid and glucose uptake, and fatty acid storage.

    According to the researchers, "[e]xperiments are now in progress to isolate the active substance(s) of hop extract". However, we all know that once this substance is found, the "logical" (actually this is business, not real logic) next step is to add a twist that turns it into a patentable not naturally occurring molecule and make counterproductive and (business logic) no longer really profitable PPAR-gamma agonists with another drug.

    References:
    • Sumiyoshi M, Kimura Y. Hop (Humulus lupulus L.) extract inhibits obesity in mice fed a high-fat diet over the long term. Br J Nutr. 2013 Jan;109(1):162-72.