Category Archives: health

Amputations, Gangrene and Carbohydrates

As an anesthesiologist I have spent more than 60,000 hours in the operating room and cared for over 30,000 patients. I often observe the end-results of bad dietary advice. I am referring to the liberal carbohydrate allowance that the American Diabetes Association and other agencies offer diabetics.

Today was a particularly poignant day as I cared for two diabetics who required amputations for complications of diabetes type II. These complications could have likely been avoided if our supermarkets were not stocked with high carb nutritionally deplete “food” AND if the ADA, physicians and nutritionists counseled diabetics to significantly reduce their carbohydrate intake. Instead, the low fat narrative has so predominated our culture, that we have taken our eyes off of the major dietary threats during the past 40 years, excessive carbohydrates and especially refined carbohydrates.

The leading cause of amputations in modern society are the complications of diabetes including peripheral arterial disease (atherosclerosis in the arteries to our limbs) and peripheral neuropathy (loss of sensation in the feet and hands). The combination of these two, or just one alone can lead to non-healing wounds and ulcers in the feet, then chronic infections and ultimately gangrene. Futile efforts to restore circulation to the legs with vascular bypass surgeries or arterial stents usually just briefly delay the inevitable series of amputations that start in the toes and progress up the leg, step by step until only a stump is left above the level once occupied by the knee.

Gangrene is an ugly thing. During the Civil War the major cause was trauma. Today the major cause is diabetes and indirectly, excess carbohydrate consumption.

The visual experience of gangrene results in a visceral reaction, even after more than 30 years of observation. The knowledge that most of these complications could be avoided by simply eating whole fresh foods instead of crap in a bag or crap in a box is frustrating. The human suffering and economic costs (lost wages, disability, medical expenses) are staggering. Diabetes type II is largely a disease of lifestyle. The lifestyle elements involved include poor dietary habits, lack of exercise, inadequate sleep, and stress. All of these contribute and all are modifiable and avoidable.

Type II diabetes is arguably reversible early in the disease process. As it progresses a patient reaches an irreversible point of no return where the pancreas has been exhausted and the insulin producing cells are no longer efficient and effective. Equally important,  the cells in the rest of the body do not respond in a normal fashion to what little insulin is produced. But even at this stage carbohydrate restriction can mitigate complications if only healthy fresh whole-foods are consumed and modest exercise is practiced on a daily basis.

Other complications of diabetes including blindness, painful neuropathy, kidney failure requiring dialysis, heart attack and stroke all are arguably avoidable with a whole foods paleolithic carbohydrate restricted diet and modest amounts of regular exercise.

What a pity, what a shame, what a waste.

Below are some links and research articles to back up my statements.

Peace, health, and harmony.

BOB

1. Type 2 Diabetes

2. American Diabetes Association Embraces Low-Carbohydrate Diets. Can You Believe It? | Richard David Feinman

3. Nutrition Science on Pinterest

4. Low-Carb for You: Low-Carb versus Low-Fat

And Many More:

Jenkins DJ, Kendall CW, McKeown-Eyssen G, Josse RG, Silverberg J, Booth GL, Vidgen E, Josse AR, Nguyen TH, Corrigan S et al: Effect of a low-glycemic index or a high-cereal fiber diet on type 2 diabetes: a randomized trial. JAMA 2008, 300(23):2742-2753.

Westman EC, Yancy WS, Mavropoulos JC, Marquart M, McDuffie JR: The Effect of a Low-Carbohydrate, Ketogenic Diet Versus a Low-Glycemic Index Diet on Glycemic Control in Type 2 Diabetes Mellitus. Nutr Metab (Lond) 2008, 5(36).

Gannon MC, Hoover H, Nuttall FQ: Further decrease in glycated hemoglobin following ingestion of a LoBAG30 diet for 10 weeks compared to 5 weeks in people with untreated type 2 diabetes. Nutr Metab (Lond) 2010, 7:64.

Gannon MC, Nuttall FQ: Control of blood glucose in type 2 diabetes without weight loss by modification of diet composition. Nutr Metab (Lond) 2006, 3:16.

Gannon MC, Nuttall FQ: Effect of a high-protein, low-carbohydrate diet on blood glucose control in people with type 2 diabetes. Diabetes 2004, 53(9):2375-2382.

Forsythe CE, Phinney SD, Feinman RD, Volk BM, Freidenreich D, Quann E, Ballard K, Puglisi MJ, Maresh CM, Kraemer WJ et al: Limited effect of dietary saturated fat on plasma saturated fat in the context of a low carbohydrate diet. Lipids 2010, 45(10):947-962.

Jakobsen MU, Overvad K, Dyerberg J, Schroll M, Heitmann BL: Dietary fat and risk of coronary heart disease: possible effect modification by gender and age. Am J Epidemiol 2004, 160(2):141-149.

Siri-Tarino PW, Sun Q, Hu FB, Krauss RM: Saturated fat, carbohydrate, and cardiovascular disease. Am J Clin Nutr 2010, 91(3):502-509.

Int J Cardiol. 2006 Jun 16;110(2):212-6. Epub 2005 Nov 16. Effect of a low-carbohydrate, ketogenic diet program compared to a low-fat diet on fasting lipoprotein subclasses. Westman EC, Yancy WS Jr, Olsen MK, Dudley T, Guyton JR.

Mol Cell Biochem. 2007 Aug;302(1-2):249-56. Epub 2007 Apr 20.Beneficial effects of ketogenic diet in obese diabetic subjects. Dashti HM, Mathew TC, Khadada M, Al-Mousawi M, Talib H, Asfar SK, Behbahani AI, Al-Zaid NS.

 

 

The bacteria in your gut are essential to your health Part II, obesity, metabolic syndrome and dysbiosis

I have discussed the evidence linking the mix of bacteria in your gut (gut flora) to health and disease in Part I. The Bacteria in your Gut are essential to your health Part I | Practical Evolutionary Health

Today I will discuss the evidence related specifically to  obesity and metabolic syndrome (the constellation of obesity, insulin resistance, high blood pressure, and abnormal blood lipids). My discussion will follow closely the evidence and theory presented in research and review papers authored by Dr. Cani and colleagues. The first one is titled:

Gut microbiota controls adipose tissue expansion, gut barrier and glucose metabolism: novel insights into molecular targets and interventions using prebiotics.”

You can find the full text of this article here .

I have had the pleasure of corresponding with Dr. Cani by e-mail regarding her many publications investigating the relationship between gut flora, obesity, and metabolic syndrome.

“Recently, we and others have identified several mechanisms linking the gut microbiota with the development of obesity and associated disorders (e.g. insulin resistance, type 2 diabetes, hepatic steatosis).”

Explanation: The gut microbiota are the bacteria, viruses and other “bugs” that reside in our intestines. Insulin resistance can occur in various parts of the body, wherever insulin has an effect including fat cells, liver, muscle, brain. When higher amounts of insulin are required to achieve an effect this is called insulin resistance. In Type 2 diabetes, the pancreas is still able to make insulin but insulin is less effective in controlling blood sugar. In Type I diabetes the pancreas no longer produces insulin. Hepatic Steatosis means fatty liver disease. The liver accumulates fat and this can lead to cirrhosis, liver failure and death. Alcohol consumption can cause this but when alcohol is not involved this is called Non-Alcoholic-Fatty-Liver Disease (NAFLD). Our nation presently has an epidemic of not just obesity but also NAFLD. Evidence points to  excess carbohydrate consumption and excess consumption of vegetable oils (linoleic acid)  as contributing factors in NAFLD.  Carbohydrate restriction and consumption of saturated fat, particularly medium chain fats (as found in coconut) can protect against NAFLD. But the gut flora also play a role. The mechanisms involved are many.

“Among these, we described the concept of metabolic endotoxaemia (increase in plasma lipopolysaccharide levels) as one of the triggering factors leading to the development of metabolic inflammation and insulin resistance.”

Endotoxemia occurs when a toxin from certain kinds of bacteria circulates in the blood. This endotoxin enters our blood through our intestines under conditions in which the protective barrier of the intestines is compromised. The compromise of the intestinal barrier is variously referred to as ” leaky gut” or “increased intestinal permeability”. Wheat gluten-gliadin  causes increased intestinal permeability (especially in celiac disease) as can other plant lectins. In this discussion, the gut bacteria also contribute in the setting of “dysbiosis” (the beneficial effects of helpful bacteria are overwhelmed by the harm-causing bacteria when a healthy balance is not present)

Lipopolysaccharide (LPS) comes from the outer wall membrane of certain bacteria. Blood plasma is the liquid part of blood in which the blood cells circulate. So an “increase in plasma lipopolysaccharide” simply means that there is more LPS circulating in the blood. That is a bad thing. Depending on how much is circulating this alone can cause organ failure and death and is a major part of the physiologic changes involved in septic shock. But lower levels of LPS circulating in the blood can cause chronic low grade inflammation and insulin resistance. Obesity is associated with chronic inflammation and increased LPS circulating in the blood and being distributed to various organs where it wreaks havoc.

“Growing evidence suggests that gut microbes contribute to the onset of low-grade inflammation characterizing these metabolic disorders via mechanisms associated with gut barrier dysfunctions.”

“We have demonstrated that enteroendocrine cells (producing glucagon-like peptide-1, peptide YY and glucagon-like peptide-2) and the endocannabinoid system control gut permeability and metabolic endotoxaemia.”

That is a mouth-full. Over thirty different kinds of hormone producing cells have been found in the human intestine. These cells are called enteroendocrine cells. The hormones produced by these cells have many effects. You can find a great review of these cells and their effects here .

In Dr. Cani’s review article she describes how some of these hormones produced in the gut can increase intestinal permeability and allow more of the toxic, inflammation producing LPS to enter the bloodstream. But these hormonal effects are just part of the picture. Another part relates to endocannabinoids.

The  Endocannabinoid system in humans is complex and relates to hunger, satiety, energy metabolism, and yes gut permeability. Endocannabinoid refers to our internal (endo) production of cannabis like substances. Pot smoking people get the munchies because of the appetite stimulating effects of marijuana. But endocannabinoids have many other physiologic effects including the modulation of pain, mood, immune function and memory.

Dr. Cani describes in great detail the evidence supporting the roles that the gut flora play in influencing intestinal permeability mediated through the effects of various hormones and endocannabinoids. In animal and human studies changing the gut flora produces changes in these hormones and endocannabinoids which in turn can increase or decrease intestinal permeability and increase or decrease circulating LPS.

It turns out that specific  Prebiotics can produce growth of beneficial gut bacteria and through the series of steps outlined above, reduce inflammation in the body, improve blood sugar, improve insulin sensitivity, and decrease fat,

Oh, and similar to the endocannabinoid system, there is an “apelinergic system” in our bodies that also plays a role. If you want to read more about these systems you should read the original article and the other links below to related articles.

I have discussed in the past that fecal transplants have been used to treat the specific dysbiosis that occurs with C Difficile colitis. But fecal transplants have many potential beneficial uses.

The Fatlose 2 trial is presently studying the effects of fecal transplants on insulin resistance and related problems in human volunteers. I will let you know when the results are published, Studies conducted in rodents have demonstrated significant weight loss and improved insulin sensitivity when obese rodents receive fecal transplants from lean rodents.

In summary: dysbiosis represents an unhealthy mix of bacteria in the gut

  • dysbiosis causes increased intestinal permeability (leaky gut)
  • increased intestinal permeability leads to increased circulating LPS, which is bad
  • elevated levels of circulating LPS create a chronic state of inflammation which contributes to obesity and metabolic syndrome
  • the mechanisms that link dysbiosis to intestinal permeability include hormonal disruption (enteroendocrine cells) and the endocannabinoid system. Other mechanisms are also likely in play.
  • prebiotics and probiotics can mitigate dysbiosis, reduce intestinal permeability, reduce inflammation, and offer potential therapy for obesity and metabolic syndrome
  • fecal transplantation offers a potential for treatment for obesity and metabolic syndrome, research is underway

Our ancestors lived and evolved for a few million years prior to the relatively brief ten thousand years of agriculture and one hundred years of industrialization. The overuse of antibiotics in medicine and animal husbandry have contributed to dysbiosis. Other factors include stress, disruption of circadian rhythm, sleep deprivation. Cesarean delivery and avoidance of breast feeding conspire to dysbiosis. Processed foods feed unfriendly bacteria in our guts at the expense of beneficial bugs. Agricultural foods have introduced dietary lectins which also increase intestinal permeability and thereby contribute to chronic inflammation. The further we stray from our evolutionary niche, the more problems we experience.

This discussion just touches the surface of gut flora, dysbiosis, health and disease. We have yet to explore the gut-brain axis. Our gut and microflora communicate with and effect the function of our brain and other organs as well.

We will continue to explore health and disease from an evolutionary perspective.

Below are links to articles related to our discussion.

Peace, health and happiness.

BOB

Gut microbiota controls adipose tissue expans… [Benef Microbes. 2014] – PubMed – NCBI

Glucose metabolism: Focus on gut microbiota, … [Diabetes Metab. 2014] – PubMed – NCBI

Probiotics, prebiotics, and the host microb… [Ann N Y Acad Sci. 2013] – PubMed – NCBI

Crosstalk between the gut microbiota a… [Clin Microbiol Infect. 2012] – PubMed – NCBI

Gut microbiota and its possible relationship … [Mayo Clin Proc. 2008] – PubMed – NCBI

Enteroendocrine Cells: Neglected Players in Gastrointestinal Disorders?

Weight Gain, Another Reason to Avoid Statins

Published on line two days ago in advance of print publication, a new study demonstrates an association between statin use and increased caloric intake resulting in weight gain. (1)

A brief editorial (Written by Dr. Rita Redberg, on faculty at UCSF and editor of JAMA: INTERNAL MEDICINE). is worth quoting in entirety as it succinctly reviews many criticisms of statin overuse that I have discussed in previous posts here and here.

“There remains much controversy over the risks and benefits of statins for primary prevention. Besides the risks of muscle aches, diabetes, and cognitive dysfunction, I have observed over the years that for many patients, statins provide a false reassurance, as people seem to believe that statins can compensate for poor dietary choices and a sedentary life. In an elegantly performed analysis of NHANES data from 1999 to 2010, Sugiyama and colleagues have documented exactly such behavior. They found that compared with statin nonusers, statin users significantly increased their fat intake and calorie consumption, along with their BMI, in the last decade. This article raises concerns of a potential moral hazard of statin use, in addition to the already known adverse effects. Focusing on cholesterol levels can be distracting from the more beneficial focus on healthy lifestyle to reduce heart disease risk.” (2)

Of course association does not imply causation, but the editorial above suggests a plausible explanation for the relationship.

I have previously discussed how a carbohydrate restricted whole foods diet (here and here) results in superior weight loss, improved glucose control, reduced blood pressure, reduced triglycerides and improved HDL when compared to a low fat American Heart Association type diet. The former results in spontaneous reduction of caloric intake (improved satiety-no calorie counting required), the latter requires calorie counting in order to reduce caloric intake. The carbohydrate restricted approach does NOT result in increased net fat intake but because carbohydrates are reduced, fat as a % of total calories is increased. On average most studies in adults report a spontaneous reduction of about 400-600 calories per day when carbohydrates are significantly restricted.

A paleolithic diet that eliminates all processed foods, refined vegetable oils, grains, legumes and dairy but includes pastured grass-fed meat, wild seafood, free range poultry and eggs, organic fresh vegetables, fruit and nuts is typically low carbohydrate compared to the standard American diet (SAD). A paleolithic nutritional approach produces similar metabolic improvement within a few weeks. (3)

(1) Sugiyama T, Tsugawa Y, Tseng C-H, Kobayashi Y, Shapiro MF. Different time trends of caloric and fat intake between statin users and nonusers among US adults: gluttony in the time of statins? [published online April 24, 2014]. JAMA Intern Med. doi:10.1001/jamainternmed.2014.1927. PubMed

(2) Statins and Weight Gain: Redberg RF. JAMA Intern Med. 2014 Apr 24. doi: 10.1001/jamainternmed.2014.1994. [Epub ahead of print]  PubMed

(3) Metabolic and physiologic improvements from consuming a paleolithic, hunter-gatherer type diet L A Frassetto1, M Schloetter, M Mietus-Synder, R C Morris Jr1 and A Sebastian European Journal of Clinical Nutrition (2009) 63, 947–955; doi:10.1038/ejcn.2009.4; published online 11 February 2009 PubMed

Go in peace

Bob Hansen MD

The Bacteria in your Gut are essential to your health Part I

Our human body consists of about 100 trillion cells but we carry about 1000 trillion bacteria in our intestines, that represents 10 times the amount of our own cells. (1) These bacteria are variously called our micro-flora, microbiome, gut flora, etc, along with viruses and other organisms that co-exist and co-evolved with us. Advances in rapid gene identification have enabled an explosion of knowledge related to our micro-flora, health and disease. We each carry an estimated 500 to 1000 different species of bacteria in our intestines and the balance/mix of these bacterial species can have profoundly positive or negative affects on our health. Patterns of micro-flora have been identified for a variety of human disorders including obesity, diabetes type I, several kinds of cancer and  inflammatory bowel disease to name a few. The issue of association vs. causation remains to be resolved but the beneficial and therapeutic effects of pro-biotics and fecal transplant (in rodent and human studies) in a variety of situations along with the observed deleterious effects of interrupting our micro-flora speak in favor of a causative or contributory role. (2) (3)

Accumulating evidences indicate that some diseases are triggered by abnormalities of the gut microbiota. Among these, immune-related diseases can be the promising targets for probiotcs. Several studies have proved the efficacy of probiotics for preventing such diseases including cancers, infections, allergies, inflammatory bowel diseases and autoimmune diseases. Lactobacillus casei strain Shirota (LcS) is one of the most popular probiotics, benefits of which in health maintenance and disease control have been supported by several science-based evidences.(2)

Early microbial colonization of the gut reduces the incidence of infectious, inflammatory and autoimmune diseases. Recent population studies reveal that childhood hygiene is a significant risk factor for development of inflammatory bowel disease, thereby reinforcing the hygiene hypothesis and the potential importance of microbial colonization during early life. (3)

Early-life environment significantly affects both microbial composition of the adult gut and mucosal innate immune function. We observed that a microbiota dominated by lactobacilli may function to maintain mucosal immune homeostasis and limit pathogen colonization. (3)

The human GI tract starts with the mouth and ends with the rectum. In between lay the esophagus, stomach, and intestines which consist of the duodenum, jejunum, ileum, and colon.

The surface area of the intestines equals that of a tennis court providing a huge area for absorption, digestion and interaction between our immune system and the micro-flora. This large surface area is the result of the intestinal micro-villi which produce an undulating surface resembling a series of peaks and valleys. The constant interplay between our immune system (4) and our micro-flora from birth to death along with the signaling and communication that occurs between our micro-flora and our nervous system (5,6,7) present two physiologic mechanisms for potential symbiosis (mutually beneficial interaction) vs dysbiosis (disease causing relationship).

Before birth the mouth, skin and intestine of the fetus is sterile. The first major introduction of bacteria to the infant occurs with birth  when the infant swallows bacteria in the mother’s birth canal and the infant’s skin becomes colonized by the mother’s bacteria. Infants born by cesarean section lack this initial exposure and they suffer increased risk of allergic and auto-immune disease (8). The rate of cesarean section in the US is now about 30 % and along with that increase there has been an observed increase in allergy, auto-immune and other diseases.

The second major addition to human gut and skin flora occurs with breast feeding and again breast-fed infants show decreased rates of allergy and auto-immune disease as well as decreased infections compared to bottle fed infants.

The interaction between the micro-flora and the immune system presents many complex relationships and interactions. Immune tolerance allows the immune system to recognize “self” and “friendly bacteria”  limiting the development of auto-immune disease and enhancing anti-inflammatory processes. At the other extreme recognition of “non-self”  allows for the recognition and disposal of “foreign” invaders such as infections or mutated cancer cells.

“The Old Friends Hypothesis”
Common organisms interact with dendritic cells in the GI tract, leading to increased maturation of dendritic cells. When there is interaction with these organisms again, the dendritic cells increase Treg maturation; not Th1 or Th2. This increases the baseline amount of anti-inflammatory cytokines, producing a Bystander Suppression. Another consequence of the increased number of mature dendritic cells is as they interact with self antigens, they increase the number Treg specific to these antigens. This is referred to as Specific Suppression. Together these two arms lead to tolerance of both self antigens as well as those of helpful gut organisms. (8)

Translation:  Treg or Regulatory T cells regulate the immune system and help prevent auto-immune disease and allergic reactions. Th1 and Th2,  T helper cells , on the other hand, increase inflammation and help our bodies defend against infection. The balance between Tregs and Th1, Th2 cells governs inflammatory responses.

Premature infants have an increased risk of a developing a very severe illness called necrotizing enterocolitis. Human studies have demonstrated significant risk reduction for this problem with the administration of pro-biotics to infants in neonatal intensive care units. (9)

Similarly, administration of pro-biotics during the first few years of life (to mother and child)  have been associated with decreased risk of eczema in children. While some studies suggest reduction of allergies and asthma in children, the regular use of probiotics remains undecided relative to preventing food allergies or asthma (10, 11).

Due to the recent exponential increase in food allergies and atopic disorders, effective allergy prevention has become a public health priority in many developed regions. Important preventive strategies include the promotion of breastfeeding and vaginal deliveries, judicious use of perinatal antibiotics, as well as the avoidance of maternal tobacco smoking. Breastfeeding for at least 6 months and introduction of complementary solids from 4-6 months are generally recommended. Complex oligosaccharides in breast milk support the establishment of bifidobacteria in the neonatal gut which stimulate regulatory T lymphocyte responses and enhance tolerance development…Perinatal supplementation with probiotics and/or prebiotics may reduce the risk of atopic dermatitis, but no reliable effect on the prevention of food allergy or respiratory allergies has so far been found. A randomized trial on maternal fish oil supplementation during pregnancy found that atopic dermatitis and egg sensitization in the first year of life were significantly reduced, but no preventive effect for food allergies was demonstrated. (10)

Thus birth by cesarean section increases risk and  breast feeding decreases risk of immune related problems (allergies, auto-immune disease and infection ). Use of probiotics for mother and child decrease the risk of eczema but the use of probiotics in preventing asthma or food allergy remains unsettled. There are a host of possible probiotics available that include various combinations of “healthy bacteria”. Future posts will discuss some of these.

Our micro-flora are constantly exposed to potential changing agents. Known influences include antibiotics (as medications or in the foods that we eat), stress, sleep, and diet. Because of the ubiquitous use of antibiotics in agriculture and animal husbandry, and the sometimes excessive use of antibiotics in medicine our microbiome is frequently changed by external factors. Many experts on the microbiome  consider these influences harmful and attribute the rising rates of several diseases as consequences of disruption in our gut flora.

Clostridium Difficile Colitis , a serious infection or overgrowth of the bacterium Clostridium difficile in the intestine occurs most commonly as a result of antibiotic administration to treat infections. This serious problem responds to anti-biotic treatment (ironically both the cause and cure) 90% of the time with the first round of treatment but there is a high incidence of recurrence due to the fact that C-difficile spores are resistant to antibiotics and can cause recurrent infection. In refractory or recurrent C-difficile cases a fecal transplant (FMT or fecal microbiota transplant) from a healthy human results in a 90 to 95% cure rate with the first treatment.

Antibiotic usage disrupts the normal gut flora and leads to an increased predisposition to CDI. The risk of recurrent CDI after initial treatment of the first infection is approximately 20–25% [Kelly and Lamont, 2008; Khanna et al. 2012g] and is further increased up to 60% with the use of additional systemic antibiotics and subsequent CDI recurrences [Hu et al. 2009]. The pathophysiology of recurrent CDI involves ongoing disruption of the normal fecal flora and an inadequate host immune response. Standard CDI treatment with antibiotics such as metronidazole and vancomycin further disrupts colonic microbial communities that normally keep expansion of C. difficile populations in check. Since C. difficile spores are resistant to antibiotic therapy for CDI, they can germinate to vegetative forms after treatment has been discontinued and lead to recurrent CDI. (12)

The authors of this study review the data for fecal microbiota transplant and summarize by stating:

Therefore, existing literature suggests that fecal transplant is safe and effective with over 500 cases of recurrent CDI with no serious adverse events reported to date. FMT appears to be an appropriate treatment option for multiple CDI recurrences and may be considered for refractory moderate to severe C. difficile diarrhea, failing standard therapy. The FDA had recently announced that an Investigational New Drug Application would be required for use of FMT for CDI, but this was later changed to the use of an informed consent process to ensure communication of potential risks.

In the area of obesity rodent studies have demonstrated that fecal transplants from thin to obese subjects results in significant weight loss. Measurable differences in the microbiome of obese vs thin humans have been identified.

The prevalence of obesity and related disorders such as metabolic syndrome has vastly increased throughout the world. Recent insights have generated an entirely new perspective suggesting that our microbiota might be involved in the development of these disorders. Studies have demonstrated that obesity and metabolic syndrome may be associated with profound microbiotal changes, and the induction of a metabolic syndrome phenotype through fecal transplants corroborates the important role of the microbiota in this disease. (13)

The issue of gut flora and obesity deserves a dedicated post. Multiple research articles and review articles have been published on the topic of fecal transplantation in relation to obesity, diabetes, metabolic syndrome, autoimmune disease and cancer. (14,15,16)

Diabetes, obesity, allergy, auto-immune disease, infections, psychiatric disorders and cancer represent examples of the potential interplay between the human microbiome, human health and disease. Multiple sources of information suggest a cause and effect relationship. The results of fecal transplantation in human and rodent studies, manipulation of the gut flora with pro-biotics and pre-biotics, data on the effects of vaginal vs cesarean delivery, and the benefits of breast feeding all proclaim the importance of our micro-flora.

Most traditional cultures have one or more forms of fermented foods. Examples include yogurt, kefir, sauerkraut, kim chee, beet kvass, kombucha. Almost any food can be fermented to produce health promoting probiotics and there is a growing movement for home-fermentation and/or consumption of purchased fermented foods. In addition to the pro-biotic nature of fermented foods and beverages, fermentation offers other potential health benefits. These include reduction of the anti-nutrients found  in various neolithic  foods (such as mineral binding phytic acid found in grains and legumes, digestive enzyme inhibitors found in soy and other legumes). Other potential health benefits include the production of Vitamin K2 found in many fermented foods.

This discussion barely scratches the surface of gut flora, health and disease. Future posts will address how our gut bacteria produce essential nutrients and affect mental health as well as physical health. Other important topics include how our activity, food, sleep and stress affect the our gut ecology. The system is dynamic with effects going in both directions.

Following the references below you will find links to NPR discussions of related topics. You can choose to read the articles and/or listen to the NPR interviews and reports.

Peace, happiness and longevity.

BOB

(1) Microbes in Gastrointestinal Health and Disease

(2) Probiotics as efficient immunopotentiators: Translational role in cancer prevention

(3) Environmentally-acquired bacteria influence microbial diversity and natural innate immune responses at gut surfaces.

(4) Has the microbiota played a critical role in the evolution of the adaptive immune system?

(5) It’s a Gut Feeling – how the gut microbiota affect… [J Physiol. 2014] – PubMed – NCBI

(6) Metabolic tinkering by the gut microbiome: Impl… [Gut Microbes. 2014] – PubMed – NCBI

(7) The gut-brain axis rewired: adding a functional vaga… [FASEB J. 2014] – PubMed – NCBI

(8) Cesarean versus vaginal delivery: long-term infant outcomes and the hygiene hypothesis.

(9) Probiotics for prevention of necrotizing enterocolitis in preterm infants.

(10) Preventing atopy and allergic disease.

(11) Gut microbiota and allergic disease: new findings.

(12) Clostridium Difficile Colitis ,

(13) Gut microbiome, obesity, and metabolic dysfunc… [J Clin Invest. 2011] – PubMed – NCBI

(14) Fecal microbiota transplantation: indications, methods, evidence, and future directions.

(15) Fecal microbiota transplantation: past, present and future.

(16) Therapeutic potential of fecal microbiota transplantation.

Here are the NPR and other links.

Interview: Martin Blaser, Author Of ‘Missing Microbes’ : NPR

FDA Backs Off On Regulation Of Fecal Transplants : Shots – Health News : NPR

Human Microbiome Project – Home | NIH Common Fund

Staying Healthy May Mean Learning To Love Our Microbiomes : Shots – Health News : NPR

Gut Bacteria Might Guide The Workings Of Our Minds : Shots – Health News : NPR

Worried That Your Baby’s Sick? There May Be An Upside : Shots – Health News : NPR

Breastfeeding and Medications

I promised to write my next post about saturated fat but I just read an excellent Medscape report about breastfeeding and mothers taking drugs. Here is the introduction.

“Many breastfeeding women are advised to stop taking necessary medications or to discontinue nursing because of potential harmful effects on their infants. The reality is that few medications are contraindicated in breastfeeding mothers.

The American Academy of Pediatrics (AAP) has just released a new clinical report, The Transfer of Drugs and Therapeutics Into Human Breast Milk: An Update on Selected Topics, to provide guidance on drug exposure and reaffirm the recommendation that most medications and immunizations are safe during lactation. Medscape spoke with lead author and pediatrician Hari Cheryl Sachs, MD, the US Food and Drug Administration (FDA) liaison to the AAP Committee on Drugs, about the key recommendations from the report and resources to assist clinicians in obtaining current information on specific drugs to help guide their advice to breastfeeding women.”

Here is the URL to the article and some other URLs you might want to click if you are a breastfeeding mother or parent.


Drugs and the Breastfeeding Mother: A New Clinical Report

The Transfer of Drugs and Therapeutics Into Human Breast Milk: An Update on Selected Topics,

LactMed

 

mobile app

FDA’s Adverse Event Reporting System.

The post has ended, go in peace.

BOB Hansen MD

Introduction

Practical Evolutionary Health

Americans spend almost twice as much per person on health care than the rest of the developed world yet we rank between 20 and 30 on most measures of public health. Why is that? The answer lies in our cultural habits, shaped in no small part by the marketing departments and sales forces of corporate America. Lifestyle and personal habits, in the broadest sense, determine our longevity and functional status (both physical and mental) as we age more than any drug or surgery. Dissecting how corporate America shapes and affects our health requires us to explore several layers. The first layer includes the food, pharmaceutical and medical device industries. But looking deeper at what shapes our culture and therefore our health, we must recognize the way our consumer driven economy shapes our culture with regard to the essential ingredients of health and disease.

This blog will explore the science and economics of health in an attempt to answer the “why is that?” above. The framework of this exploration will utilize a practical evolutionary-medicine perspective.

For a few million years our ancestors lived as hunter-gatherers. That period represents more than 99% of our evolutionary history. During that period our sleep habits cycled with the sun, we exercised regularly to obtain food, we ate fresh foods that included wild game and seafood, berries, nuts, tubers and  some wild plants, we rested allot, and enjoyed the benefits of small intimate social networks. After a few million years evolving in that manner we introduced agriculture, bred grass seeds into grains, bred wild fruits and vegetables into a variety of agricultural products with very different nutritional profiles as compared to the wild predecessors, and domesticated animals. Beyond that, we entered a period of industrialization that  has altered our eating, sleeping, social and exercise habits in a profound and  detrimental manner.

Convenience foods have been engineered in human laboratories to present flavors, textures, appearances and just the right mix of sugar-salt-fat to stimulate excessive consumption of nutritionally deplete calories. Mono-agriculture has depleted our soil both quantitatively and qualitatively. Corporate farming and animal husbandry have introduced the unnecessary and harmful use of antibiotics, hormones, insecticides and pesticides in the name of efficiency. Shift factory work has disrupted the circadian rhythm of millions of workers, increasing the risk of cancer, diabetes, obesity, depression and accidents to name a few. Artificial light has interfered with the procurement of adequate restorative sleep so essential for health. And  modern society has depleted our social network of meaningful supportive relationships and meaningful work.

That is the big picture, but what is the scientific data to support these statements? And what can we do to recapture the essential ingredients of healthy living while bringing home a paycheck? That is what this blog is about.

The Manifesto page represents a summary opinion of important topics related to health.

My posts will generally address topics covered in the Manifesto.

Bob Hansen MD