Showing posts with label Mitochondrial Adaptation to Exercise and Training. Show all posts
Showing posts with label Mitochondrial Adaptation to Exercise and Training. Show all posts

Sunday, November 20, 2016

Clinicians and Coaches: ROCK YOUR MICROBIOME & NUTRIGENOMIC MEDICINE w/ The Results & Outcome Academy Conference in 3 weeks

Check out the updated site: TheGutInstitute.Com has launched!





INVITATION TO COACHES AND PRACTITIONERS


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Clinicians and Coaches:

ROCK YOUR MICROBIOME and NUTRIGENOMIC MEDICINE 
w/ The Results & Outcome Academy Conference
In 3 weeks!


How to Grow Your Practice by Incorporating Microbiome & Nutrigenomic Medicine

Cost: VIRTUALLY FREE AND WORTH $2497
Date: Dec 10th and 11th, 2016
Location: Double Tree Hotel, Berkeley Marina, California


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What Clinicians and Coaches Will Get!
  • You will walk away with swag worth over $1000 – so the conference is virtually FREE
  • Knowledge on how to build your business
  • Cutting-edge, personalized gut and nutrigenomic protocols for your clients
  • A deep connection with new lifelong friends and future collaboration partners
  • Part of a growing emerging international community who are at the forefront of functional medicine for methylation and microbiome medicine
This an event like no other. We are bringing together leading practitioners, functional medicine providers, and health coaches to create a collaborative community.
This will be transformational experience - if you plan to come and just sit in the seat and take notes – then this is not for you… You will not leave the same as you came


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This is Dr. Anh, and on behalf of Drs. Grace and Erika, I want to say “THANK YOU!” so much for your interest in our upcoming event, Microbiome and Nutrigenomic Medicine w/ Business Acumen live training!

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NEW SITE  TheGutInstitute.Com for the latest in microbiome, gut flora, science, podcasts and more!

Friday, August 29, 2014

Exercise (Step #6) to Be Lean, Healthy, HAWWWT, Have a Great Gut and GUT MICROBIOTA; New Study on Spectacular Diversity, Health Markers, and Guts of Elite Irish Rugby Team

IRISH RUGBY MEMBERS
Source
Exercise (Step #6)

Did you guys see how a new trial showed that the studly, elite rugby players on the national Irish team displayed awesome guts (and abs) while they were in training? I love this topic because not only does it raise many questions but it may answer what we inherently know/suspect about the interweaved relationship between good health and lifestyles/diet/exercise AND GUT HEALTH.

Exercise is Step #6 of the 7 Steps for optimal gut health and super bionic fiber combo (Versions B and A). I used to train and do 1/2 marathons and triathlons, and got very tired of defending my beloved chronic cardio to overweight HIIT purists. No joke. Hard to defend what is obviously ancestral. Our ancestors moved. A lot. They foraged and fought -- they fed their young and fortified their dwellings. They moved consistently often for hours. Genetically some (like apoE4) need to move much more than others perhaps. True also for the Pima Indians who have ancestral-type genetics but live in a discordant, modern, carb-heavy, sedentary ecology. See here, here and here.

New Elite Irish National Rugby Team Player Study:
Exercise and associated dietary extremes impact on gut microbial diversity (free PDF)
Clarke et al. Gut. 2014 Jun 9.

According to the study, “The results provide evidence for a beneficial impact of exercise on gut microbiota diversity but also indicate that the relationship is complex and is related to accompanying dietary extremes.”


Science daily recap: The Irish rugby team has exceptional guts: Exercise and diet impact gut microbial diversity

Editorial by Georgina Hold: The gut microbiota, dietary extremes and exercise

Exercise and higher dietary protein related to better guts and statistically related to diversity (=better gut) and lower inflammatory biomarkers compared with controls. Very well done IMHO, though INFINITE confounders lol.

Many factors raise diversity which the researchers failed to address:
(1) exposure to dirt/soil organisms on the rugby fields (dirt can make you happier)
(2) contact with diverse other players' skin, spit, sweat, whatever is like how dogs and their owners share microbiota
(3) being outdoors and contact with environmental microorganisms (lower disease and atopy)
(4) genetic variants (selective for warrior genes, elite athleticism, super guts, lower inflammation, etc)


Here's a synopsis from the researchers:

What is already known about this subject?
▸ An altered gut microbiota composition has
been associated with a number of diseases and
syndromes, including obesity.
▸ We and others have shown the primacy of diet
in influencing the microbiota in obesity.
▸ Loss of gut microbiota diversity has been linked
to an increasing number of conditions such as
autism, GI diseases and obesity associated
inflammatory characteristics.
▸ Akkermansia muciniphilla abundance has been
shown to inversely correlate with obesity and
associated metabolic disorders.

What are the new findings?
▸ This is the first report that exercise increases
gut microbial diversity in humans.
▸ Protein consumption positively correlates with
microbial diversity (correlation coefficients
0.24–0.43).
▸ The athletes in the low body mass index (BMI)
group had significantly higher proportions of
the genus Akkermansia levels compared with
the high BMI group.


How might it impact on clinical practice in
the foreseeable future?


▸ Our findings indicate that exercise is another
important factor in the relationship between
the microbiota, host immunity and host
metabolism, with diet playing an important
role. Further, intervention-based studies to
tease apart this relationship will be important
and provide further insights into optimal
therapies to influence the gut microbiota and
its relationship with health and disease



New Zealand Rugby Team
Source

Spectacular Abs, Spectacular Gut Microbiota Diversity

The elite athletes had way more butyrate producers (Rumino, Clostridia, etc) and Akkermansia muciniphila compared with both high BMI and low BMI controls. These species found in higher abundance in the healthy athletes are also the same found in our lean ancestral core that I discussed earlier and how to achieve: Sorry. Resistant Starch is Unlikely to Miraculously Cause Weight Loss and Body Fat Loss

A. muciniphila is very unique making up 3-5% of fecal microbiota in healthy folks. IT LOWERS BODY FAT. The mechanisms are unknown but if A. muciniphila are fed to rodents, they lose body fat. If they are fed their favorite foods (oligofructose) then A. muciniphila populations are restored and weight loss in rodent models ensues. It is also associated with elevated endocanabinnoid concentrations and maintains healthy blood glucoses (maybe this is why pot causes lower glucose... thus 'munchies'?).



Unlike Resistant Starch, Oligofructose and Inulin-like Fructans Cause Miraculous Body Fat Loss and Weight Loss

Yes. Many fibers induce fat loss, but resistant starch is not one imho.

Inulin and oligofructose often areHumans and rodent model research.

It works for me. It's half of Version B of my super bionic fiber formula. Inulin and oligos are naturally found abundantly in onions, leeks (French stay skinny on leek soup), asparagus, sunchokes, etc. It's sweet tasting with little energy/calories for us but plentiful for the intestinal flora.

I believe it's body fat reducing characteristics are related to A. muciniphila and many of our co-evolved ancestral core microbiota which have co-adapted to eating the diverse spectrum of plant polysaccharides on Earth that we feed them (oligos, inulin, xylan, arabinoxylan, lignin, arabinogalactan, beta-glucan, hemicelluloses, pectin, glucomannan, etc). They have diversified above and beyond raw resistant starch. You don't need a lot. Oligofructose and inulin-like fructans are the second most abundant 'fiber' on the planet, found in over 36,000 plants in our global ecosystem in roots, tubers, legumes, leaves, grains, agave, cacti, and stems. Tiny amounts go a LOOOOONG way.

In humans, A. muciniphila is 'missing' in the gut fingerprint of obesity, T2 diabetes and IBD, to name just a few post-industrial conditions. When I look at a gut profile, what I see matches the studies; in obese/weight-challenged, A muciniphila is low. In lean, abundant.
"In the article that appeared on 13 May in the journal Proceedings of the National Academy of Sciences, the research team concluded that the bacteria are less frequent in mice with induced obesity and with type 2 (adult-onset) diabetes. Furthermore, administering rather indigestible fibres such as oligofructose, known for its advantageous effect on intestinal biota, resulted in a recovery of the Akkermansia population in mice. The presence of the bacteria strengthens the intestinal barrier and is also inversely correlated with weight increase (fat storage), inflammation reactions in fatty tissues and insulin resistance.

To check that, the researchers administered Akkermansia bacteria to ordinary mice on various diets. With a normal diet, no effect was noticed but in mice that became overweight as a result of a high-fat diet, the Akkermansia bacteria caused a reduction in fat development and associated metabolic defects, without affecting food intake. After the administration of Akkermansia bacteria, there was an increase in endocannabinoid levels, a substance that ensures blood glucose remains at the correct level. In addition, the intestinal barrier function was strengthened. Only intact, living bacteria produced these results; the researchers noticed that bacteria that had been heated beforehand had no effect." Sciencedaily


Back to Healthy, Elite Rugby Players With Spectacular Guts

The athletes were in training. They exercised, built lean muscle mass (biomarker: CK), burned fat, and consumed way more fiber (conventional) 39 g/day v 20-something g/day by controls. They ate vastly higher volumes of food in general (exceeding 4400 kcal/day) because they ate more starches/carbs + vegetables/fruit + MEAT.

They ate way way way more protein including whey protein from powders (sulfur source) than controls  (median 2.4 g/kg v. 1.1-1.6 g/day in controls) and protein intake was found to be directly related to healthier guts/diversity. I think dietary protein is awesome as long as we achieve enough fiber and exercise/oxygenation/lymph-circulation... Dietary protein is aligned to our carnivorous guts and ancestral history. Given however after mass microbial extinctions in our guts that are unparalleled in the history of mammals, we do not digest as well as our ancient predecessors. Suboptimal gut health is marked by poor gastric acid secretion (hence GERD/heartburn!), low elastase and other pancreatic enzyme secretion, loss of gall bladder function/stones, poor fecal pH, lack of gut microbial fermentation and small intestinal permeability/inflammation. We are missing our ancestral core bacteria, yeasts and wild spirochetes that keep us healthy and digestion smooth and unfettered.

Dietary protein consumption also correlated with muscle mass (CK). As you're probably aware muscle is a good biomarker for longevity (sarcopenia, less longevity -- please see Jamie Scott's AHS14 Presentation).

I like how this study by Clarke and his University College Cork colleagues put a framework to muscle, diet, exercise and gut health here. These guys were in intense conditioning for their sport... no junk or 'snacks' compared with controls. Diet was apparently clean and dialed for optimal glycolytics, POWER SPRINTS and chronic cardio. Only water polo players might give them a run for their money lol.
"The athletes are an exceptional group in terms of their dietary intake, fitness/endurance and now we know, in relation to their gut microbiota! This high diversity is particularly linked with exercise and protein consumption and suggests that eating specific proteins and/or exercise can provide a means of increasing microbial diversity in the gut.

This is the first report that exercise increases microbial diversity in humans. While we and others have previously shown that diet influences microbial diversity, we can now report that protein consumption, in particular, positively correlates with microbial diversity." Source


Other related news:
How exercise may affect gut hormones, weight loss

Saturday, October 27, 2012

Cancer: 50 Shades of F-cked Up?

Galena Officinalis (French Lilac or Goat's Rue)
Ancient remedy for polyuria
(sign of diabetes mellitus, frequent urine and sugar in the urine)

Original source of chemical that
was tweaked and patented into diabetes drug known as
metformin, which is emerging as the newest cancer drug
Photo Credit: Agro Semena




Hyperinsulinemia and Insulin Resistance: New Metabolic Markers for Cancer ?

I've talked a lot about insulin as it relates to disease but recently it is being discussed as a marker for cancer [1].  Though elevated blood insulin and insulin resistance (calculated HOMA) are emerging as new correlated factors for cancer and tumour progression, modern conventional medicine still has little solutions for either 'identifying' or 'treating' hyperinsulinemia other than two classes of drugs (PPAR agonists and biguanides/metformin). BTW be aware Crestor (rosuvastatin) and other statins can cause diabetes, higher blood glucoses (BG) and insulin resistance. Photo credit: modified [2].



Hyperinsulinemia? Insulin resistance (IR)?

How to recognize signs of hyperinsulinemia and IR?

Hyperinsulinemia and insulin resistance are associated with the initiation and growth of:

--central abdominal adiposity

--intraorgan adiposity (fatty liver, fatty pancreas, fatty gallbladder, fatty heart, fatty coronary/renal/peripheral arteries, fatty ovaries (e.g. PCOS and ensuing infertility), fatty muscles/sarcopenia)

--fatty liver (on ultrasound or reliable predictor: elevated liver test, ALT)

--skin tags

--warts

--acanthosis nigricans (darkening in armpits, behind knees, neck)

--melasma (skin darkening from insulin resistance induced by hormone imbalance by birth control, pregnancy, menopause, hormone replacement therapy)

--benign tumours

--malignant cancers, leukemias and lymphomas

--fatty brain degeneration, Alzheimer's ('Type 3 Diabetes Mellitus')




Pervasive Refined, Pesticide-Coated Monsanto-Grains, the S.A.D. and Other Nonsense

For many decades, like heart disease and stroke, cancer had high rates of association with diabetes and obesity. But recently the stats changed. I can agree with higher rates of insulin-related problems being secondary to macronutrient overnutrition of carbohydrates derived from refined sources (wheat, cereals, sugar, white monospecies potatoes, etc) however with the advent of pesticide technology since the Vietnam War and introduction of GMO crops in the 1990s, I believe that our burden of toxicants and insidious intestinal perturbation from GMO Bt crops are having subtle but immense influences on the growing rates of excessive insulin resistance and hyperinsulinemia.

Prior Animal Pharm: Pesticides Cause Insulin Resistance and Obesity
Photo credit: Oberlin Thesis [3]


This is concerning...Before embolic diseases were #1 and #3 for mortality in the U.S.A. (heart disease, strokes, respectively) however, a few years ago, mortality from cancer eclipsed heart disease death as the #1 killer for the first time. Are Americans smoking more (no)? Is the GMO Bt corn/wheat(gluten) based Food Pyramid more engrained than ever in dietary, medical and public school education (yes YES and yes...)?

What are Americans doing differently compared to 5-10 yrs ago? Are they getting more influenza, swine flu, whooping cough, HPV and other mercury-laden or aluminum-laden vaccines (metals can contribute to insulin resistance and hypothyroidism)...? Is our diet and lifestyles more devoid of nutrients, saturated fat, and vitamins (choline, n-3 pufa, methyl donors like animal sourced-folates, magnesium, zinc, selenium, and animal sourced-retinol, etc)?

Why has the cancer rate suddenly jumped? What other factors are behind the story? Is it toxin related, lifestyle related, stress related, epigenetic related?  I believe all have a factor... and like hypertension, heart disease, obesity, metabolic syndrome, migraines, and autism, I think it's 50 shades of f-cked up... [ref Twilight fan fiction]

* 2.6-fold increase prostate CA at highest insulin quartiles (J Natl Cancer Inst. 2009 Sep 16;101(18):1272-9. Serum insulin, glucose, indices of insulin resistance, and risk of prostate cancer.)

* 2.2-fold increase breast CA at highest waist-to-hip ratio (Cancer Causes Control. 2000 Sep;11(8):721-30. Markers of insulin resistance and sex steroid hormone activity in relation to breast cancer risk: a prospective analysis of abdominal adiposity, sebum production, and hirsutism (Italy).)

* Higher quartiles of insulin were predictive in non-diabetic breast CA women of 'poorer outcomes, consistent with the existence of a prognostic effect of insulin across broad categories of body weight.' Goodwin et al. J Clin Oncol 2001;20:42-51.




Aging, Cancer, IR -- AMPK Downregulated and NFkB/Inflammation Ramped Up

Tumor cells can initiate and grow with neolithic, post-agriculture, high/refined carbohydrate, grain-dominant diets as a result of constant and incessant switching to glucose-burning cell metabolism instead of energy efficient fat-burning fluxes. Environmental and food toxicants, stress, lack of exercise, 'iSolation' (excess electronics, less face-to-face contact), deficiency of micronutrients and vitamins (including choline and methyl donors from liver, organ meats and egg yolks) and broken sun-dark circadian rhythms merely add to these heavy metabolic disturbances.

Photo credit: [4]







Insulin and AMPK

Most cancers may take 10-20 years to initiate, progress and amass to recognizable sizes in the prostate, breast, colon, brain, abdominal or other areas [4]. What triggers oncogenes and mutations to occur? To promote diversity of our genes and accelerated evolution to climactic changes in ecological microniches, it is natural for our genes to accumulate DNA mutations and changes. Just as developing abdominal fat and a 'summer mode' of adiposity is protective short term, humans and other lifeforms are built for these changes. Plasticity of DNA expression gives us the benefit of longevity and reverting to forms more adaptable to diverse conditions, environments and shifting situations. Photo credit: modified [5].

Insulin is an ancient growth hormone and mitogenic; its function is to grow tissue. It's essential for life. Type 1 Diabetes individuals have none and, without insulin, may go into diabetic comas within 24-36 hours. Often Type 1 Diabetes patients have a sarcopenic, low muscle phenotype because adequate and correctly timed insulin spikes with meals are necessary for appropriate muscle growth and maintenance. All animals require low basal amounts of insulin for metabolism and energy however the consequences of high, constant and postprandial (aftermeal) insulin levels are activation of mTOR to grow tissues, inflammation, increased ROS and the inability of the mitochondria to phosphorylate ATP for metabolic energy.

AMPK is among many networked pathways known to regulate whole organism and single cell energetics [2, 4-8]. AMPK is found in all eukaryotes and is considered a highly conserved, master metabolic switch by some to coordinate growth, metabolism, food intake, body weight, autophagy, mitophagy, mitochondrial biogenesis and inflammation. AMPK fluxes on and off depending on fasting v. feeding states and energetic demands.  In mammals, AMPK is turned on under situations of perceived low cellular energy, e.g. low ATP which occur whilst exercise demands increase, periodic starvation and long-term starvation. Feeding, hyperglycemia (high BG), insulin spikes and other situations temporarily shut off AMPK. This makes sense, no? The body is accumulating energy, storing for the future, and replenishing depleted reserves. Under normal situations, the pattern is intermittent.  Unfortunately, AMPK can be shut off chronically instead of following a pattern of periodic flux. This is associated and observed in conditions such as clinical hyperinsulinemia, obesity, metabolic syndrome, aging and cancer [5-8]. Metformin  is an indirect stimulator of AMPK.  It is a diabetes drug, that can improve BG control, insulin resistance and shown to reduce both diabetic microvascular complications and cardiac events (macrovascular). Photo credit [7].



Metformin Appears to Desist Cancer Growth

Apparently in triple-negative breast cancer (TNBC; negative for estrogen, progesterone, and the type II tyrosine kinase (RTK) HER-2 receptor), effects of metformin are showing promise in vitro and human prospective studies are underway.  In a 2012 retrospective chart review, metformin combined with adjuvant chemotherapy in triple negative breast cancer was associated with reduced incidence of distant metastatic disease (p=0.06), however no significant differences in survival rates were observed [10].

Other observational studies show significant 25-62% relative risk reduction of colorectal, liver, pancreatic, breast, endometrial/uterine, and other cancers in metformin users versus non-users in Type 2 Diabetes trials. By the way, research shows that diabetes treatments with insulin and/or sulfonylureas (mechanism: increase endogenous insulin secretion) are associated with 500% and 250% SIGNIFICANTLY MORE CANCER, respectively, over other therapies or metformin in a comprehensive, non-industry funded U of T M.D. Anderson retrospective study that shook up the the Big Pharma world [11]. Really?

Yes. Again, many many many shades of f-cked up...

Hold your breath. More exciting research is coming... since there are no 'textbook' neoplasm solutions (besides hack, irradiate, chemo).  Treatment and therapeutics are lacking IMHO just as prevention and treatment for clinical hypertension, obesity, metabolic syndrome, heart disease and other insulin-related consequences are woefully inadequate [12,13].





Metformin: Drug That Lowers Insulin and Insulin Resistance (But Prevents Exercise-induced Muscle Growth and VO2 Max Benefits)

The effectiveness of metformin goes without fanfare. It is the #1 firstline medication for diabetes and the only diabetic drug that has been shown to lower cardiac mortality.  Other diabetic medications like PPAR-gamma agonists (Actos, Avandia) display marginal reductions in mortality but this is negated or even trumped by the associated increased prevalence of drug-associated sudden death, heart disease, heart failure, peripheral edema and heart failure mortality in the published clinical trials [Why? PPAR-gamma increases insulin sensitivity in the brown and subcutaneous white fat, exactly WHERE WE DO NOT WANT IT i.e. epicardial adipose depots ('fatty heart')].

Until recently the mechanism of action of metformin was unknown. Recent studies suggest that metformin affects LKB1 which activates and increases AMPK activity. We have discussed earlier AMPK as it's role is important in conserving proliferation and growth per demand and for the purpose of energy production. Simply put, AMPK increases fat uptake into peripheral cells, fat burning, and mitochondrial biogenesis in muscles upon energetic demands (e.g. when ATP goes down at the cellular level). When I used to counsel patients on metformin, I added sometimes that metformin is like 'exercise in a pill' -- it results in lower glucoses, lower insulin resistance, reduction in adiposity, lowering of inflammation, and weight loss.  Unlike starvation and exercise, however, metformin generally does not induce eventual hunger (in fact it can induce nausea and anorexia). Metformin apparently has no hypothalamus AMPK effects,  and this is perhaps why hunger does not ensue despite weight loss associated with metformin.  Other notable effects of metformin are -- GI upset, nausea, diarrhea, unpredicted 'explosive' diarrhea (as several patients have complained to me), abdominal cramping, intestinal dysbiosis leading to clinical vitamin B12 deficiency and related cognitive deficits over time. Photo credit: [9].

New research from Braun and his brainiac research group showed that metformin actually does mimic exercise yet when combined with exercise, metformin (2000 mg/day) appears to negate the complete, skeletal muscle benefits of exercise in prediabetic individuals [14,15]. Braun and his lab have done fantastic work on elucidating how our bodies utilize varied macronutrient substrates, handle energy deficits/surpluses and teasing out how metformin fits into the metabolic picture IMHO.  Unlike exercise or periodic starvation which typically leads to muscle gains and growth (e.g. protein synthesis) upon refeeding, when the synthetic drug, metformin, is added to an exercise program, the lean mass growth and increases of expected VO2 max benefits are BLUNTED. The exercise program was 12 weeks, 3 times weekly, of 60-75 cycling (45 min, 70% of pretraining max) and progressive resistance training including chest press, leg press, and latissimus pull-downs. Protein synthesis appeared blocked -- the FFM (fat-free mass, proxy for lean body mass) decreased significantly in the span of the 12-week experiment in both drug groups: metformin alone (M-alone, lost 1.7 kg) and metformin+exercise (EM, lost 0.5 kg), whereas the pure exercise group significantly gained 2.0 kg of lean, fat-free mass.

AMPK activation which may be devoid of natural on-off fluxes appears to be ultimately associated with sacrifice of protein and muscle construction post-exercise stimulus. When AMPK is turned-on, the function is to increase net energy (ATP). The metabolic pathways are shunted toward producing energy for IMMEDIATE demands and shunted toward eliminating short-term energy-sucking processes, like pancreatic insulin secretion, liver gluconeogenesis, and growing nice musculature, physiques and hot bodies. Makes sense, no? Yes, it does improve the metrics of conventional diabetes medicine (BG, HgbA1c), but at what cost? Is 'metabolic flexibility' over-compensated and lost without natural AMPK rhythms [16]?  Exercise obviously improves the balance between dysfunctional carbohydrate oxidation and lipid oxidation, yet synthetically knocking out carbohydrate oxidation via constant AMPK appears to induce sarcopenia and hinder the full insulin-sensitizing, anti-inflammatory benefits of exercise. Actually it is no surprise that exercise trumps metformin drug use in cases where insulin resistance may be reversible, as it seems.

Other negatives of metformin are that higher blood lactate may result (build up from anaerobic or hypoxic glucose/carb metabolism). One risk with metformin use is lactic acidosis from toxic accumulation of lactate which can be ~~50% fatal. The danger for this adverse effect is higher in kidney- and liver-compromised states such as dehydration, binge/chronic alcohol use, kidney disease, liver disease, heart failure, elderly, and co-adminstration with kidney-toxic drugs -- therefore use is contraindicated.



Controlling Insulin and Insulin Resistance With Paleo-Ancestral Eating: Frasetto et al

In PCOS women, metformin has some success at improving fertility. What about diet and exercise? At Crossfit and RobbWolf.com, numerous stories of *cough cough* unintended pregnancies in (previously) infertile couples abound! Exercise +paleo/ancestral eating reverse infertility more effectively than pharmaceuticals and current reproductive technology IMHO as it appears from stories in paleo-land.

Frasetto et al (EJCN 2009) 68% Decrease Insulin and 72% Improvement on Insulin Resistance on Hunter-Gatherer 7-Day Paleolithic Diet

In the 10-day experiment, Frasetto et al demonstrated that basal insulin in overweight men and women age 18 to 50 could be lowered by 68% from 69 mol/L to 21 pmol/L on a grain-free, legume-free, dairy-free (~220 grams carbs/day, Low Glycemic Index) diet that simulated our evolutionary roots. Additionally, HOMA, a measure of insulin resistance, dramatically decreased from 3.2 to 1.0 by 72%. Elevated blood pressure and weight naturally decreased. The study aimed for neutral weight (no change) and required higher caloric intake to offset the weight loss in the Paleo group.

This experiment was indeed short. Most of us in the evo/ancestral/paleo/primal community hear of similar success stories of health reversal on this type of timeline all the time.

Why? Because perhaps the evolutionary-based diet is aligned with older DNA and optimal expression of insulin sensitivity?



Ketones Appear to Desist Cancer Growth

Ketones are generated by either consuming MCT oil/coconut oil or a low or no carbohydrate diet. Ketones are the metabolic currency of the (a)  fasting or starving energetic state and (b) when physical training is fat burning (25-70% max heart rate) and extended.

The brain runs naturally well on ketones (granted the adrenals are healthy; ketone generation requires cortisol and adrenaline). We are built to intermittently fast and run on ketones when required (postnatal, extended chronic aerobic exercise, intermittent or chronic starvation).

Several studies show the surprisingly positive benefits of MCT oil, ketotic diets or infusion of ketones for treating cancer [17,18,19]. Why? Ketones are the opposite of IR-promoting, refined, high-carb, grain-intensive diets.

In our evolutionary fitness and paleo communities, it is popular to practice periodic starvation of 18-36 hours several times during a month (granted healthy adrenals and good deep rest/sleep). The practice elicits many health promoting effects as it increases ketone bodies to utilize as fuel for the brain and muscles, synthesized from visceral and subcutaneous fat stores.

[**  FYI... I rarely do intermittent fasting (IF) now since my adrenal glands are borderline-frail. As an individual experiment to combat body fat increases (15 lbs) due to the Mirena IUD (18 months of synthetic progestin toxicity), I did try frequent IF but found it further deteriorated adrenal function. So I'd caution anyone with  un-compensated, frail or marginal adrenal function to consider the value of avoidance of IF and consider the merit of varied, low glycemic index carbs in adrenal exhaustion protocols (100 - 150 grams daily --nonallergenic starches and whole foods) like Dr. Lam's adrenal optimization protocol. **]




Ketones and Metformin are Epigenetic HDAC-Inhibitors

Bioactive components of our food have epigenetic influence on potentical cancer profiles and insulin/IR signatures. We live now in the post-genomic DNA world. DNA may be the text and chromatin, the words, of our chapters, but epigenetic modifications are the punctuation, paragraphs and grammar that give words life and context. Researchers Shaw and Mihaylova at the Salk Institute in San Diego studied the effects of metformin and AMPK and elucidated one of the core mechanisms of metformin and AMPK's action for reversing chronic insulin resistance defects [8]. AMPK activation stimulates downstream inhibition of an enzyme, histone deacetylase (HDAC), that blocks 'punctuation', or in other words, normal chromatin DNA 'editing.'  HDAC inhibition leads to activation of intracellular antioxidant pathways and resumption of normal DNA chromatin form and function.

It turns out that ketones and metformin have similar epigenetic molecular mechanisms; both are HDAC inhibitors [8,20]. This is believed to be how they may elicit some of their powerful effects in insulin resistant conditions. Many spices, herbs, vegetables, animal products, fermented dairy products (phenylbutyrate), royal jelly (phenylbutyrate) and polyphenol-rich foods contain bioactive components that behave by editing and providing clarity/context to our DNA blueprint via inhibition of HDAC [21]. Photo credit [21].







How About An Evolutionary Medicine Based Approach to Cancer Treatment and Prevention?

Radiation, chemotherapy and treatment of cancer take a toll on pediatric, adult and elderly patients. Some of the long term effects including cardiotoxicity, nerve ending and brain damage and even increased risk for other cancers. Many cancer treatments fail with 5- and 10-year survival rates of 25-50% or less. The monetary costs of cancer treatment can add up and may eventually bankrupt Medicare and current health insurances provided by large and small businesses. Can we afford to continue and ignore the misalignment between government sanctioned dietary advice (whole unprocessed lectins, Rockefeller-wheat-gluten-galore, GMO-corn-soy-everything, low fat, high refined carbs, n-6 pufa overload) and the chronic and acute diseases including cancer? How best for modern conventional medicine to mutate, re-align, evolve and provide healthcare from the perspective of evolution?

I have no answers but would be interested in your thoughts...





Evolutionary Bloggers:

Robb Wolf: Sept 2007 post and his interview with Dr. Seyfried 'Cancer and ketosis' [18]

Dr. Eades: Metabolism and Ketones






References:

1. Obesity related hyperinsulinaemia and hyperglycaemia and cancer development.
Becker S, Dossus L, Kaaks R.
Arch Physiol Biochem. 2009 May;115(2):86-96.

2. AMPK and the biochemistry of exercise: implications for human health and disease.
Richter EA, Ruderman NB.
Biochem J. 2009 Mar 1;418(2):261-75.

3.  Mechanisms linking obesity to insulin resistance and type 2 diabetes.
Kahn SE, Hull RL, Utzschneider KM.
Nature. 2006 Dec 14;444(7121):840-6.

4.  Targeting inflammatory pathways by triterpenoids for prevention and treatment of cancer.
Yadav VR, Prasad S, Sung B, Kannappan R, Aggarwal BB.
Toxins (Basel). 2010 Oct;2(10):2428-66.

5.  AMP-activated protein kinase (AMPK) controls the aging process via an integrated signaling network.
Salminen A, Kaarniranta K.
Ageing Res Rev. 2012 Apr;11(2):230-41.

6 . An energetic tale of AMPK-independent effects of metformin.
Miller RA, Birnbaum MJ.
J Clin Invest. 2010 Jul 1;120(7):2267-70.

7. AMPK: a metabolic gauge regulating whole-body energy homeostasis.
Lage R, Diéguez C, Vidal-Puig A, López M.
Trends Mol Med. 2008 Dec;14(12):539-49.

8.  The AMPK signalling pathway coordinates cell growth, autophagy and metabolism.
Mihaylova MM, Shaw RJ.
Nat Cell Biol. 2011 Sep 2;13(9):1016-23.

9 . Understanding the benefit of metformin use in cancer treatment.
Dowling RJ, Goodwin PJ, Stambolic V.
BMC Med. 2011 Apr 6;9:33.

10. Effect of metformin on survival outcomes in diabetic patients with triple receptor-negative breast cancer.
Bayraktar S, Hernadez-Aya LF, Lei X, Meric-Bernstam F, Litton JK, Hsu L, Hortobagyi GN, Gonzalez-Angulo AM.
Cancer. 2012 Mar 1;118(5):1202-11.

11. Antidiabetic therapies affect risk of pancreatic cancer.
Li D, Yeung SC, Hassan MM, Konopleva M, Abbruzzese JL.
Gastroenterology. 2009 Aug;137(2):482-8.

12. Dietary energy availability affects primary and metastatic breast cancer and metformin efficacy.
Phoenix KN, Vumbaca F, Fox MM, Evans R, Claffey KP. Breast Cancer Res Treat. 2009 Nov 22.

13. Expanding the arsenal: metformin for the treatment of triple-negative breast cancer?
Jiralerspong S, Gonzalez-Angulo AM, Hung MC.Cell Cycle. 2009 Sep 1;8(17):2681.

14. Independent and combined effects of exercise training and metformin on insulin sensitivity in individuals with prediabetes.
Malin SK, Gerber R, Chipkin SR, Braun B.
Diabetes Care. 2012 Jan;35(1):131-6.

15. Combining short-term metformin treatment and one bout of exercise does not increase insulin action in insulin-resistant individuals.
Sharoff CG, Hagobian TA, Malin SK, Chipkin SR, Yu H, Hirshman MF, Goodyear LJ, Braun B.
Am J Physiol Endocrinol Metab. 2010 Apr;298(4):E815-23.

16.  Metabolic flexibility in the development of insulin resistance and type 2 diabetes: effects of lifestyle.  [Free PDF -- click]
Corpeleijn E, Saris WH, Blaak EE.
Obes Rev. 2009 Mar;10(2):178-93.

17. Effects of a ketogenic diet on tumor metabolism and nutritional status in pediatric oncology patients: two case reports.
Nebeling LC, Miraldi F, Shurin SB, Lerner E.
J Am Coll Nutr. 1995 Apr;14(2):202-8.

18. Targeting energy metabolism in brain cancer through calorie restriction and the ketogenic diet.
Seyfried BT, Kiebish M, Marsh J, Mukherjee P.
J Cancer Res Ther. 2009 Sep;5 Suppl 1:S7-15. Review.

19. Growth of human gastric cancer cells in nude mice is delayed by a ketogenic diet supplemented with omega-3 fatty acids and medium-chain triglycerides.
Otto C, Kaemmerer U, Illert B, Muehling B, Pfetzer N, Wittig R, Voelker HU, Thiede A, Coy JF.
BMC Cancer. 2008 Apr 30;8:122.

20. From natural products to small molecule ketone histone deacetylase inhibitors: development of new class specific agents.
Jones P, Steinkühler C.
Curr Pharm Des. 2008;14(6):545-61.

21. Epigenetic impact of dietary polyphenols in cancer chemoprevention: lifelong remodeling of our epigenomes.
Vanden Berghe W.
Pharmacol Res. 2012 Jun;65(6):565-76.






[Re-tweaked old Nephropal(eo) post]

Thursday, May 12, 2011

Thor: BIG, Bulging, Strong... Cardio+Xfit

Thor/Chris Hemsworth
(Picture at Celebitchy.com)


Today I'll be presenting deep thoughts.

Mhhhhmmm.... Mighty God of Thunder and weather... Thor (played by haaawwwt and humble aussie Chris Hemsworth) and his *haa ah!* mitochondria...


SUMMER FLICKS ARE HERE LADIES!

Watch 'em (and try to stop drooling). It was a toss up between Thor and the FF/XXX franchise (2 hotties) which was a t-o-u-g-h-i-e. [Celebitchy Thor and his mighty abdominal muscles rule the box office was a factor.]

Mr.Hemsworth [and his mitochondria] talk about his workout HERE. Bulking out excessively on heavy lifting made him 'blocky' and unable to move lithely, but provided the beef. However, switching it up to 'cardio and crossfit-style' workouts gave him the final movie form (listen at 1:33), fit that fancy Nordic warrior outfit and save Asgard and the world.

Sunday, December 6, 2009

Insulin and Aging: How Paleo Works



Ai M showed the disparity between insulin changes between oral glucose loading (75 grams glucose) versus a high saturated fat CREAM dosing.


Carb equivalents 75 grams = 5 servings CARBs

Go to nutritiondata.com for more comparisons.

1 serv CARB = 15 grams

Dairy -- 1 cup milk = ~15 g

Fruit -- 2 bites is about 15 grams (small palm-full).

Grains (~ 15 grams):
Oatbran 1/3 cup. Oatmeal 1/3 cup. Bread 1 slice or half-slice depending on the density. Rice 1/3 cup. Pasta 1/3 cup. Broccoli 2-3 cups just kidding but infinitely more compared with grains which have an insanely high-carb density as well as genetic propensity to trigger stress, glucocorticoid and the expression of other 'bad' genes. See prior animal pharm FUNGENUT post HERE.

Legumes (~15 grams):
1/2 cup beans


Ai M et al. Clinica Chimica Acta 387 (2008) 36–41. Email me for the PDF if desired.

What is PALEO?
None of the above
--no dairy (except casein-free clarified butter/GHEE or whey protein)
--no grains (corn, oats, gluten (wheat/barley/rye), rice, etc)
--no legumes (beans, soybeans (unlesss soaked+fermented), peanuts)


Please see recent NephroPal post:
Insulin and Aging: How Paleo Works

Click above link...

Friday, April 17, 2009

Paleo and PPAR For Max Longevity

Mitochondria, DNA and Our Hearts

Nick Lane (author, Power Sex Suicide) also discussed how a small cost exists for the mitochondria to each contain, replicate, and maintain their own set of mtDNA. The costs must be worth the expense and final outcomes for cellular energetics, survival and, ultimately, longevity.

All day everyday 24/7 our bodies are correcting DNA damage, mutations and breakage in mitochondria and in the prime control center, the nucleus. DNA repair requires optimal functioning of crucial enzymes, critical hormone pathways, the presence of co-factors, and the absence of ROS and other oxidative stressors.

We employ ALL of these strategies at TYP for optimum regression of obstructive heart disease as detected, identified and calculated on EBT calcium scoring.


The TYP Program includes:
--Paleo eating (Read Dr.Davis' Cordain interview for TYP: HERE)
--Paleo exercise (eg, functional hypertrophy)
--Lp(a) identification and correction (17-25% of population carries)
--Homocysteine identification and correction
--Small dense LDL particle quantification and correction
--Hormone dysregulation and optimization to youthful levels (Vitamin D, Thyroid, INSULIN, DHEA, Melatonin, Estrogen, Progesterone, Testosterone, Cortisol, etc)
--Antioxidants with anti-inflammatory properties: High dose Omega-3, Niacin Vitamin B3 1-2 g/day, Vitamins ADE K1 K2 MK-7 MK-4, Vitamin C, Phosphatidylcholine, B-vitamins, Minerals Mg Zn Se etc, etc


Everyone who correctly identifies the 'problem' and correctly fixes the 'problem' achieves reductions in calcium scores in 1-3yrs. The side effects reported are: better senses (seeing, smelling, balance, reflexes), vitality, energy, weight loss, lower BP/glucose/resting pulse, improved cholesterol, glowing skin/hair/nails, etc. Besides plaque regression/stabilization and long-term heart protection (statins, optional *WINK*)... Oh BTW ... Maximum longevity, cancer protection, easy weight loss, body fat recomposition...looking H-A-W-T and Paleo-appealing *HA*, obesity-resistance, and being idiot-proof (ok... j/k!) are additionally guaranteed.

...Who doesn't desire a degree of that?




  • Mitochondria in the human heart.
    Lemieux H, Hoppel CL. J Bioenerg Biomembr. 2009 Apr 8.
    Center for Mitochondrial Disease, Department of Pharmacology and Medicine, School of Medicine, Case Western Reserve University
    The heart relies mainly on mitochondrial metabolism to provide the energy needed for pumping blood to oxygenate the organs of the body. The study of mitochondrial function in the human heart faces many obstacles and elucidation of the role of mitochondria in cardiac diseases has relied mainly on studies with animal models. Cardiac diseases are the leading cause of mortality worldwide. With the emergence of new therapies to treat and prevent heart disease, some aiming at metabolic modulation, a need for acquiring a better understanding of mitochondrial function in the human heart becomes apparent. Our review is aimed at specific evaluation of the human heart in terms of
    (1) methods to understand mitochondrial function, with particular emphasis on integrated function,
    (2) data on the role of mitochondrial dysfunction in cardiovascular disease, and
    (3) possible applications of this knowledge in the treatment of patients with cardiac disease.
    PMID: 19353253
  • Mitochondrial dysfunction as an initiating event in atherogenesis: a plausible hypothesis.
    Puddu P, Muscari A et al. Cardiology. 2005;103(3):137-41.
    It is now widely accepted that oxidant stress and the ensuing endothelial dysfunction play a key role in the pathogenesis of atherosclerosis and cardiovascular diseases. The mitochondrial respiratory chain is the major source of reactive oxygen species as byproducts of normal cell respiration. Mitochondria may also be important targets for reactive oxygen species, which may damage mitochondrial lipids, enzymes and DNA with following mitochondrial dysfunction. Free cholesterol, oxidized low-density lipoprotein and glycated high-density lipoprotein are further possible causes of mitochondrial dysfunction and/or apoptosis. Moreover, in patients with mitochondrial diseases, vascular complications are commonly observed at an early age, often in the absence of traditional risk factors for atherosclerosis. We propose that mitochondrial dysfunction, besides endothelial dysfunction, represents an important early step in the chain of events leading to atherosclerotic disease.
  • Mitochondrial integrity and function in atherogenesis.
    Ballinger SW, Runge MS et al.
    Circulation. 2002 Jul 30;106(5):544-9.
  • The role of mitochondria in ischemic heart disease.
    Ferrari R.
    J Cardiovasc Pharmacol. 1996;28 Suppl 1:S1-10. Review.




Pimp Your PPARs! For Obesity Resistance

The family of PPAR nuclear receptors (NRs) are one of the ultimate controllers of inflammation, growth, proliferation, nutrient sensing, metabolism, and most importantly energy homeostasis. Remember, energy IN does not equal energy OUT. G-Flux post.

The medical literature only recently in the last 10-15 yrs exploded with information about these regulators of life. One of the newest elucidated pieces of the puzzle is that PPAR-Delta controls mitochondrial metabolism (uncoupling) in brown fat (our 'good' storage fat...keeps us warm when we shiver and many MANY other good things). The authors from the east coast remark, "Interestingly, the nuclear receptor PPARdelta not only mediates the actions of PGC-1alpha but also regulates twist-1 expression, suggesting a negative-feedback regulatory mechanism... In vivo, transgenic mice expressing twist-1 in the adipose tissue are prone to high-fat-diet-induced obesity, whereas twist-1 heterozygous knockout mice are obesity resistant. These phenotypes are attributed to their altered mitochondrial metabolism in the brown fat. " Pan D et al. Cell. 2009 Apr 3;137(1):73-86.


Significance of peroxisome proliferator-activated receptors in the cardiovascular system in health and disease.
Robinson E, Grieve DJ.
Pharmacol Ther. 2009 Mar 24.

Peroxisome proliferator-activated receptors (PPARs): nuclear receptors at the crossroads between lipid metabolism and inflammation.
Chinetti G, Fruchart JC, Staels B.
Inflamm Res. 2000 Oct;49(10):497-505. Review.

Novel approach to treat insulin resistance, type 2 diabetes, and the metabolic syndrome: simultaneous activation of PPARalpha, PPARgamma, and PPARdelta.
Evans JL, Lin JJ, Goldfine ID.
Curr Diabetes Rev. 2005 Aug;1(3):299-307. Review.

Peroxisome proliferator-activated receptors and the control of inflammation.
Cabrero A, Laguna JC, Vázquez M.
Curr Drug Targets Inflamm Allergy. 2002 Sep;1(3):243-8. Review.

Peroxisome proliferator-activated receptors in vascular biology-molecular mechanisms and clinical implications.
Touyz RM, Schiffrin EL.
Vascul Pharmacol. 2006 Jul;45(1):19-28. Epub 2006 Jun 16. Review.

Peroxisome proliferator-activated receptors and atherogenesis: regulators of gene expression in vascular cells.
Marx N, Duez H, Fruchart JC, Staels B.
Circ Res. 2004 May 14;94(9):1168-78. Review.

Peroxisome proliferator-activated receptor family and its relationship to renal complications of the metabolic syndrome.
Guan Y.
J Am Soc Nephrol. 2004 Nov;15(11):2801-15. Review.

Peroxisome proliferators and peroxisome proliferator activated receptors (PPARs) as regulators of lipid metabolism.
Latruffe N, Vamecq J.
Biochimie. 1997 Feb-Mar;79(2-3):81-94. Review.

Peroxisome proliferator-activated receptor alpha (PPARalpha) and athero-sclerosis.
Gouni-Berthold I, Krone W.
Curr Drug Targets Cardiovasc Haematol Disord. 2005 Dec;5(6):513-23. Review.

Pleiotropic actions of PPAR gamma activators thiazolidinediones in cardiovascular diseases.
Takano H, Hasegawa H, Zou Y, Komuro I.
Curr Pharm Des. 2004;10(22):2779-86. Review.

Wednesday, April 15, 2009

Gene-Environment Interaction: Get Into My Genes, Part 2

The latest book I've been slogging through is Nick Lane's Power, Sex, Suicide: Mitochondria and the Meaning of Life (Oxford University Press, 2005).

I *heart* mitochondria.

Our silent ancestral roots can be traced through mitochondrial DNA (as can coyotes -- see previous post). Mitochondrial DNA are vastly different from our nuclear DNA which carried down from our parents. We hyper-produce mitochondria in response to anoxia, exercise and high intensity/heavy resistance strength training. Multiply your mitochondria...(and keep them happy)... and you will multiply your lifespan. SUPER power and SUPER endurance... SUPER antioxidant capacities... and SUPER longevity. It's all in the mitochondria baby.

And... We're only as strong as our weakest mitochondrial link.

With that said, is it possible to improve the DNA from our parents via our mitochondria? We are already aware the gene expression can be altered very simply from good Paleo eating, appropriate movement, consumption of antioxidants (EPA DHA omega-3s, GLA, flavonoids/carotenoids, vitamins, enzymatic cofactors, vitamin D, saturated fatty acids MCTs, etc) and avoidance of toxic macro- and micronutrients (high carbs/wheat, refined veggie omega-6 oils, toxins, pesticides, heavy metal poisons, etc).

Prior Posts on Mitochondria:
G-Flux: E ≠ MC2 (power up your mitochondria with power exercises)
Dr.Mao...the brain and mitochondrial disorders
CoQ10 and the Ubiquinone System (last energy step in mitochondria for ATP (energy-packet) generation)
PPAR-Delta Dagger in the Heart of CAD -- mitochondrial biogenesis and PPAR-Delta




Gene Transfer: Our Genes Are Not Permanently Programmed as Previously Believed

Our genetic programming are not immutable. Our genes can and do change. It's not a revolutionary idea. In Drosphilia over ten years ago, gene transfer from mitochondria to the nucleus was discovered. Also daily we have genetic mutations occurring on the single base-pair level. Dr. Bruce Ames PhD has shown that a deficiency in almost any essential micronutrient can lead to DNA damage equivalent to that induced by radiation damage.


Nick Lane writes "For those not familiar with the 'stickiness' and resilience of DNA, it may seem akin to a conjuring trick for genes for the mitochondria to suddently appear in the nucleus, like a rabbit produced from a top hat. How on earth did they do that? In fact such gene hopping is commonplace among bacteria (hence high rates of multidrug resistance in TB, and now we're seeing record community-acquired skin strep infections that are resistant to EVERY known antibiotic). We have already noted that lateral gene transfer is widespread, and that bacteria routinely take up genes from their environment. Although we normally think of the 'environment' as outside the cell, acquiring spare genes from inside the cell is even easier.' (p. 131)

'Gene transfer continues today, occasionally making itself noticed. For example, in 2003, Clesson Turner, then at the Walter Reed Army Medical Center in Washington, and collaborators, showed that a spontaneous transfer of mitochondrial DNA to the nucleus was responsible for causing the rare genetic disease Pallister-Hall syndrome in one unfortunate patient. How common such genetic transers are in the pantheon of inherited disease is unknown.' (p. 133)

' Gene transers occur predominantly in one direction. Think back again to the first chimeric eukaryote. If the host cell were to die, it would release its symbionts, the proto-mitochondria, back into the environment, where they may or may not perish-- but regardless of their fate, the environment in chimeric co-existence would certainly have perished. On the other hand, if a single mitochondrion were to die, but a second viable mitochondrion survived in the host cell, then the chimera as a whole would still be viable. To get back to square one, the surviving mitochondrion would just have to divide. Each time a mitochondrion died, the genes released into the host cell could potentially be integrated into its chromosome by normal genetic recombination. This means there is a GENE RATCHET, favouring the transfer of genes from the mitochondria to the host cell, but not the other way around.' (p. 133)


Just as nations, 3rd world countries, businesses, conglomerates, Microsoft, big Pharma merge/coalesce to dominate, our DNA is looking out for itself whether you pro-actively are or not. It appears that mitochondrial DNA can insert itself into the bigger nuclear DNA picture, so to speak, and in fact can stay there silently or not so silently.

Nuclear gene control are primarily affected by nuclear receptors... This is the boss of us. these are nearly ALL cholesterol-derived sex steroid receptors. Why do I talk about S-E-X all the time. Now you are starting to GET IT. *SMILE*
--Liver, Pancreas, Gallbladder, GI Lining: PPAR, FXR, LXR, VDR (vitamin D), RXR/RAR (carotenoids, vitamin A), TR (thyroid), PTH
--Thyroid, A.Pituitary: TR (thyroid), VDR, PPAR, RXR, RAR, ROR/RZR, PTH, ER (estrogen), AR (testosterone)
--Muscles, Heart, Bone, Vasculature, Kidneys: PPAR, VDR, RXR/RAR, TR (thyroid), PTH, Testosterone (AR androgen receptor), ER (estrogen)
--Sex Glands: AR (testosterone), ER (estrogen), PR (pregnane), Progesterone, TR (thyroid), VDR, PPAR, RXR/RAR
--Brain, Nervous System, Skin/Hair/Nails/Teeth, Breasts: VDR, PPAR, RXR/RAR, Testosterone (AR), ER (estrogen), Progesterone, TR (thyroid)
--Adrenals, P.Pituitary: GR (glucocorticoid receptor Cortisol), SF-1, PTH, VDR, TR (thyroid)



Is a pattern emerging?

(At TYP we love Vitamin D. VDRs (vitamin D receptors) are found everywhere.)

NRs control everything. Some NRs can be activated even in the absence of hormone. Synergism as well as surrogate control appears to exist.

The fact that medicine is subdivided by organ specialities (eg, Endocrinology, Gastro/Hepatic, Neurology, Derm, Card, etc) belies that fact that organ systems are all intimately related, not independent entities. NRs may have tissue-specific roles but they also share regulatory functions.

Though the major players are listed above, there are still many 'orphan' NRs (nuclear receptors) that are uncharacterized and their respective binding agonists are unknown.




Dr. Davis deserves a Nobel!

At Track Your Plaque, Dr. Davis advises control, management and optimization of every nuclear receptor.
--Thyroid
--Vitamin D, potent pro-hormone
--Estrogen, Testosterone
--Insulin (low carb, gluten-free, PALEO diet)
--Cortisol (stress reduction, rest, recovery, relaxation, sleep)
--Melatonin (binds ROR/RZR in the pituitary; J of Pineal Research
18(4), Pages 171 - 178.)
--PPAR (fiber, SCFAs, omega-3, ALA, grassfed/wild protein)
--RXR, RAR (carotenoids, vit A, Paleo diet)
--LXR, FXR (fiber, oat bran, Taurine)




Evolutionary Meaning of our Embryonic Tissue Origins

Genes are elaborate on/off by switches controlled by environment, lighting, food, and the subsequent expression of hormones and their respective feedback loops. As elegant as the most brilliant piece of genius software programming or symphonic composition, things can go awry when... let's say a loop goes out of whack (a non-sense line of code or an entire orchestral string group disappearing for a bathroom break).

Not only does optimizing mitochondria in every cell in our body produce excellent health, targeting the evolutionary source tissue improves all tissues which are derived from that particular germ layer and embryonic tissue. For instance, for the vascular and circulatory system 'rejuvenation' and healing, all things 'work' that work for the other Mesoderm-originated tissue. Help your skeletal bones...and ur b*ne-r... You'll help your 'bone' (eg, inappropriate calcifications) in the plaque of your blood vessels (excuse my inappropriate French terminology).

Mesoderm:
Muscle, bone, cartilage, collagen, bone marrow
Vasculature, lymphatic system, blood
Kidneys, gonads (ovaries, uterus, testes, prostate) and reproductive ducts
Dermis (middle layer of the skin)




PPAR Nuclear Receptors, Ultimate Anti-Aging Switches

PPAR receptors are the NRs ubiquitous and abundant in the mammalian body, not excluding the entire circulatory system and the major coronary arteries (LAD, LCx, RCA) .

The best activators in nature for PPAR are:
--ketones, intermittent fasting, carb-restriction, insulin-control, muscle-building activities, all things anti-inflammatory
--omega-3 fatty acids
--CLA
--dietary protein (Leucine, etc) via the mTOR pathway
--short-chain saturated fatty acids (butyrate produced by our micro flora/fauna (eg, gut bacteria fermenting dietary fiber/Paleo plant material) or grassfed dairy, etc)
--medium-chain saturated fatty acids (coconut oil, sat fats in nuts like almonds, fish/seafood/fowl/meat, etc)
--monounsaturated fatty acids (olive oil)
--activation of other NRs (estrogen, thyroid, testosterone, cortisol-reduction, insulin-control)


See Get Into My Genes (Part 1) -- my 50 lbs weight loss story via eliminating rice (2cups/d WOW 90g/d and juice 30g/day carbs + high carb foods), cardio/wt lifting/yoga/day-spa's/IF'ing and my love/addiction for half-marathons.




Get in My Genes (Part 2)

So... are my genes permanently improving, perfecting and modifying...?

Can we remodel our mitochondria as we have been shown that we can remodel our vasculature and regress atherosclerotic plaque? Can we spontaneously revert mitochondrial DNA mutations and nuclear DNA mutations?

I would count on it.

Monday, April 13, 2009

Lats ('Wings'), Gluts... Hypertrophy YEAA!

I'm watching the two masters duke it out at the Augustus Masters Golf tourney final round (I don't play or watch golf...but I'm partial to watching... the feline persuasion)...and have to revel at how FANTASTIC these golf giants look! And...PLAY. What has Phil been up to...??? A more proportioned V-look and smaller waist... and a strength, agility, and power in his stroke that hasn't yet been revealed until now. What awakened this Hugh Grant-like golf star? Did he discover Xfit? Or has he started lifting WEIGHTS with some INTENSITY...?! Did he cut back on wheat=grain-garbage...? GO Lefty!!



Then . . there is the . . . T-i-g-e-r . . . Like my nieces, an elite hybrid of Asian and contemporary American genetics/culture. Coming off a long break (read: rehab'd knee) (and now with 2 cutey little children) looking FINER than evah...bro. Has he intensified his training with his Navy Seal buddies in San Diego? Check out the (still) narrow hips, beautific wide strong lats (Latissimus Dorsi, 'wings' ANGEL WINGS as my sister 'M' calls them on her former-Marines hubby), biceps/pects/traps...

Oh yeah... his golf game aint too bad either *wink* ROAR Tiger! Baby catch up :)


At Crossfit we have a few coaches who are fans of the longer Navy Seal type formats. Unfortunately I did bring my bro-in-law to one of these training days (and he has yet to come back *bummer*). To say the least, these Xfit days are memorable workouts... I recall, we did 8-6-4-2-1 rounds for time of: 20 pullups, 20 burpees, 20 boxjumps, 400m-sprints. Yeah. Fun. For 30+++ mins. Esp for... mere mortals. I should've looked at the white board first...then gone home :) j/k. This is about the only workout I remember w/any degree of clarity... Not just because pain imprints on the brain... But for its extreme length and ferocious intensity... And for its phenomenal and frightening overnight-producing results on muscular !!hypertrophy!!. My sister 'M' noted that within 24hrs, her hubby grew WINGS. *haa* Lats that she hasn't seen since their first child was born (like, she is now 9yo). The hypertrophic growth I noticed was in biceps 1 inch incr in upper arm circumferences overnight unbelievably, no joke (no angel wings...because I can't do pullups...and still struggle wtf now). Just buff She-Woman arms. And gluts... as you know I'm Asian. And you are not incorrect in your suppositions of the standard Asian connotations for planar-dimension-geometry of the hind-posterior views. But naught now - - thanks to Xfit.

"Body by Crossfit..." Nice logo? THANK GOD I discovered HIIT/Tabata/Crossfit. Because otherwise I would never NEVER in a million years ever EVER subject myself to the torture, pain, shin-literal-splits, and callouses I routinely undergo now (please please don't fear... it's really NOT that bad). My *ss is addicted. To the FANTASTIC results. I sometimes even do it at home now! The coaches/trainers at Xfit sometimes like to spur the females on by yelling... uuh... I mean ENCOURAGING to go lower, b*tt to the ball, during squatting or wall-balls...'YOU WANT A BIGGER B*TT, R I G H T . . ? ! ! ! ' Well...actually, no I can't really afford another $100+ pair of designer Sevens to highlight my new *ss... and no...as the thighs and b*tt are ALREADY bursting out...(though waist zero, kudos to Paleo + Xfit + cardio).

Many muscle mags have crossed my threshold in the past year... 'research' in the name of elite cardiovascular health and this healthful-minded blog of entertaining educational edification...! ohyeah . . . BTW the articles are... E X C E L L E N T . . . Right... Actually, one of the best for women is Oxygen and the latest issue is devoted to G-L-U-T-S. *wink* I have to say all the gals at my Xfit Shed are HAWWWT and their gluts... are even HOTTER (and most humble)... Again, Xfit doesn't hurt. For an ideal posture, core and power-elliciting movement (eg, jumping, hill-running, anything), gluts and lats are two of the top 10 muscles to recruit, maintain, and focus on modifying. Add'l great tips of course at T-nation: HERE.

In Oxygen some of the best figure models and coaches give their personal advice.
  • Jen Hendershott, 'Great glutes are a product of a balanced meal plan, good training and consistent cardio. Your bum says a lot about how hard you train." (Ok now turn around and let me see your sexyback, clinically and scientifically speaking, let's track how you are training) Two-time Ms. Olympia has butt building down to a science, Oxygen states. Her Drill: 8-12 exercises per workout, 15 reps of 4 sets, once a week. Her top three tricks:
    (1) JUMP SQUATS (yea!! I concur)
    (2) Slow and intense cardio (eg walking on a treadmill at an incline of 10 for 20-30min with dumbbells on shoulders)
    (3) Lateral lunges (p.87)
  • Annette Milbers, "Glutes training actually changes the shape of your body and it's the best ANTI-AGING TOOL out there!" Annete ranks legs day as her favorite and beats boredem by changing her workouts eveyr 6-8wks (I totally concur, randomness is good and very EVO/paleo). Her Drill: Eight exercises per workout, 18-20 reps for 4 sets, once a week. Her top 3 tricks:
    (1) S-Q-U-A-T-S (see a pattern?)
    (2) Hamstring curls
    (3) Walking lunges (p.88)
  • Gina Lombardi, author Deadline Fitness (Wiley, 2008), "PLYOMETRICS can turn your pancakes into melon halves in no time." Suggested drill: jump 12-20 reps onto 18" plyo box (beginners) and add weights 8-10 # dumbbells (advanced). At Xfit, we do 24-30" box-jumps for time or for counts. Some of best advice I've rec'd was from Carry, MILFy Xfitter, "rest at the top, when you land on the ground, get back on top as fast as you can." Haven't looked back since I started taking that advice. Thanks Girl! That advice has also saved my shins! Before, I'd periodically leave half my BL**DY shin on the edges of the boxes... (p.92)
  • My personal advice: boxjumps, thrusters (squat, lift dumbbell 45-65# to straightened arms), and sprints (100-200m-run+rows)


Related medical literature:



Related posts:
--Beautiful Things: Sexyback
--Don't Be Sarcopenic


G-Radio: beautiful music, beautiful New Zealand singer... Bic Runga
Good Morning Baby, Precious Things

Saturday, March 14, 2009

That's the Issue...G-Flux: E ≠ MC2

As any gurrlll will tell ya -- certain times of the month (e.g. when we're bleeding down our legs) no matter what we eat/don't-eat, girls gain %^&*$weight. Yet... at other times...we gals can eat E-V-E-R-Y-T-H-I-N-G in sight... and... drop pounds... have more energy... more shredding/shedding.

What's the issue...??

Human bodies do not obey the laws of matter and physics. Esp... girls... *wink* We break all the metabolism rules... and hormones fluctuate. Unlike physical matter, hormone-cascades rule energy flux, flow and balance.



Biological Energy Turnover

Often like life... the more you give, the exponentially more . . . you get.

Energy in alive, biological systems appears to follow the same rule, to me. With more propelling exercise and intense power demands, the human body is the greatest machine to turn over and kick out more outputs than inputs. Mitochondria, our tiny nuclear power-generating plants, double...or even...QUINTUPLE in quantity and quality for future expected thermodynamics. (Conversely, they are degraded with 'hibernation signals' -- insulin, low thyroid, movement-deficiency + subsequent T, hGH, adiponectin hormone declines, high carbs, high F**C-tose, x-s omega-6 veggie oils, diminished daylight/Vitamin D deficiency, EPA+DHA insufficiency, micronutrient/co-factor deficiencies, etc.)




Frank Starling's Rule...of Heart/Muscles Biophysics:

Max Cardiac Output = Max Heart Rate X Max Stroke Volume

For us Paleo people, during functional, natural exercise, how does the heart provide so much ATP, energy packets, with constant and high outputs? At high intensity efforts...like Tabata squats? 100 burpee-pullups? interval 400m sprints? Oly-weight-lifting like dead-lifts and power cleans 8 x3...?? Which then translate effortlessly (without practicing) to faster running, flying across hills, and jumping to never imagined heights...!? I n d e e d y . . . Olympic-lifting explodes vertical-leaping and bounding better than... Superman himself. Another one of our important muscles, the heart, works the same way. It is a muscular biological pump. How strong the heart can pump blood-volume and how efficiently oxygen is supplied are the factors that determine the max work and max volume delivered with every heartbeat. See above Frank Starling formula. With the proper training, the heart muscle cells in fact grow BIGGER (yea)... THICKER (yea-aaahh) with mitochondria, the ATP-power-generators... MORE EQUIPPED with enzymes and co-factors to transfer energy -- fatty acids, lactate, glycogen/glucose -- and to increase 'end-products' neutralizers (Coenzyme Q10).

Our heart cells (cardiomyocytes) are one of nature's best examples of bio-engineering for structure, composition and mechanical genius. They beat for you every second...of your life ~100,000 times per day.

Unless you are . . . Lance . . . only ~46,000 times per day at rest. Uuummm...I'd like to see...umm I mean... study... his... drool-inducing PPARs... *wink* I hear he's finally picking up kettle balls...
What maintains energy supply at peak aerobic exercise in trained and untrained older men? Amir R et al. Gerontology. 2007;53(6):357-61.


In an untrained heart, the volume of mitochondria take up ~5% of the cell. However, in hearts of athletes, mitochondria reside in as much as 20-25% of the heart cell. That is five-times more massive...! Harness the power of your mitochondria... by optimizing your G-flux (see below about energy flow).

Maximal cardiac output increases in response to exercise training. Intensity determines how fast this happens.

In fact excessive endurance exercise (see below 24-h trained endurance results) worsen oxygen efficiency in mitochondria. Short intense, resistance, interval exercise on the hand produce quick generation of mitochondria in a few days, improved glucose utilization, insulin reduction, and activates PPAR-Delta, the switch for anti-inflammatory and pro-immunomodulatory actions in the body.
Reduced efficiency, but increased fat oxidation, in mitochondria from human skeletal muscle after 24-h ultraendurance exercise. Sahlin K et al. J Appl Physiol. 2007 May;102(5):1844-9.
Regulation by exercise of skeletal muscle content of mitochondria and GLUT4.Holloszy JO. J Physiol Pharmacol. 2008 Dec;59 Suppl 7:5-18.
Exercise interval training: an improved stimulus for improving the physiology of pre-diabetes. Earnest CP. Med Hypotheses. 2008 Nov;71(5):752-61.
Regulation of muscle fiber type and running endurance by PPARdelta. Evans RM et al. PLoS Biol. 2004 Oct;2(10):e294.
Genetic variations in PPARD and PPARGC1A determine mitochondrial function and change in aerobic physical fitness and insulin sensitivity during lifestyle intervention. Häring HU et al. J Clin Endocrinol Metab. 2007 May;92(5):1827-33.
Mitochondrial myopathies: diagnosis, exercise intolerance, and treatment options. Tarnopolsky MA, Raha S. Med Sci Sports Exerc. 2005 Dec;37(12):2086-93. Review.
Resistance training, sarcopenia, and the mitochondrial theory of aging. Johnston AP, De Lisio M, Parise G. Appl Physiol Nutr Metab. 2008 Feb;33(1):191-9. Review.
Circuit resistance training in chronic heart failure improves skeletal muscle mitochondrial ATP production rate--a randomized controlled trial. Hare DL et al. J Card Fail. 2007 Mar;13(2):79-85.
Antioxidant enzyme activity is up-regulated after unilateral resistance exercise training in older adults. Parise G, Phillips SM, Kaczor JJ, Tarnopolsky MA. Free Radic Biol Med. 2005 Jul 15;39(2):289-95.
Muscle fat oxidative capacity is not impaired by age but by physical inactivity: association with insulin sensitivity. Morio B et al. FASEB J. 2004 Apr;18(6):737-9.
Strength and aerobic training attenuate muscle wasting and improve resistance to the development of disability with aging. Booth FW et al. J Gerontol A Biol Sci Med Sci. 1995 Nov;50 Spec No:113-9. Review.




What is the preferred energy source of heart and skeletal muscle cells?

Well...it certainly aint Gu or sports drinks or energy bars or carb-loading. As we exercise and become more trained, the preferred source for mitochondria is fatty acids...both our temporarily stored fats in skeletal muscle and the band of saturated fat across the heart...

"Proper heart function relies on high efficiency of energy conversion. Mitochondrial oxygen-dependent processes transfer most of the chemical energy from metabolic substrates into ATP. Healthy myocardium uses mainly fatty acids as its major energy source, with little contribution of glucose."
Metabolic and genetic regulation of cardiac energy substrate preference. de Jong JW et al. Comp Biochem Physiol A Mol Integr Physiol. 2007 Jan;146(1):26-39. Epub 2006 Oct 3. Review.


"Mitochondria in skeletal muscle tissue can undergo rapid and characteristic changes as a consequence of manipulations of muscle use (e.g. MOVEMENT...use it or lose it) and environmental conditions . . . Additionally, a shift of substrate metabolism toward a higher reliance on lipids is observed, structurally reflected as a doubling of the intramyocellular lipid content . . . Transcription factors AP-1 and PPARalpha/gamma and the protein kinase AMPK are signaling molecules that transduce the metabolic and mechanical factors sensed during endurance training into the complex transcriptional adaptations of mitochondrial proteins."
Plasticity of skeletal muscle mitochondria: structure and function. Hoppeler H, Fluck M. Med Sci Sports Exerc. 2003 Jan;35(1):95-104.




G-Flux: Building the Ultimate Body (excerpt)
by Dr John M Berardi (T-Nation.com)

What's G-Flux?

"Well, G-Flux, otherwise known as energy flux (or energy turnover) is the relationship between energy intake and expenditure. It's the balance between the two. Put another way, it's the amount of calories you "turn over". ...Having a high G-Flux is 100%, without a doubt, absolutely critical to building your ultimate body – which I'm assuming includes strong, functional, well-adapted muscle, low body fat, and great health."




Energy In ≠ Energy Out

That's the thermodynamic i-s-s-u-e . . .



G-Radio: 'That's the issue...SoulJaBoytellem...'
*air-kiss-u* ...hormones... philematology...another place ancestral hormonal pathways rule