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marylin monroe
Showing posts with label LPS. Show all posts
Showing posts with label LPS. Show all posts

Yohimbine & Berberine Protect From Death Due to LPS Intoxication; BCAAs Inhibit Serotonin Metabolism & Cause Anxiety, Tryptophan but not SSRIs Help; Sweet Tea Leaves Are PPAR-G Antagonists & Battle High Lipid + Leptin Levels

Skip the fireworks invest the money in some quality ingredients for a fondue or whatever you like and invest the (often non-negligible) rest of the money in a gym membership for the next year.
Actually my figure of the week is 115,000,000 EUR (~152,000,000 US Dollar), which is the sum my fellow country men and women are about to waste on pyrotechnics this year. And a scientifically unconfirmed addition based on my personal observation: 90% of the worst offenders as far as spending money for fireworks goes are at least overweight. Would be interesting to see, if the use of pyrotechnics on New Years Eve is directly associated with fat mass...

I mean, it could be that they spent so much money on their fireworks that they feel they can only afford the junkfood of which everybody and his/her mama still tend to believe that it would be cheaper than buying fresh products and preparing your own food from those.

Ah, I am ranting. That's usually Carl Lanore's task, so I will better go on with the items I have compiled for the today's last installment of On Short Notice in the year 2012:
 
  • Berberine + yohimbine - a synergistic duo to prevent LPS toxicity (Li. 2012) -- With all the recent hoopla about the gut microbiome, I suppose that I don't have to tell you what the acronym LPS stands for, right? Hmm... just to make sure it stands for lipopolysaccharide endotoxins which are produced by gram negative bacteria in your gut and are so "toxic" (in fact they cause profound inflammation) that they can be lethal at higher doses.

    Figure 1: Survival rates (%) after ALB/c mice LPS injection (Li. 2012)
    A group of Chinese scientists have now found that aside from berberine the anti-inflammatory effects of which have been known for quite some time now, yohimbine administered in a daily dose of 2mg/kg (human equivalent 0.16mg/kg) does add to the survival rate of berberine treated rodents (human equivalent 4mg/kg) that were injected intragastrically (so not directly into the blood) with a potentially lethal dosage of 20mg/kg LPS. What's more, taken on its own yohimbine is even more potent than the alkaloid that's found in such plants as Berberis aquifolium, Oregon grape, Berberis vulgaris, Berberis aristata, Hydrastis canadensis (goldenseal), Phellodendron amurense, Coptis chinensis and Tinospora cordifolia.

    The mechanism is mediated by the prevention of liver injury, an upregulating of IL-10 production (an anti-inflammatory cytokine), and related anti-inflammatory effects resulting from the suppression of phosphorylation of IkBa, JNK, ERK and IRF3 in macrophages.

  • Chronic 9-week high BCAA diet impairs brain tryptophan levels and causes anxiety (Coppola. 2012) -- Scientists from the Duke University took another look at the BCAA-tryptophan depression connection, you may have read about in the context of my "Sugar Addicted or Just Stressed Out?" post from January 3, 2012.

    According to the results Anna Coppola and her colleagues are about to publish in the American Journal of Physiology  - Endocrinololgy and Metabolism the provision of a BCAA-enriched diet for 9 weeks leads to both reductions in brain tryptophan levels and an increased turnover of serotonin (5-HT) in rodent brains:
    Figure 2: Composition of low fat  (LF) and high fat (HF) diets with or without added BCAAs (left); effects on the ratio of tryptophan  to the molar sum of large neutral amino acids with and without supplemental  tryptophan in the drinking water and 5HT turnover in the brain (no supplemental trp, right; Coppola. 2012)
    Both groups (BCAA and non-BCAA) consumed about identical amounts of food as the rodents in the complementary (LF or HF) groups, which confirms that the BCAA content did not modify the taste of the chow or rendered it unpalatable (cannot have been cheap bulk powder then ;-). The reduction in both the availability of tryptophan as well as the increase in serotonin (5-HT) turnover in the brain must in fact have been a consequence of the added BCAAs and are most likely the root of the disrupted transport of tryptophan across the BBB in rats, leading to reduced exploratory behavior of rats in EPM testing, a sign of increased anxiety.
    "Recent studies demonstrating a strong  association between BCAA levels, obesity, and obesity-related metabolic disorders, when linked to the findings reported here, may help to explain the strong association between obesity and behavioral abnormalities, including depression and anxiety." (Coppola. 2012)
    As the slight differences between the high an low carb diets show, other nutrients can influence serotonin as well (read more)
    In this regard it is important to point out that these negative side effects were mostly reversible by the provision of 15 mg/100 ml tryptophan in the drinking water of the rodents, but were not alleviated by  the administration of the common serotonine reuptake inhibitor fluoxetine (at 10 mg/kg/day for four weeks).

    Bottom line: Isolation is not what you want if what your body has been build for is complex food. And while the single serving of BCAAs you may gulp down during or right before a workout, on the other hand, probably isn't going to harm you. The "I need BCAAs every 30min" approach to gaining muscle mass, may well turn you into a psychotic wrack if you follow it day in and day out for months or years - at least without chronically adding some l-tryptophan to the equation.

  • Sweet tea leaves protect against obesity: Once more via PPAR-gamma blockade (Zhou. 2012) -- Actually this is probably not news to anyone out there with a degree in Traditional Chinese medicine. After all, Lithocarpus polystachyus Rehd.(Sweet Tea) is Chinese folkloric medicine that has always been used to treat obesity, diabetes, and hypertension in South China:
    "Previous experiments revealed that it contains plentiful bioactive flavonoids and polyphenolic compounds, e.g. phlorizin, trilobatin, 3-hydroxy-phlorizin, etc. These components have extensive pharmacological activities, such as anti-diabetes, memory improvement, anti-aging, inhibition of lipid peroxidation and the growth of human colon cancer cells, and so on." (Zhang. 2012)
    From a "scientific" perspective, however, the efficacy of this herbal medicine as an obesity treatment had still to be elucidated.
    Figure 4: Effects of oral gavage of 75 mg, 150 mg and 300 mg/kg of body weight/day of sweet tea extract or placebo (DIO) in conjunction with the 8 weeks on a obesogenic diet (Zhang. 2012)
    In this context it is yet worth mentioning that this study demonstrated for the first time that the aqueous dry leaves extract of Lithocarpus polystachyus Rehd. can potently reduce the worst metabolic side effects of obesity, such as the hypolipidemia, hypoleptinaemia and the degree of insulin resistance (FINS, HOMA-IR, cf. figure 3) what it does not answer, however, is whether the decline in PPAR-gamma is tissue specific, what exactly is behind the profound decline in leptin levels and whether or not lean rodents, let alone humans, who don't consume an obesogenic diet will see anywhere similar benefits.

    In other words, this is research in progress, but I suppose something you are going to hear more about at the Supppversity in 2013.
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Apropos hearing or rather reading more, I guess you will realize that you have reached the end of today's installment of On Short Notice which means that you will have to progress to the SuppVersity Facebook Wall if you want a second serving of news on...
  • The history of vitamin A as a light sensor and beyond - actually a free full-text I guess those of you who like to "think paleo" may enjoy (read more)
  • A paper on "good" and "bad" inflammation, where the author points out that soothing inflammation too much can lead to a reduction in energy expenditure and may therefore not be the king's road to getting rid of the last blubber (read more)
  • The food-hitlist of young Americans - Featuring sugar, sugary drinks, sugary bakery, sugary ... as their main energy and carbohydrate sources... (read more)
  • Problems with synthroid and generics that have surfaced in a recent study on their efficacy in the treatment of congenital hypothyrodism (read more)
as well as a handful of other news, which are already there or are going to be posted within the next hours. Have a great weekend, everyone! 

References
  • Coppola A, Wenner BR, Ilkayeva O, Stevens RD, Maggioni M, Slotkin TA, Levin ED, Newgard CB. Branched-chain amino acids alter neurobehavioral function in rats. Am J Physiol Endocrinol Metab. 2012 Dec 18.
  • Li H, Wang Y, Zhang H, Jia B, Wang D, et al. Yohimbine Enhances Protection of Berberine against LPS-Induced Mouse Lethality through Multiple Mechanisms. PLoS ONE. 2012; 7(12): e52863. 
  • Zhou CJ, Huang S, Liu JQ, Qiu SQ, Xie FY, Song HP, Li YS, Hou SZ, Lai XP. Sweet tea leaves extract improves leptin resistance in diet-induced obese rats. J Ethnopharmacol. 2013 Jan 9;145(1):386-92.

Mercury, From Fish to Toenail; Less Testosterone Needed W/ TRT + Tongkat Ali; R,R-Monatin the Next Stevia From South Africa! Plus: Magnesium Protects Mitochondria from LPS & Caffeine Arteries from HIIT Induced Platelet Activity!

Image 1: Looks like the Terminator was concerned about "bone" health, maybe he should consider Tonkgat ali as an addition to his TRT... or whatever regimen;-)
If you want to, you can call today's news a special installment of "On Short Notice", I have already had a couple of interesting news and before I am piling up another truckload, I thought I could make at least some of you happy and put a handful of them out before the Super Human Radio & SuppVersity Science Round-Up on Thursday (you better make time to listen live, Thursday, 12PM/EST and download the first installment if you haven't done so, already ;-) and the "official" Saturdaily installment of "On Short Notice", here at the SuppVersity.

So let's see what we have here: Contrary to the order in the headline we will check out your toenails later, after all, I don't know what they look like and don't want to kill your appetite so that you cannot fully appreciate the findings of Fry et al. who discuss the potential application of an extract from the bark of Sclerochiton ilicifolius A.Meeuse as an all natural sweetener that's probably at least as, if not sweeter than stevia and - you guessed it - 100% calorie free! The same, i.e. being calorie free is obviously true for magnesium aspartate... whatever, in view of its potent protective effects against lipopolysaccharide induced mitochondrial damage and decay, you should not care about that, anyways.  And despite the fact that I would hope that the same goes for the minor pro-thrombotic effects of interval training, there may be one or another of the SuppVersity readers who's having issues with platelet activity already and will therefore be relieved to hear that a cup of coffee before your workout will not increase, but rather decrease the risk of thrombosis in response to the post-exercise increase in platelet activity.
You don't want to miss this week's installment of the joint Super Human Radio + SuppVersity
Science News Roundup - the show airs each Thursday, 12PM/EST (tune in live!)
The latter, i.e. the risk of thrombosis would by the way be even higher, if you were one of Xun et al.'s study participants who consumes one or more servings of fish per day. This would place you at greater risk of having high toenail mercury levels and with those being representative of whole body and tissue mercury levels you would already have higher baseline platelet activity than Mr. or Mrs. Healthy Average Joe, which would probably be a reason for your doctor to tell you that he cannot, by any means, put you on TRT (testosterone replacement therapy) - and that even if you were about as hypogonadal as the castrated rats in the Saadiah Abdul Razak study from the latest issue of Evidence Based Complementary Medicine. A study by the way you could print, show it to your doctor and say: "Look, I don't want to lose my muscle and break my bone, so let's do this you give me a script for low dose TRT and I get myself some quality Eurycoma longifolia extract and we will see how my values look like in 6 weeks from now." 

You see, as usual, even doctors can learn something, here at the SuppVersity so let's not put them on the rack for another paragraph or two and start right with our first item for today:
  • Image 2: Could the bark of these twigs from a spiny-leafed, hardwood shrub from South Africa hold a likewise natural stevia alternative?
    Is R,R-Monatin the new stevia?
    I know you all love your stevia, but there are people who simply hate the taste and still don't want to resort to any of the dubious sugar alcohols let alone the 100% artificial sweeteners, who may be interested that John C. Fry and a couple of other researchers published ad paper on a novel all natural sweetener from the bark of a South African spiny-leafed, hardwood shrub that goes by the name of  Sclerochiton ilicifolius A.Meeuse (Fry. 2012).
    According to the Fry et al., the compound has a potency above 3000 at 5% sucrose equivalent, which would make it (theoretically) even sweeter than stevia. Since the latter hit the market, we do yet all know how unrealiable these theoretical values are so that we will probably have to wait until the first monatin-based sweeteners become available - and you as a SuppVersity would be the first to know what's in there ;-)
    If we assume that there are no hitherto undisclosed health issues with monatin and it does in fact taste sweet and not disgusting, metallic or whatever, it is also likely that we are going to see new "proprietary" blends of stevia + monatin, similar to their artificial counterparts you still see in Coke Zero & Co - the quasi "natural" way to get as close as possible to the "true sugar taste", people are still craving, these days... if they don't hurry, I do yet doubt that there will be a market for products like that very long, as we are more or less trained to crave the "real sugar" taste, but this would be the topic for another blogpost ;-)
  • Figure 1: Effect of different doses of pre-supplementation with magnesium aspartate on markers of LPS induced mitochondrial decay, antioxidant activity and oxidative damage (data calculated based on Ahmed. 2012)
    250mg/day magnesium counter the metabolic derangements from lipopolysaccharide (LPS) intoxication When Lamiaa A. Ahmed added 20mg/kg or 40mg/kg (~125mg or 250mg in human equivalents) of magnesium aspartate to the chow mice that were pretreated with LPS injections, the researcher from the Faculty of Pharmacy at the University of Cairo found that this regimen restored body temperature (low dose) and heart rate (high dose) of the profoundly inflamed to normal, restored the lowered glutathione levels (both doses) and reduced (low dose) and normalized (high dose) the elevated creatine kinase (marker of cell damage) and thiobarbituric acid reactive substances (TBARS; marker of oxidative damage) levels that had been elevated by the lipopolysaccharide treatment (Ahmed. 2012).
    The ATP:ADP ratio, the activity of the sodium potassium pumps and the creatine phosphate levels (CrPh protects the cell wall from damage as you remember from a previous installment, right?) were not completely restored to, but the pathological changes were minimized dose-dependently. In conjunction with the normalization of the lactate to pyruvate ratio, a sign of either exertional exercise or - if it occurs at rest, as it does here - mitochondrial failure, these observations indicate that Mg therapy could be a reliable protective agent in LPS-induced cardio- and general myotoxicity. In that it should be noted that higher, but not exorbitantly high (250mg is roughly 2/3 of what you should aim to get from our diet everyday, anyway) doses were more effective in reducing cell membrane damage as well as in improving the intracellular acidosis, energy production, oxidative stress and Na+,K+-ATPase activity and corresponded with a better perseverance of the mitochondrial ultrastructure.
    And while Ahmed sees the main application of Mg aspartate therapy in "critically ill" patients, I would say that the large group of patients (and non-patients) with other pathologies such as a leaky gut would benefit as well, since the defective gut barrier opens the door for the "excrements" of your gut bacteria, to induce all sorts of pathologies including mitochondrial damage and decay, but also depression, obesity, diabetes, etc. (Maes. 2008; Musso. 2010)... and before I forget to mention it is not unlikely that cheap magnesium citrate (if tolerated) would do the job just as well - maybe in a slightly higher dosage of say 300mg per day (best taken in divided doses with food).
  • Image 3: Coffee is full of wonders ;-)
    Antithrombotic effects of caffeine blunt platelet activity in response to interval training The use of 3mg/kg (equiv. to ~1 large cup of strong coffee or 2 smaller cups of regular coffee) of caffeine as an ergogenic aid during aerobic interval training cannot just improve your performance, it will also prevent the pro-thrombotic platelet function activation that occurs during exercise. That's the somewhat surprising finding of the one of the latest studies from the Health Innovations Research Institute at the School of Medical Sciences on the campus of the RMIT University in Melbourne, Australia (Whittaker. 2012).
    Whether this effect is of any importance to you certainly depends on your personal health. Personally, I would say that it is negligible for the vast majority of people who engage in strenuous athletic activities, if you belong to a risk group where platelet function is either high (risk of developing thromboses) or low (risk of bleeding) you may want to keep these results in mind.
    And if you don't care about platelet function, you may be considering to have another cup of coffee, when I tell you that ~3 cups per day appear to offer some protection against skin cancer, parkinson's and non-alcoholic-fatty-liver disease (click on the links to read the full stories on the SuppVersity Facebook Wall).
  • Image 4: Remember last week's post on the mercury in fish and how it's not simply excreted with the selenium, let alone the cysteine it's bound to? It looks like the toenails of young Americans would confirm those lab results.
    Something fishy about toenail mercury levels I guess all of you will remember my "shocking" post about the mercury toxicity from fish (cf. "Mercury in Fish NOT Harmless, Regardless of Cysteine, Selenium, EPA or DHA!"), this one could actually go as sort of a follow up post, as it deals with the real-world consequences of mercury exposure and the subsequent deposition of the heavy metal in the toe nails of the 4,344 American male and female participants (age 20–32y) in the CARDIA Trace Element Study researchers from the Gillings School of Global Public Health and School of Medicine at the University of North Carolina have recently examined (Xun. 2012).
    I know, it may sound gross, but toenails have, among the various biological specimens you could theoretically analyze, the advantage of providing a relatively reliable long-term measure of Hg exposure (from a few months to a year), are easily collected, transported,stored, and cleaned and are relatively sheltered from environmental contaminants and less likely to be contaminated by shampoo, hair treatments, and medication (Morris. 1983, He 2011).
    Image 5: Who would have thought that your toenails provide a way better measure of the toxic load you have accumulated than your hair, for example? Just looking at them is yet not enough for a thorough analysis
    Since the Hg levels in toenails also have relatively high correlation with both mercury intake (r = 0.54; Ohno. 2007) and the mercury deposition in critical organs (spec. in the brain - r = 0.65 ; Bjorkman. 2007), it should be obvious that the association between toe nail mercury levels and fish intake in all, but those participants who lived in Oakland and had the lowest (0.45 servings per day) fish intake per day could have a significant impact on the health of the subjects that consume more than one serving of fish per day and have a 76% higher beta coefficient of the natural logarithm of toenail Hg level than those who consume fish / seafood less than once per day (this mean that the mercury in the toenails of daily fish eaters increases 75% more rapidly towards that level than in those who eat 0.35 to 1.03 servings). Interestingly this was particularly true for the Caucasian men in the study, where the beta coefficient was another 45% higher (beta = 0.64 vs. beta = 0.44).
    Despite the fact that these results seem to confirm that eating one dose of untested canned tuna (which would probably go as way more than one serving in the eyes of the scientists) is not necessarily the best idea. It does however not mean that you cannot have you once or even twice a weak salmon steak or sushi - just keep your diet more versatile and don't make fish (or any other single foodstuff your only "allowed" source of protein or fat.
  • Figure 2: Weight of castrated rats on TRT, TRT (50% dose) + Eurycoma longifolia  (EL) or Eurycoma longifolia, alone, at the end of the 6-week supplementation phase, ratio of bone building osteocalcin to CRX a marker of bone resorption and actual bone strength, as measure by maximal tolerable load and Young's Modulus; all data expressed relative to sham operated (=intact) rats (data calculated based on Saadiah Abdul Razak. 2012)
    Low dose testosterone + long jack better than TRT alone? The results Saadiah Abdul Razak et al. present in the latest issue of Evidence Based Complementary Medicine don't actually look like they were interesting for muscle heads, I mean "androgen dependent osteoporosis", where are the word hypertrophy, skeletal muscle, or at least ripped & jacked? And I have to admit that of these only "skeletal muscle" makes its appearance somewhere in the introductory remarks of the discussion and only in the context of the "auxiliary functions" of testosterone as a growth hormone and IGF-1 booster and muscle builder. I do still believe that the data in the figure 2 on the right is going to get your attention - after all, the combination treatment of testosterone + Eurycoma longifolia did not "just" restore the balance of the "bone builder" osteocalcin to the "bone eater" ORX (actually it's just a marker of bone resorption) to normal (=sham levels), it did also effectively build the strongest bones, with the highest maximal load in Newton and the greatest elastic stability, as measured by the Young's Modulus.
    What's interesting, as well, is that all treatments were equally effective in restoring normal body weight - who knows maybe 15mg/kg/day (HED: 2.4mg/kg; ~170-250mg/day) of Eurycoma longifolia (EL) extract would even make a valuable stand alone (no pun intended ;-) testosterone booster for mild cases of real hypogonadism (not the one where your diet is shitty, your training sucks and it's your "low T" that you believe is to to blame that you make no gains), or an adjunct to HRT that would allow you to use only half the regular dose (this was done in the study at hand) and see similar results!? That it's good for sperm quality and testosterone, when it's administered in ~13x higher dosages in rodents (Chan. 2009) and for sperm health in men (at about the dosage used here; cf. Tambi. 2010) has already been established.
    And still, the "major gap" of which Bhat et al. postulated that it existed "in [sic!] providing scientific base for commercial utilization and clearance of the Tongkat Ali products with regard to consumer's safety" is still in existence. Moreover, the same could be said about our knowledge with respect to the individual effects of the potentially biologically active component(s) in the plant and respective extracts. Before those issues are not solved, the "extract" you may buy could be anything from uberpotent to simply toxic... although I suspect that it is still most likely that it will simply be ineffective.
What? That went too fast? Don't worry, it's just two days to the Thursdaily Science News Roundup on SHR, four days to the next official installment of "On Short Notice" and just one click away from a handful of additional up-to-the-minute news on the SuppVersity Facebook Wall such as
and all the other interesting tidbits I have already and am still going to post there even before the next SuppVersity news is going to be published right here, tomorrow! Ah,... and by the way it's not prohibited to share articles you like on Facebook and other social media outlets ;-)

References:
  • Ahmed, L.A., Protective effects of magnesium supplementation on metabolic energy derangements in
    lipopolysaccharide-induced cardiotoxicity in mice. Eur J Pharmacol. 2012.
  • Bhat R, Karim AA. Tongkat Ali (Eurycoma longifolia Jack): a review on its ethnobotany and pharmacological importance. Fitoterapia. 2010 Oct;81(7):669-79. Epub 2010 Apr 29. 
  • Bjorkman L, Lundekvam BF, Laegreid T, Bertelsen BI, Morild I, Lilleng P, Lind B, Palm B, Vahter M. Mercury in human brain, blood, muscle and toenails in relation to exposure: an
    autopsy study. Environ Health. 2007; 6:30 
  • Chan KL, Low BS, Teh CH, Das PK. The effect of Eurycoma longifolia on sperm quality of male rats. Nat Prod Commun. 2009 Oct;4(10):1331-6. 
  • Fry JC, Yurttas N, Biermann KL, Lindley MG, Goulson MJ. The Sweetness Concentration-Response of R,R-Monatin, a Naturally Occurring High-Potency Sweetener. J Food Sci. 2012 Aug 27.  
  • He K. Trace elements in nails as biomarkers in clinical research. Eur J Clin Invest. 2011;  41(1):98–102.
  • Maes M, Kubera M, Leunis JC. The gut-brain barrier in major depression: intestinal mucosal dysfunction with an increased translocation of LPS from gram negative enterobacteria (leaky gut) plays a role in the inflammatory pathophysiology of depression. Neuro Endocrinol Lett. 2008 Feb;29(1):117-24.
  • Morris JS, Stampfer MJ, Willett WC Dietary selenium in humans: toenails as an indicator. Biol Trace Elem Res. 1983; 5:529–537.
  • Ohno T, Sakamoto M, Kurosawa T, Dakeishi M, Iwata T, Murata K. Total mercury levels in hair, toenail, and urine among women free from occupational exposure and their relations to renal tubular function. Environ Res. 2007;103(2):191–1.
  • Saadiah Abdul Razak H, Shuid AN, Naina Mohamed I. Combined Effects of Eurycoma
    longifolia and Testosterone on Androgen-Deficient Osteoporosis in a Male Rat Model. Evid Based Complement Alternat Med. 2012;2012:872406. Epub 2012 Aug 9.
  • Whittaker JP, Linden MD, Coffey VG. Effect of Aerobic Interval Training and Caffeine on Blood Platelet Function. Med Sci Sports Exerc. 2012 Aug 29.
  • Xun P, Liu K, Morris JS, Jordan JM, He K. Distributions and determinants of mercury concentrations in toenails among American young adults: the CARDIA Trace Element Study. Environ Sci Pollut Res Int. 2012 Aug 25.

Something Fishy: Leucine-Rich Protein + Fish Oil Supplement Boosts White Blood Cell EPA Content and Immune Response

Regular readers of the SuppVersity, as well as people who religiously follow Carl Lenore's Super Human Radio and happened to listen to my 1st appearance on the show, will know that I am generally skeptic about the usefulness of unwarranted high dose (>1-2g of combined EPA + DHA) fish oil supplementation. This is not because I think fish oil is poison, but rather out of my awareness that its pharmacological effects have more similarity to those of a drug than to those of a "common food" (including possible side effects).

Now, a group of scientists from the Netherlands and the United Kingdom published the results of a study (Faber. 2011) which found another interesting stone from the fragmented mosaic our current understanding of the effects and nutritional interactions of fish oil, in general, and EPA, in particular, resembles. While the aim of the study, which was to quantify the incorporation of EPA and DHA into white blood cells, was nothing new, the nutritional supplement they used for this purpose, a mixture of 2.4 g EPA, 1.2 g DHA, 39.7 g protein (including 4.4 g L-leucine), and 5.6 g oligosaccharides was innovative and the results were astounding. After 1 week of 2x200ml of what the scientists label a "medical food" (beware there is probably somebody patenting the formula already ;-), ...
[... from 0.5% at baseline] the percentage of EPA [in white blood cell phospholipids] rose to 2.8% (P < 0.001). Additionally, the production of proinflammatory cytokines in LPS-stimulated whole blood cultures was significantly increased within 1 wk.
It appears that the addition of protein has a positive influence on the incorporation of EPA into white blood cells, which, in turn, boosts the natural immune response to lipopolysaccharides stimulation. This, however, brings me back to my initial comment about "pharmacological" effects of fish oil: While for a cancer patient with lowered immunity, the consumption of the "medical food" or, what I would consider equivalent, a combination of whey + fish oil, would unquestionably be beneficial - but what about someone with allergies or even auto-immune issues? I assume you would agree that to further boost an immune system that is already running havoc does not seem to be a good idea!? In the end, and here I do not mind repeating myself, it again all comes back to considering who you are and what your current medical and nutritional condition is, before you start taking a supplement of which the whole Internet community seems to believe that its the healthiest (if not the only healthy) fat on earth...

Easy Whey to Prevent LPS Induced Inflammation? Whey Protein Prevents LPS Binding to TRL-4 and IL-8 Production. Surprise: Pressurized Denatured Whey Works Best!

Unlikely that this or whatever whey protein you have bought as of late was pressurized with an Avure High Pressure Processing System at more than 500mPa in order to denature it (yeah you're reading right) and produce a bunch of fancy new peptides which appear to have even more potent anti-LPS effects than those in regular whey protein (hydrolysate).
Saturday's post on saturated fatty acids and their negative effects on post-prandial endotoxemia has turned out to be (un-)surprisingly popular. I am still not sure if this will be same for the post at hand; and that despite the fact that it revolves around the exact same topic, namely the inflammatory reaction to lipopolysaccharides (LPS). In the case of endotoxins such as LPS, the inflammation, which is, as you all should by now be aware of, an endogenous "alert, defense and repair" reaction of our bodies, is actually triggered by their interaction with the so-called toll-like-receptor. Now scientists from the McGill University in Montreal have found that there is a substance all of you are familiar with and some of you may even be consuming on daily or at least regular basis that can block this interaction, as well as the ensuing overproduction of cytokines and/or other well-meant, but in the end potentially hazardous immune responses.

There is al-wheys something new about whey ;-)

As the researchers point out the beneficial effects of whey proteins don't just go way beyond their muscle building effects and are mediated by several and not just one of it's amino acid, protein and peptide ingredients:
"Whey proteins (WP), a by-product of the cheese-making industry, possess nutritional benefits as a source of protein of high biological value. Whey products and whey-derived peptides have demonstrated a number of anti-inflammatory effects. These anti-inflammatory effects include decreased cytokine release in rodent models of ischaemia– reperfusion and exposure to LPS. In addition, individual whey constituents, such as lactoferrin or glycomacropeptide, and peptides released from these by pepsin– pancreatin hydrolysis exhibit anti-inflammatory effects, such as suppression of tissue neutrophilia or inhibition of inflammatory cytokine release." (Iskandar. 2013)
In that, whey proteins have been shown to be particularly useful for the treatment and/or management of chronic inflammatory diseases such as cystic fibrosis, a disease passed down through families that causes thick, sticky mucus to build up in the lungs, digestive tract, and other areas of the body and a disease that will probably make you - just like me - think about the high cysteine content of whey, immediately.

"Under pressure..."

For the study at hand the researchers used two different epithelial cell types and added lipopsaccharides (LPS), as well as
  • regular whey (Inpro 90 Whey Protein Isolate from Vitalus Nutrition) that had been enzymatically hydrolysated (=predigested) to yield a product that would be similar to what many supplement are now selling you as either intra- or post-workout "super whey" (their not my claim ;-), or
  • pressurized whey, which was based on the same raw material, but was pressurized before being hydrolysated
to their petri dishes and observed the effect the additional whey proteins had on the LPS-induced interleukin-8 (IL-8) production and the binding of the Escherichia coli LPS to the TRL4s (toll-like receptor 4) on the surface of the epithelial cells.
Figure 1: Differential effects of different doses (in µg/ml) regular and pressurized whey protein hydrolysate on LPS-induced IL-8 secretion in 1HAEo- cells (left) and corresponding LPS-binding to toll-like receptors on the surface of the cells (right); data expressed relative to LPS only (Iskandar. 2013)
As the data in figure 1 clearly shows, both whey protein hydrolysate, the regular, as well as the pressurized one had similar effects on the binding of LPS. The ensuing decrease in cytokine production (IL-8) was yet statistically significant only in the dish with the pressurized whey protein hydrolysate. Moreover at the highest dosage of the normal whey protein hydrolysate, there is what you could call a "rebound effect", if this reached statistical significance - which it obviously didn't.

Figure 2: Effect of 500 or 1000mg/ml of pressurized whey protein and native whey protein hydrolysates on 1HAEo- cell culture medium ferric-reducing antioxidant power  (FRAP); data expressed relative to basal levels (Iskandar. 2013)
That said, the overall effect size dependent not just on the type of whey protein hydrolysate, but also on the cell type: While the 1HAEOo- cells (shown in figure 1) needed the highest tested dose to show statistically significant reductions in IL-8 production, the effect reached significance at 500 µg/ml for the CFTE29o- cells using the pressurized whey protein hydrolysate and at 1,000µg/ml for the regular WPH (obviously no rebound here).

A similar difference was observed in the results FRAP essay (FRAB stands for ferric reducing ability of plasma and the results provide information about the general antioxidant defenses of the cells). While the CFTE29o- cells (shown in figure 2) were happy with both whey protein hydrolysate, the pressurized WPH had a minimal, but statistically non-significant edge in the 1HAEOo- cells.

Is there anything special about pressurized hydrolysates?

In previous studies the researchers had already established that pressurization of WP improves its
in vitro digestibility, promotes the release of novel peptides by gastrointestinal digestive enzymes and enhances the antiinflammatory effect (Vilela. 2006).
"These in vitro findings were also confirmed in clinical studies. Thus, a 2-week supplementation with pressurised whey increased the levels of glutathione, a crucial low-molecular anantioxidant, in peripheral blood mononuclear cel. Further, we have reported that a 1-month dietary supplementation with pressurised whey improved nutritional status and markers of systemic inflammation in patients with CF [cystic fibrosis]." (Iskandar. 2012)
In the study at hand, the research team from Canada did now want to (a) investigate the potential anti-inflammatory and antioxidant effects of pressurized and regular whey protein hydrolysates in the context of cystic fibrosis and non- CF respiratory epithelial cells and (b) explore the mechanisms by which pressurised and native whey exert their beneficial anti-inflammatory effects. Their research hypothesis was that it is the difference in peptide (=complex bond of amino acids that has different effects from the same amino acids in isolation) availability that is enhanced by the pressurisation of whey that's responsible for it's superiority compared to regular whey proteins.

Establishing the (leaky) gut, bacteria, non-alcoholic fatty liver disease connection

With the researchers focus being on cystic fibrosis, the results of this in-vitro trial are still highly meaningful for all of us. In particular the more potent increase in overall anti-oxidant capacity upon exposure of the epithelial cell lines would suggest that the ingestion of pressurized whey proteins could exert similar benficial effects in other parts of the body, specifically the digestive tract, as well.

Suggested read: "Plus: 20+ Things to Protect and Restore the Integrity of Your Intestinal Wall" (read more)
On the other hand, the more important blockage of the toll-like receptors, was virtually identical with both the regular and the pressurized whey protein and the general implications of these findings are actually pretty far-reaching. After all, TRL4 has only recently been implicated in the development of fibrosis in non-alcoholic fatty liver disease subsequent to alteration of gut microbiota, increased intestinal permeability and the ensuing increase in exposure of the liver to gut-derived bacterial products (Frainarius. 2012). The exact same horror-scenario many of you will probably have had on mind, when they read about the effects the high saturated fat content had in the study by Mani et al. from Saturday.

Bottom line: So will just having your daily whey protect your gut from all assaults? Probably not, but is may be just another one of the many small things which may not render your intestinal wall and overall immune system bullet-proof but will at least help them to come with the omnipresent and 24/7 assault they are exposed to. Whether it's really got to be pressurized whey, on the other hand, remains questionable. Personally, I don't think so - if you take a look at the dose-dependently reduced expression of IL-8 in response to LPS exposure upon co-administration with pressurized and normal whey, it seems as if the pressurized variety did not only have the edge, but was also lacking the rebound effect that occurred at very high doses in the 1HAEo-cells.

If you want to live out your OCD tendencies on your whey intake, start with rule #1 "Never Sip Your Whey" (read why).
Since, previous have shown that pressurization does impart significant changes not just to the digestibility of whey protein hydrolysates, but also to their peptide structure (Vilela. 2006), it could thus well be that the observed differences are of real world importance, as well, and cannot be compensated for by just taking more of the "regular" whey protein hydrolysates.  I hope there will soon be comparative studies in human subjects available, until then I would not worry too much about not getting the "optimal" whey protein to combat TRL-4 binding of LPS and increase anti-oxidant defenses. As a regular SuppVersity reader, you are probably apart of the privileged part of the Western society which has to care least about LPS and overall (bad) inflammation, anyways. Plus, as the study goes to show "regular" whey has similar, albeit not "optimal" effects in this regard.

References:
  • Iskandar MM, Dauletbaev N, Kubow S, Mawji N, Lands LC. Whey protein hydrolysates decrease IL-8 secretion in lipopolysaccharide (LPS)-stimulated respiratory epithelial cells by affecting LPS binding to Toll-like receptor 4. Br J Nutr. 2013 Jan 3:1-11.
  • Frasinariu OE, Ceccarelli S, Alisi A, Moraru E, Nobili V. Gut-liver axis and fibrosis in nonalcoholic fatty liver disease: An input for novel therapies. Dig Liver Dis. 2012 Dec 29.
  • Vilela RM, Lands LC, Chan HM, Azadi B, Kubow S. High hydrostatic pressure enhances whey protein digestibility to generate whey peptides that improve glutathione status in CFTR-deficient lung epithelial cells. Mol Nutr Food Res. 2006 Nov;50(11):1013-29.

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. 2012). 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. 2012). 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. 2012). 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. 2012;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. 2012 [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.