Anti-Inflammatory Diet

All health care starts with diet. My recommendations for a healthy diet are here:
Anti-Inflammatory Diet and Lifestyle.
There are over 190 articles on diet, inflammation and disease on this blog
(find topics using search [upper left] or index [lower right]), and
more articles by Prof. Ayers on Suite101 .

Showing posts with label statin. Show all posts
Showing posts with label statin. Show all posts

Saturday, August 22, 2015

Common Medicines Make Superbugs, Not Prescription Antibiotics

Careless prescriptions and cattle fattening antibiotics are blamed for the rise of superbugs resistant to everything in the hospital arsenal, but that’s all wrong.  Antibiotics fail, because we are all abusing common medicines that also have powerful antibiotic activity.  All painkillers, anti-inflammatories, statins, antidepressants, and the whole list of common pharmaceuticals are the problem.  We simply use too many drugs.

Common drugs should also be labeled as antibiotics, because they kill the sensitive bacteria in your gut and leave behind just the resistant bacteria.  Unfortunately, the genetic mutations that make your gut bacteria resistant to drugs, also provide resistance to antibiotics needed to stop infections and that broad resistance to antibiotics can spread to pathogens that then become the dreaded superbugs.

Here are the simple facts that I have discussed at length in another post:
  • Statins were antibiotics that were repurposed to lower LDL, “bad cholesterol.”
  • Aspirin was an antibiotic that was shown to relieve pain and inflammation.
  • Metformin was an antibiotic that later proved useful for treatment of diabetes.
  • Many chemotherapy drugs are antibiotics developed for cancer treatment.
  • Diuretics were antibiotics that indirectly reduce blood pressure.
  • Antidepressants, such as Prozac, Zoloft, etc. are antibiotics.

Common Drugs Are Actually Antibiotics
Most pharmaceuticals are derived from phytochemicals, a.k.a antioxidants, adapted in plants to kill microorganisms, i.e. as natural antibiotics.  It is not surprising that drugs = antibiotics.  What is surprising is that people assume that if antibiotics are labeled with some other activity, that they cease to be antibiotics.  All drugs are also antibiotics and that is why a major side effect of most medicines is upset gut bacteria.

Overuse of Common Drugs Produces Superbugs
Simply put, common medicines you swallow, kill bacteria in your bowels.  Some bacteria survive and are called “drug resistant.”  Bacteria accumulate resistances to several different kinds of drugs and are called “multidrug resistant.”  As might be expected, hospitals are the breeding grounds for multidrug resistant, mutant bacteria of all different types.  Unfortunately, anyone who takes several types of medications is also a source for multidrug resistant bacteria, so nursing homes are the most frequent sources of superbugs that cause outbreaks of hospital infections.

The Only Way to Stop Superbugs is to Use Less Drugs
The bottom line is that even if doctors start to use antibiotics more rationally and antibiotic use in agriculture is eliminated, superbugs will still be a big problem, because they will be produced by excessive use of common drugs, i.e. those found on the shelves of drug stores and supermarkets, as well as prescribed by doctors.  


The only solution to the superbug problem is to reduce pharmaceutical use by 99%.

Friday, January 2, 2015

Frankincense and Myrrh, Terpenoids

 --- the other 200 posts ---
Frankencense Resin
 'Tis the season to discuss phytochemicals.  Plants produce a vast array of organic chemicals starting from molecules produced by all organisms, including humans.  Essentially all of these phytochemicals are potent adaptations to kill.  Phytochemicals kill plant pathogens, bacteria and fungi, as well as insects.  Thus, the natural, plant extracts that humans use for flavor enhancers (herbs, spices, and teas), fragrances, recreational/medicinal mind and attitude modifiers (alkaloids, psychopharmaceuticals, etc.), herbal medicines, etc. are present in plants, first and foremost, as antibiotics and insecticides.  Humans have evolved to taste (bitter) and smell phytochemicals to avoid their toxicity, and have adapted culturally to exploit the impact of phytochemicals on body and mind.  In this seasonal post, I focus on the terpenoids in Frankincense and Myrrh, to explore how plant biochemistry contributed to the gifts of the Magi.

It All Starts with Central Metabolism
Phytochemicals are complicated plant chemicals that are produced by a series of enzyme-controlled reactions (Central Metabolism) from the array of chemicals used by plants to convert photosynthetic carbohydrates (fructose and glucose) into the molecules (sugars, amino acids, fatty acids, nucleic acids) used to make the macromolecules of cells (polysaccharides, proteins, fats, DNA/RNA).  Alkaloids and phenolics, e.g. phytoalexins, are made from amino acids (phenylalanine) and terpenoids are made from fatty acids (acetyl CoA/Mevalonate) or other intermediates in glycolysis.  Thus, central metabolism that converts glucose/fructose into pyruvate and the acetyl CoA (see mevalonate pathway left) of mitochondrial fatty acid metabolism, is further converted into amino acids and plant secondary compounds, phytochemicals.  I am going to talk mainly about terpenoids in Frankincense (triterpenoid Boswellic acids) and Myrrh, and many related molecules (steroids) also produced by humans.  

The major thesis here is that carbon dioxide is converted by photosynthesis into either sugars used to build the cell wall polysaccharides (soluble fiber) or larger toxic defensive chemicals, e.g. phytoalexins, resins, essential oils or lignin.  Phytoalexins, e.g. the natural antibiotic resveratrol in wine, are made from phenylalanine along the same biochemical pathway used to produce lignin.  Glyphosate, the herbicide, kills by blocking this unique plant pathway.  Essential oils and resins are another group of natural antibiotics produced by converting acetyl CoA into a five carbon unit, IPP, which is then linked into larger and larger (10, 15, 20 carbons) molecules, terpenoids, that can rearrange into multiple ring structures.  Only the smallest chemicals in the series evaporate to provide identifiable smells, e.g. Frankincense and Myrrh, while larger forms, e.g. cholesterol or testosterone in animals, are odorless solids.

Acetyl CoA to IPP
IPP
For those who enjoy the beauty of biochemistry:  The most abundant enzyme on earth is RibisCo (ribulose bisphosphate carboxylase), the plant enzyme that combines carbon dioxide from air with a five-carbon phosphorylated sugar, ribulose bisphosphate, to produce two, three-carbon intermediates of glycolysis that can be converted into glucose or into acetyl CoA, the starting chemical for fatty acids, the mitochondrial TCA cycle, or via mevalonic acid to isopentanyl pyrophosphate (IPP), the building block for terpenoid synthesis.

In brief:  Photosynthesis uses the energy from sunlight to convert carbon dioxide into sugars (glucose and fructose).  Those sugars can be converted into a five-carbon, molecular building block for terpenoids, IPP.  IPP molecules can then be linked together to make increasingly longer chains and those chains can be ultimately twisted into rings to make resins in plants and steroids in humans.

Five, Ten, Fifteen, Thirty; IPP (5), GPP (10), Sesquiterpenoids (15), Triterpenoids (30)
Terpenoid Polymerization
Terpenoid synthesis begins with IPP, which has five carbons in a branched chain and has a pair of phosphates, pyrophosphate that provide the energy to form chains of 5, 10, 15, etc.  In plants, molecules of each of the incremental lengths are produced together and additional enzymes in different species of plants result in mixtures of molecules with different rings and functional groups.  The smaller molecules evaporate more readily, so that mixtures are extruded from damaged trees as oils and gradually form resins as the remaining larger molecules predominate and solidify.

Shark Livers and the Horn of Africa
IPP with five carbons, an isoprene, is used to make GPP with ten, a monoterpene.  Common monoterpenes are geranol and limonene that make the characteristic odors of geraniums and lemons. Sesquiterpenoids (15 carbons made from three IPPs) include the fragrance of patchouli. Diterpenes, such as sweet steviol, have twenty carbons, which can be chemically twisted into the chemicals that predominate in Myrrh resin, the Balm of Gileade.  The triterpenes with 30 carbons can be rearranged with five rings to form steroids, such as cholesterol in animals or Frankincense.  Linear squalene, is the major component in shark liver oil and provides the same function as a swim bladder in a boney fish.

Essential Oils Are Mixtures of Distilled Terpenoid and Phenylpropanoid Phytoalexins
Boswellic Acid
Phytoalexins and terpenoids have evolved as plant defenses against bacteria, fungi and insects, and they are toxic, because they interact aggressively with proteins through their chemical ring structures that are hydrophobic.  These ring structures make the smaller versions volatile and soluble in organic solvents.  Many of these chemicals have properties similar to petroleum products and may be used as solvents themselves, e.g. paint strippers or thinner.  Steam distillation of plants produces mixtures of phytoalexins and terpenoids commonly called essential oils, which contain the volatile components “essential” for the odor identity of a plant.


Statins Block Cholesterol Synthesis

Statins were identified among a group of fungal antibiotics for their ability to block an early enzyme (marked in the mevalonate pathway above) in the production of cholesterol.  The toxic side effects of statins derive from wholesale disruption of all of the essential pathways (everything below the inhibited enzyme) that are related to cholesterol, such as blood heme A found in hemoglobin, and ubiquinone (CoQ) found in mitochondrial electron transport and needed to reduce oxidative stress and glucose intolerance.  Thus, for these examples, statins would contribute to anemia and type II diabetes/metabolic syndrome.  The side effects are not surprising, since statins are fungal antibiotics that target pathways common to bacteria and human mitochondria.  It is also not surprising that statins have unpredictable impacts on gut flora and the immune system.

Friday, July 25, 2014

Dr. Oz Five Food Felons

Biofilms on intestine microvilli
The medical industry is slowly pulling away from diet advice that has contributed significantly to disease in America.  It promoted or at least tolerated, the shift from butter to margarine and polyunsaturated vegetable oils, and from saturated fats in meats to starches and grains.  The medical emissary, Dr. Oz, still supports medical advice that is not based on medical research.

Dr. Oz's Five Food Felons and Why His Choices Are Unhealthy:

"1) Trans fats raise lousy LDL cholesterol and triglyceride levels, lower your healthy HDL cholesterol level and fuel disease-triggering inflammation."  Trans fats are inflammatory and should not be eaten.  New labeling has permitted substantial amounts of trans fats to be added to processed foods and still be labelled "No trans fats."  LDL blood levels reflect inflammation, but artificially lowering the LDL with statins has no impact on heart disease.  Lowering LDL, by lowering inflammation with fish oil and/or repair of gut flora, diet and exercise is effective.

"2) Saturated fat in red meats, poultry skin, full-fat dairy products and palm and coconut oils fuels cancer risk, coronary artery disease, dementia, obesity and diabetes."  Linking saturated fats with heart disease, etc. was never supported by medical research.  Elimination of red meat, removing skin from chicken, avoiding egg yolks, etc. and replacing them with omega-6 polyunsatured vegetable oils has been a major contributor to inflammation and disease.  Full fat milk is the healthful choice, especially for children.  The change was dangerous and is being reversed with new emphasis placed on omega-3 fish oils.

"3) Added sugars and 4) sugar syrups cause the proteins in your body to be less functional and age your immune and cardiovascular systems and your joints. Plus, they disrupt your metabolism and contribute to almost every lifestyle-related malady, including some cancers."  Oz got this right even though they initially promoted high fructose corn syrup (half glucose/oligos) and its evil and even higher fructose sister agave nectar (all fructose/oligos.)  Equally bad, however, are the hyperglycemic starch in breads (including whole grain!) and over cooked pasta.


Gut flora
"5) Refined and processed grains don't contain the fiber or nutrients (contained in 100 percent whole grains) that you need to keep the bacteria in your guts happy, glucose levels regulated, immune system strong and digestion running smoothly."  Dr. Oz and company fail to understand the basics of vitamins, soluble fiber and gut flora.  Grains are not healthy for most people, because of the toxicity of gluten and hyperglycemic starch.  Ultra fine milling and fast commercial bread making eliminate the resistant starch.  "Whole grain" processed foods just add back the insoluble fiber that is considered toxic, because of its phytic acid content.  Grains should just be replaced with whole foods, such as vegetables that contain the soluble fiber that feeds the gut flora that provide all of the needed vitamins and are required for immune system development.

Why Does Dr. Oz Make Health Mistakes?

Dr. Oz has been criticized for promoting foods, supplements, medical treatments, etc. that are not supported by medical research.  While that is true, I think that he is just following the general views of the medical industry and simply doesn't know any better.  Sadly, most doctors don't have the background to read scientific research papers, let alone their own biomedical literature that is rife with scandals of nonreproducibility and inappropriate industry influence.  Doctors find it hard to give valid dietary advice, because nutritionists have false information and celebrity doctors, and their research teams, don't do their homework.  The result is the mix of ancient orthodoxy, industry promotion, alternative medicine and unscientific fads that appears in the media.  Doctors need a scientific background sufficient to answer the essential question posed to health claims, "Does it make sense?"

Wednesday, June 25, 2014

Antibiotic Resistance, Superbugs and Drugs

Antibiotic resistance results, because spontaneous mutations occur so frequently that all bacteria are different.  It is just a matter of exposing enough bacteria to an antibiotic to find one that is insensitive to a particular antibiotic.  More bacteria mean a greater chance of mutations to antibiotic resistance.  The gut contains a lot of bacteria and sewage treatment plants are loaded with gut flora.

Antibiotics are Ubiquitous
All organisms, plants, fungi and animals/humans produce chemicals that kill bacteria, i.e. antibiotics.  I have written many articles about the natural antibiotics of plants, a.k.a. phytoalexins or “antioxidant” polyphenolics, and the human defensins that are peptides with heparin binding domains.  Bacteria also produce viruses, called bacteriophages, that kill other bacteria.  All of these natural antibiotics are small molecules that interact with many different human proteins, and it is these side effects that permit their exploitation as pharmaceuticals.  Thus, statins were selected from fungal antibiotics that inhibited an enzyme needed for human synthesis of cholesterol, metformin was a phytoalexin found to reduce blood sugar and resveratrol is a grape phytoalexin.

Plant Antibiotics are Natural
The flavoring chemicals in herbs and spices have a far more important use in food preparation than titillation of taste buds, since those chemicals kill common food pathogens.  More profoundly, it is important to realize that the selective advantage of phytochemicals/polyphenols/alkaloids/essential oils to the plants that make them, is as natural antibiotics.  Plants kill bacteria, as well as fungi and insects, for a living.

Plant Chemicals Attack all Aspects of Bacteria
Most of the thousand genes that are present in a bacterium code for proteins/enzymes and most antibiotics target those enzymes.  Penicillin binds to an enzyme needed to make bacterial cell walls, streptomycin target protein synthesis, rifampicin blocks RNA synthesis, actinomycin D inhibits DNA synthesis, etc.

Mutation to Antibiotic Resistance is Automatic in Bacteria
Each time a cell replicates, mistakes are made and the new DNA molecule of each chromosome is slightly different than the original.  There are about a thousand genes on the single chromosome of a bacterium and about the same number on each of the 23 human chromosomes.  About a dozen mistakes, mutations, are made each time bacteria replicate.  The mutations that alter the gene target of an antibiotic and produce a bacterial enzyme that is unaffected by the antibiotic, yield an antibiotic resistant bacterium.  The mutant gene now codes for antibiotic resistance and the presence of several resistance genes in the same bacterium produces multiple antibiotic resistant "superbugs."

Mutations are Random, but Antibiotics Select for Resistance
Each cellular replication produces random mutations throughout the bacterial DNA, but of the billion sites along the DNA that can mutate, only a few will produce a modified enzyme that will no longer interact with a particular antibiotic and thus be resistant.  Antibiotic resistance mutants are rare, less than one in a million, but a million bacteria can grow from a single cell in a day and occupy a volume less than a crystal of salt.  Ten hours later, after ten more doublings of the million bacteria, there will be a billion, and there will be a good chance that among those will be a mutant that is resistant to a particular antibiotic.  In the pound of bacteria in the human gut, there are mutants that are resistant to most antibiotics, including the antibiotics that have not yet been developed.  Of course, most of those antibiotic resistant bacteria are just flushed down the toilet.  Treatment with antibiotics kills all of the sensitive bacteria and leaves only the resistant.  Thus, antibiotic treatments select for antibiotic resistant bacteria.

Common Use of Antibiotics Selects for Resistance on Plasmids
Genes are transferred between bacteria by bacteriophages, conjugation (a kind of bacterial sex) and transformation, which is the release of DNA from one bacterium with subsequent uptake by another.  Biofilms, which are communities of many different species of bacteria, stimulate transformation and exploit bacterial DNA as a matrix material to hold the communities together.  The human gut is lined with biofilms and the biofilm bacteria secrete vitamins as the quorum sensing signals that coordinate community activity.  Thus, some vitamins must stimulate transformation, the exchange of DNA among members of the different species of bacteria in the biofilms with evolution of new and novel species.  Rapid change in the gut environment selects for a shift in genes that provide for adaptation to the new environment to small DNA fragments, plasmids, that move most readily between bacteria.  Antibiotic treatment results in antibiotic resistance genes on plasmids.

Use of Multiple Antibiotics Selects for Multiple Antibiotic Resistance Plasmids
Persistent use of an antibiotic will spread resistance to a particular antibiotic through the gut flora, facilitated by antibiotic resistant plasmids.  Replacement of a second antibiotic will result in a new plasmid with both antibiotic resistance genes.  Hospitalization and exposure to a plethora of bacteria with multiple antibiotic resistance plasmids will result in rapid conversion of gut flora to multiple antibiotic resistance upon exposure to any antibiotics.  Hospital staff would be expected to be natural repositories for multiple resistance genes, especially if they are exposed to any antibiotic (or pharmaceutical.)

Most Pharmaceuticals Select for Multiple Antibiotic Resistance Plasmids and Superbugs

The frightening rise of superbugs resistant to all known antibiotics has been attributed to the accelerated use of antibiotics in medicine and agriculture.  Mixing megatons of bacteria in the guts of billions of people with tons of antibiotics, and still more in sewage treatment plants and agriculture, is bound to produce bacteria with every type of multiple antibiotic resistance plasmid imaginable.  But that is not the biggest problem, since fingering the commercial use and misuse of antibiotics ignores biggest exposure of bacteria to antibiotics.  It ignores the fact that most popular pharmaceuticals, NSAIDs, statins, anti-depressants, anti-diabetics, etc., also have substantial antibiotic activity.  Most of these pharmaceuticals started out as phytoalexins and then were found to also have pharmaceutical activity.  Pharmaceuticals are just repurposed natural antibiotics.  When you take an aspirin or Metformin or a statin, you are taking an antibiotic.  When you take a pharmaceutical, you are selecting for multiple antibiotic resistance plasmids in your gut flora and you may be making the next superbug.

Tuesday, May 27, 2014

Metformin, Antibiotic with Autoimmune Side Effects

----The other 200 posts are here----
Metformin
Major points linked in this article:
  • Metformin is commonly used in the treatment of diabetes.
  • Metformin is structurally and chemically related to arginine, guanine and Canavanine.
  • Side effects of Metformin include GI upset and autoimmune lupus (same with Canavanine.)
  • Metformin also kills bacteria, i.e. it is an antibiotic.
  • Many pharmaceuticals, e.g. statins, were first identified as antibiotics produced by fungi.
  • Antibiotics select for antibiotic resistance genes, i.e. essential bacterial genes that have mutated to no longer be inactivated by antibiotics.
  • New antibiotic resistance genes are combined with other resistance genes on multiple resistance plasmids that are transferred as a group.
  • Because of its wide use, resistance to Metformin (and statins) as an antibiotic probably already exists and has been incorporated into multiple drug resistance plasmids.
  • Many common pharmaceuticals are also antibiotics and probably select for multiple drug resistance.
  • A major contributor to multiple drug resistance, “super bugs”, and the rapid loss of efficacy of antibiotics is the over use of pharmaceuticals in general, in addition to the specific abuse of antibiotics designed to kill pathogens.
Metformin is a Good Anti-Diabetic, but...
Arginine
Metformin is the treatment of choice for type 2 diabetes and yet, like many other common drugs, the full extent of its impact on the body (and the body’s essential microbiome of bacteria and fungi) has not been studied.  This article should not be seen as a criticism of the pharmacological efficacy of Metformin in lowering blood sugar.  The point here is that Metformin alters gut flora and its major pharmacological impact may result from alteration of the gut flora and not direct action on cells of body organs.  Metformin, because of its structure and size would be expected to act relatively indiscriminately in numerous cell functions, but I don't think that these interactions are as important as the impact on gut flora.  Metformin has all of the properties of an antibiotic selected to lower blood sugar and have limited side effects.  It would not be expected to cause a dramatic increase in autoimmunity, because diabetics already have elevated autoimmunity and associated deficiencies in gut flora.

Metformin is a Diguanide
 I previously explored the interesting properties of Metformin in my laboratory and through computer modeling experiments, and found it would react with many cellular enzymes and receptors similarly to the amino acid arginine.  This was no surprise, since the working end of arginine is a guanide and Metformin is a Siamese twin of guanides, i.e. a biguanide.  I might as well also say that another guanide, Canavanine, a toxic, antimicrobial phytoalexin in bean sprouts, has similar properties.
Canavanine

Phytochemicals as Antibiotics


  
I have studied (and written about) the natural plant antibiotics, phytoalexins, in legumes, and particularly in soy beans, so I would expect all of the chemicals, (a.k.a. phytochemicals or “antioxidants”) extracted from plants, e.g. alkaloids, polyphenols and essential oils, to kill bacteria and be toxic to human cells.  The selective advantage to plants in producing phytochemicals is the antibiotic activity of those chemicals.  Pathogens that have adapted for growth on one species of plant have resistance genes to that plant’s phytoalexins.  Thus, bacterial genes for resistance to the antibiotic activity of drugs derived from phytochemicals are common in nature and broad use of these drugs merely selects for the transfer of these genes to gut flora.
Canavanine and Lupus
What put together more pieces of the gut flora/antibiotic/autoimmune disease puzzle for me, was coming across Dr. Loren Cordain's recent reiteration of the toxicity of legumes and his singular example of Canavanine from alfalfa sprouts as a contributor to the autoimmune disease, lupus.  When I looked up the structure of Canavanine and found it to be a guanide, I immediately started making comparisons to Metformin and was amazed to see that these chemicals share the same list of side effects focused on the gut.  Moreover, lupus is also a side effect of both Metformin and Canavanine.  It was initially surprising, that a recent study suggests that the anti-diabetic action of Metformin may result indirectly from its antibiotic effects on gut flora.  I now expect that Canavanine causes lupus by killing or altering the metabolism of particular species of bacterial gut flora involved in the normal functions of the immune system, e.g. Tregs required for immune tolerance.  It is now a common observation that many pharmaceuticals act indirectly via their impact on gut flora, i.e. many pharmaceuticals are fundamentally antibiotics, and particular antibiotics can duplicate the activity of pharmaceuticals.
Pharmaceuticals Select for Multiple Antibiotic Resistance
I have one other concern about the wide use of drugs derived from phytoalexins.  Metformin can be considered one of those drugs, and just like phytoalexins, it is a potent antibiotic.  There is no difference between purified natural plant antibiotics/ phytoalexins/ polyphenols/ antioxidants and commercially synthesized antibiotics with respect to selecting for resistance.  I would expect that resistance to Metformin, as an antibiotic, has already developed in common gut flora and consequently, that multiple drug resistance plasmids from hospital pathogens now contain Metformin resistance.  Thus, I would also expect Metformin and many other pharmaceuticals to select for multiple antibiotic resistance. [An additional example is the antibiotic activity of NSAIDs on Helicobacter pylori.  I think that prevalent use of NSAIDs in many countries is responsible for the decline in H. pylori.]



Wednesday, March 12, 2014

Health in Diagrams I — Gut Flora and Diet

This is the first of three posts to summarize my thoughts on diet, inflammation and disease mediated by gut flora.  I decided that I needed to make my points as explicit as possible by putting them down in diagrams and making references to my other posts.  By the time I finish, I will reach my 200th blog post at Cooling Inflammation.
Everyone Leaves Out Gut Flora
I want to first explain and diagram my current understanding of the relationship between gut flora (the complex community of hundreds of different types of bacteria and fungi in the intestines) and diet.  My impression is that many people have health problems based on diet, but when they try to heal their health, they fix their diet and see only limited benefits.  Medicine provides only a temporary treatment using dairy probiotics.  The problem is that they failed to fix their gut flora, which was also damaged by their unhealthy diet.  

Health Requires a Match between Diet and Gut Flora
It is a myth that gut flora will just adjust to diet and a healthy diet leads to a healthy gut flora.  
A damaged gut flora lacks necessary species of bacteria.  Antibiotics, for example, can permanently delete dozens of particular bacterial species of gut flora that can only be replaced by reintroducing the missing bacteria by eating those bacteria again.  The missing bacteria may be needed to digest particular foods and the result is food intolerances, commonly mistaken for food allergies.  Antibiotic use frequently leads to autoimmune diseases, that are caused by deficient regulatory T cells of the immune system that develop in the lining of the intestines in response to particular gut bacteria.  The natural source of gut bacteria is eating the bacteria clinging to raw or fermented vegetables.
Diagram Showing the Interaction of Food, Gut Flora and the Immune System


Food is just Protein, Fat and Soluble Fiber
The human body produces enzymes to fully digest proteins, fats and one polysaccharide, starch.  All other parts of plants and animals are edible (fermented by gut flora) soluble fiber polysaccharides or insoluble, undigestible fiber consisting of cellulose or lignin, which together also make up the undigested organic matter, humus, of soil.  Grains are problematical for health, because their starch is readily converted to sugar, i.e. high glycemic, and their fiber is insoluble (not fermented by gut flora) and high in phytate.  Phytochemicals, plant polyphenolics, are of questionable value as antioxidants and are of unexplored importance for their antimicrobial impact on gut flora.
Polymers (Protein, Starch) are Hydrolyzed by Enzymes to Oligomers and then Monomers (Amino Acids, Glucose)
The stomach mixes protein digesting enzymes, proteases, and starch digesting amylase, with food protein and starch.  Proteases convert the long chains polypeptides, polymers of protein amino acids, into shorter fragments, oligopeptides.  The specific nature of the stomach proteases leaves groups of basic amino acids (lysine, arginine), heparin-binding domains, intact.  These peptides, similar to the defensins of the microvilli crypts, are anti-microbial and work with residual acidity to reduce bacterial growth in the first part of the small intestines.  Pancreatic enzymes then digest the peptides further and the small peptides are ultimately digested by enzymes on the surface of intestinal epithelial cells just prior to absorption.  Similarly, starch is degraded to oligosaccharide amylodextrins, which are then hydrolyzed to glucose at the intestinal surface prior to absorption.  Amino acids and glucose are not normally available to bacteria in the intestines.
Fats are Dissolved by Bile, Digested by Lipase and Absorbed
Fats are triglycerides, i.e. three fatty acids attached to the three hydroxyl groups of glycerol.  Fats are hard to digest, because they form oily droplets.  The droplets are dissolved in the intestines with bile, which is an acidic form of cholesterol, that is produced in the liver and stored in the gall bladder.  Fat in a meal triggers bile release from the gall bladder into the small intestines.  The bile represents a huge reservoir of the cholesterol that is synthesized by the body and dwarfs the cholesterol content of any meal.  Statins decrease body production of cholesterol, interfere with bile/fat digestion and lower lipid cholesterol levels.  (Unfortunately, lowering lipid cholesterol levels has minimal impact on heart disease and the only impact of statins on cardiovascular disease is through weak anti-inflammatory side effects.)  Pancreatic lipase removes two of the fatty acids from each triglyceride.  The fatty acids (a.k.a. soap) and monoglyceride are absorbed by the intestinal cells and reformed into triglycerides that make their way to lymphatic lacteals and are dumped into the blood, where they circulate as chylomicrons surrounded in lipoprotein.  Lipoprotein lipase binds to heparan sulfate on the surface of blood vessels and gradually removes fatty acids, until the diminished chylomicron is absorbed by the liver and exits as a VLDL.  (Note that this is another connection between lipid metabolism and inflammation, since inflammation decreases heparan sulfate on cell surfaces.  Heparan sulfate also mediates LDL binding to cells and amyloid stacking.)
Plant Polysaccharides are Soluble Fiber and Food for Gut Flora
All that remains of food after the protein, fat and glycemic starch (glycogen) have been removed in the small intestines are plant cell wall polysaccharides, resistant starch, storage polysaccharides, e.g. inulin, plant beta-glucan, animal glycans, e.g. chondroitin sulfate and heparan sulfate, and insoluble fiber.  The insoluble fiber passes on to be a minor contributor to the bulk of stools and the rest of the polysaccharide is potentially fermentable by gut flora into short chain fatty acids (formic, acetic, propionic, butyric acids).  Some of the polysaccharides are simple repeating units of one or two sugars in long chains, but others are made of five to ten different sugars in complex branched structures.  Simple repeating polysaccharides require just a few different enzymes for their initial synthesis and a few for their digestion.  Thus, resistant starch can be digested by a couple of enzymes into glucose that can be used by most gut flora.  Arabinogalactan, on the other hand, requires a dozen enzymes for plant synthesis and an equal number of hydrolytic enzymes to produce arabinose and galactose, which require further enzymes for metabolism in a select few of species of gut flora bacteria.  
Food Intolerance/“Allergy” Indicates Missing Bacteria
Gut flora in general can produce several hundred different enzymes for digestion of diverse soluble fiber,  but most soluble fiber polysaccharides can only be digested by certain bacteria and those bacteria increase, if the complementary fiber is present in the diet.  If a fiber is absent from the diet, bacteria that specialize in digesting that polysaccharide will be eliminated.  People living on diets limited to just a few types of soluble fiber can only digest those fibers and a shift in diet to other types of soluble fiber will lead to symptoms of dietary upset, such as bloating, gas production and food intolerance.  Food intolerances reflect inadequate diversity in gut flora and a mismatch between bacteria and food.  Food intolerances can be eliminated by repairing gut flora and the typical repair solution is eating homegrown fermented vegetables that provide the missing species of bacteria.
Immune Cells Develop in Response to Gut Bacteria
Most of the body’s immune cells are in the intestines.  Cells of the immune system are constantly dividing in bones and the thymus gland, developing in the lining of the intestines and migrating to other tissues.  Filamentous bacteria of the gut flora stimulate the development of aggressive immune cells that kill other cells that are infected with pathogens or viruses or are cancerous.  Furrows perpendicular to the flow of food cultivate the growth of Clostridium species that ferment soluble fiber, e.g. resistant starch, and release butyric acid that stimulates the development of regulatory T cells, Tregs.  It is the Tregs that control the aggressive immune cells and prevent attack on self (autoimmunity) or innocuous antigens (allergy).  It appears that merely eating resistant starch, e.g. potato starch, with probiotics that contain butyric acid producing Clostridium bacteria may provide a cure for many autoimmune diseases.
Gut Biofilms Release Vitamins as Quorum Sensing Signals
 The gut flora lines the intestines in numerous biofilm communities, which form from dozens of different species of bacteria that communicate by exchanging molecules called quorum sensing signals.  These signals from the biofilms intimately attached to the lining of the intestines are vitamins.  Thus, healthy gut flora are the major source of vitamins and other sources, such as fruits and vegetables are only needed, if the gut flora is damaged, e.g. by antibiotics.
Volume of Stools Reflects Gut Flora Fermenting Soluble Fiber
The bulk of bowel movements, stools, is bacteria, the compressed gut flora that accumulated in the colon while fermenting soluble fiber.  We always hear that we need to eat fiber for regularity, but since insoluble fiber is only a minor contributor to stool volume and it is associated with anti-nutritive attributes, such as the binding and removal of zinc and iron by phytate, the fiber that counts for regularity is soluble fiber.  Regularity results from the fermentation of soluble fiber polysaccharides producing short chain fatty acids, such as butyrate, that are the major source of energy for colon cells.  And the growing bacteria in the colon provide most of the bulk of the hydrated stools.  Inadequate dietary soluble fiber or damaged gut flora, dysbiosis, leave only dehydrated insoluble fiber and compact stools of constipation.  Constipation can result from dehydration or excessive retention, but chronic constipation, even in the presence of adequate dietary soluble fiber, is an indication of damaged gut flora and an increased risk for diseases resulting from deficiencies of Treg production:  autoimmune diseases and allergies.  Constipation and associated autoimmune diseases can be cured by repairing gut flora and supplying adequate dietary soluble fiber.

Friday, January 17, 2014

Dr. Oz Diet and Gut Flora Myths



I just watched a Dr. Oz program on health myths, including corrections, such as recognition of the high fructose content of agave syrup (especially bad for diabetics.)  So I thought I would go ahead and correct some of the perspectives on his show that I don't think are supported by biomedical research.

The Big Truth about Diet and Gut Flora
Health results primarily from a matched Diet AND Gut Flora, with minor contributions by exercise, personal genetics, environmental toxins, etc.  You can eat the extremes of just meat or only vegetables or any mixture and be healthy, as long as your gut flora is made up of about two hundred different species of bacteria that can fully digest the soluble fiber in your diet.  Health requires a gut flora adapted to your diet.  Those bacteria, the gut flora, produce all of your needed vitamins, eliminate constipation, block inflammation and control the development of your immune system, which takes place in the lining of your intestines in response to gut bacteria.

Assorted Health Truths
Truth:  Saturated fats are healthy, but polyunsaturated omega-6 vegetable oils are inflammatory.  Oz can't bring himself to read the literature and acknowledge the heart benefits of saturated fats and meat.

Truth:  Soluble fiber, e.g. pectin in fruit or inulin in leeks or chondroitin in meat, is healthy food for gut flora, but insoluble fiber, such as in whole grains is a scam and just sucks out micronutrients.  Oz could really help the public by explaining that the hundreds of different polysaccharides produced by plants, i.e. soluble fiber, are digested by hundreds of different enzymes in gut flora.  Gut flora digest soluble fiber into sugars that are converted into short chain fatty acids that feed intestinal cells.

Truth:  GMOs have been studied intensively, are relatively boring and healthy, but organically grown veggies have not been shown to provide any additional health benefits over conventional.  Oz adheres to a very political line and attacks GMOs without any reasoned arguments and touts organic veggies without reference to supporting research.

Truth:  Grass grown beef has healthier fats with more omega-3 oils, but omega-3 plant oils, such as ALA in flax, provide only minor benefits and can't substitute for the long chain DHA and EPA in fish/algae oil.  Oz keeps pushing flax seed even though the benefits are minimal and the problems of high insoluble fiber have not been tested.

Truth:  Constipation is a sign of unhealthy gut flora and can lead to autoimmune disease, allergy or food intolerance, but laxatives such as magnesium only fix the symptoms and not the missing essential gut bacteria.  Oz is really confused about constipation and focuses on dehydration rather than the bacterial content of stools.

Truth:  Antibiotics may be essential for surgery or life threatening bacterial diseases, but antibiotic-damaged gut flora must be repaired (not just probiotics) or the immune system will be compromised.  Antibiotics are major contributors to autoimmune disease and I don't think that Oz realizes the damage that he starts or continues by not repairing gut flora after he repairs hearts.

Truth:  Dairy probiotics, e.g. Lactobacillus or Acidophilus, can provide a quick fix for some functions of gut flora, but these limited probiotic bacteria do not survive in the gut and do not substitute for normal gut bacteria.  I think that Oz still sends his patients home with yogurt after heavy antibiotic treatment and leaves his patients with damaged gut flora and long term disease risk.

Truth:  An Anti-Inflammatory Diet can reduce sources of inflammation that is the foundation for cancer, autoimmunity, allergy and most diseases, but adding new bacteria (not dairy probiotics) through social contacts and live fermented foods is essential for a healthy gut and immune system.

Truth:  All needed vitamins are supplied by healthy gut flora (as biofilm chemical signals) and healthy people do not benefit from multivitamin supplements, but people with damaged gut flora, e.g. because of antibiotic use or autoimmune disease, may require specific vitamins.

Truth:  Antioxidants are just plant defense chemicals, i.e. plant antibiotics, that are unimportant in general health, but they may alter gut flora in unpredictable ways.  Oz likes all antioxidants, but can't explain why these generally toxic chemicals are not used by plants as antioxidants.

Truth:  All of the vitamin D that we need is supplied by minimal skin exposure to sunlight, but most Americans are vitamin D deficient, because chronic inflammation blocks solar production of vitamin D in the skin.  Oz doesn't seem to understand the role of inflammation in vitamin D deficiency.

Truth:  We don't need Grains and other sources of starch, but grains also typically cause health problems, e.g. sensitivity, intolerance or celiac, for most people and can cause inflammation of the gut and disruption of the gut flora that can lead to autoimmune diseases.  Most thyroid disease and back problems are autoimmune diseases that start with celiac.  Oz still promotes whole grains even though added bran lowers nutritional quality and many people are healthier without grains.  He also seems to ignore the relationship between grain, antibiotics and autoimmune disease.

Truth:  Breakfast is not a necessary meal and there are health benefits to lengthening the time between the last and first meal of the day, but if breakfast is eaten, it should be low in sugar and starch, i.e. avoid cereal, since cereal causes a severe spike in insulin when eaten after a fast.  Breakfast makes you hungry, because even protein in the morning will raise insulin and cause an eventual abrupt drop in blood sugar that is experienced as hunger.  Why does Oz believe in breakfast?

Truth:  Food intolerances and allergies (rare) are due to missing species of gut bacteria, but these eating problems cannot be fixed by diet alone, since new bacteria (other than dairy probiotics) must be eaten.  Dairy probiotics are only useful to cure lactose intolerance.

Truth:  Hygiene should be minimal, because most people repair damaged gut flora due to antibiotics, for example, by intimate contact with friends and pets.  Antimicrobial soaps and sterile home surfaces prevent gut flora repair, because the vast majority of bacteria killed by hygiene are beneficial.  Appropriate hygiene is a real problem for Oz and he is obsessed with closing toilet covers.

Truth:  Cardiovascular disease starts with inflammation and is aggravated by fat deposits, but statins and lowered serum cholesterol only reduce heart attack risk, because statins have a weak side effect of lowering inflammation.  Diet changes and repair of gut flora, e.g. my Anti-Inflammatory Diet, fish oil supplements and wild fermented foods, are much more effective at reducing inflammation and curing cardiovascular disease without the severe risks of statins.  Oz is slowly becoming skeptical of statins, but still hasn't read the research literature critically.

Truth:  Poor health and most diseases have only minor genetic risk factors, but diet and gut flora are "inherited" directly and shared by the whole family.  When your doctor asks what diseases run in your family, she is asking about your shared gut flora.  Oz still gives the impression that genes are significant in disease and for example asks audience members if relatives have had heart disease.  He should tell them to repair their gut flora!

Summary Diet Truths

Truth:  There is nothing magic about healthy foods.  All that is needed are protein (meat, fish, eggs, dairy, beans, etc.; plant and animal proteins are equivalent), fats (from leaf and meat, not omega-6-rich seeds) and soluble fiber (to feed gut flora) from their original sources to retain naturally abundant micronutrients (vitamins, except C, are usually unimportant.)  That is my Anti-Inflammatory Diet and supplements should not be needed.  Natural, local foods are healthy, but there are no super foods and exotic does not mean better.  Variety does not compensate for low quality.  Your gut flora needs time to adjust, especially to new soluble fiber, so just change foods with the seasons, not daily, and make sure that you are sampling new bacteria in live fermented foods to make your gut community adaptable.

Wednesday, August 5, 2009

Inflammation and Vitamin D Deficiency

Does Dietary Inflammation Reduce Skin Production of Vitamin D?

The media discovered the vitamin D deficiency pandemic last week. Amazingly researchers were recorded on camera saying that the D deficiencies are caused by insufficient exposure to ultraviolet in sunlight and inadequate consumption of vitamin D-laced milk. Have all of these people been avoiding the biomedical journals?

Have they noticed that my tan improved since I started eating anti-inflammatory?

Let’s shine some sunlight on these knowledge deficiencies:
  • Serum vitamin D levels have been dropping (as chronic inflammation has been increasing) over the last three decades -- has something changed in our diets?
  • Vitamin D deficiencies occur globally (not restricted to Northern latitudes or winter) -- related to diet?
  • Women are more vulnerable, because of cultural modesty in some countries, but males are still D-deficient.
  • A subset of people exposed to ample sunshine are still D-deficient.
  • Vitamin D deficient individuals also have elevated TNF.
  • Vitamin D deficiency and inflammation are risk factors in the same diseases.
It seems that the simplest conclusion is that chronic inflammation leads to vitamin D deficiency, even though vitamin D deficiency may also contribute to inflammation.

This also probably means that chronic inflammation makes it harder for skin to produce vitamin D during exposure to sunlight.

One would expect those who are inflamed to get sunburned more readily and people who eat plenty of omega-3 rich seafood probably produce more vitamin D, even if they are not in the sun as much.

Inflammatory starvation (or American fast food) diets high in starch and omega-6 vegetable oils, should produce vitamin D deficiency even on the Equator.

We should not be surprised that inflammatory degenerative diseases are associated with vitamin D deficiency. It would be interesting if vitamin D supplementation to eliminate deficiency, reduced inflammation and reversed degenerative disease.

Do statins reverse vitamin D deficiencies (and improve tanning) as they lower inflammation? [Statin lowering of LDL is unrelated to reduction in cardiovascular disease. Only the anti-inflammatory side-effect is important.]

Does NFkB activation (inflammatory signaling) inhibit vitamin D receptor activity and vice versa?

You can forget all of this confusion, if you just stick with an anti-inflammatory diet (that includes vitamin D supplements) and exercise frequently in the great outdoors.

Tuesday, June 23, 2009

Diet, Nutrition and Health

These are my generalizations (some would say prejudices) from 40 years of experience in plant biochemistry and molecular biology:

Plant Secondary Compounds Are Defensive and Toxic

The development of plant secondary compounds (all of the compounds that are not part of metabolism or structures) is in response to pathogens, herbivores and pollinator/disseminator attractants -- development of these compounds has nothing to do with humans. Examples: Nicotine and caffeine are very toxic to herbivores and are present in plants for protection. Humans learn to play with toxic plant chemicals, just as they have learned to play with fire and explosives.

Plants Are Not There For Us

People have learned to exploit local plants for protection against local human pathogens, but there is no selective advantage to plants (except for domesticated plants) for useful plants to grow near humans. This logic would suggest that rats and mosquitoes, that flourish near human habitations, are there because of their human utility. Human live near places were useful plants grow.

Grains Are Unhealthy

One of the biggest problems with food processing is separating the inflammatory parts = starch and omega-6 oils, from the nutritive parts, the so-called anti-oxidants, vitamins, proteins, etc. Grains, even so-called whole grains, are simply too enriched for starch and inflammatory oils to be healthy. They are not safe to eat in large amounts. Leafy plant parts are healthy, but even those parts are not good in large amounts from a single plant species. Humans are browsers, because the plant secondary compounds are uniformly toxic, but can be tolerated better in a mixture of different toxicities.

Starch Is Inflammatory

Starchy foods should be treated like a fish. The starch should be pared away and discarded, like the fish gut and bones. (The guts and bones could actually be processed to make them nutritious. Not so with the starch. The starch should be fermented.) The potato skin should be eaten and the rest discarded, just as an aphid secretes as honey dew the extra sugar it sucks in from a plant leaf.

Cereals Are Inflammatory

Breakfast cereals are a dietary abomination. They contribute immensely to obesity, inflammation and chronic disease. Oatmeal for cardiovascular health is a total fraud. The fiber might be useful, but the high starch causes cardiovascular disease. Grains/cereal are the foundation of the chronic disease pyramid.

Fructose is Toxic

Fruit juices are another fraud. The juice (fructose) should be removed and discarded. The fructose is very unhealthy. Mice are given type II diabetes for research purposes by feeding them fructose (especially high fructose corn syrup.) Fructose is avoided in the beef industry, because it causes rapid cross-linking of collagen and leads to tough meat. The same thing happens in humans who eat fructose, it causes aging of the skin and other tissues. High fructose corn syrup is a commercial addiction -- it is hugely profitable as a sweetener -- and that is why it is still used, even though it is grossly unhealthy. It will eventually be removed from the market after the industry is protected from subsequent law suits. It is equivalent to the tobacco industry -- too lucrative to eliminate.

Phytic Acid

The active ingredient in fiber that provides its benefits is phytic acid, the same chemical that people are trying to eliminate. Phytic acid acts as a chelator. I don't think it is actually a problem. The problem comes from extracting cations from the phytic acid before it is eaten. Phytic acid should go in saturated, so that it doesn't contribute to deficiencies. The actual problem is that the diet is already low in minerals, because of eating processed foods that are mineral deficient.

Enzymatic Detoxification: P450, Glycosylation and Secretion

Humans are adapted to plant secondary metabolites by the abiltiy to enzymatically detoxify [using p450 and glycosylating (adding glucuronic acid)] and secrete the toxic compounds. These chemical modifications that occur in the intestines and liver are usually effect. They also work on drugs and that is how we eventually clear these compounds from our systems. Grapefruit and black pepper inactivate these enzymes and alter the way we metabolize plant toxins and drugs. The detox enzymes can also convert innocuous compounds into toxins and carcinogens. That conversion is the basis for using liver enzymes in the Ames Test for carcinogens. The activity of the enzymes is dependent on recent diet, so it would make sense to gradually change the amount and type of vegetables that are eaten in a meal to permit the detox system to adjust.

Glucose and Insulin Cause Fat Accumulation

Fat accumulation is dependent on dietary carbohydrates and insulin. Fat and serum lipids accumulates with a high carbohydrate diet and decrease on a low carbohydrate diet. This is more important than the number of calories consumed.

Inflammation Not Serum Lipids Cause CVD: Statin Are Unnecessary

Inflammation is the source of chronic degenerative diseases. Serum lipids are only secondary factors. Statins lower serum lipids, but do not impact cardiovascular health unless they also lower inflammation. Lowering inflammation lowers serum lipids and decreases cardiovascular disease. Statins appear to be a very expensive way of treating cardiovascular disease dependent on their side effect on inflammation. Modest dietary and lifestyle changes are much more effective, cheap and safe than statins.

Thursday, February 26, 2009

Medical Advice Is Just Wrong

Medical advise says to avoid sun, fats and red meat, but to drink lots of water, eat polyunsaturated vegetable oils and focus on the grain-rich bottom of the food pyramid. The medical advice is simply wrong and is not supported by the biomedical literature. A recent article in a major medical journal claims that about 90% of medical advice is not based on clinical research studies, but rather represents the opinions of experts who are supported by the health industry. Most research is conducted to support products. Unfortunately the advice that comes from medical societies is not healthy.

Here I will provide a few examples to illustrate that medical advice is frequently, if not usually, wrong about diet, nutrition, cause of disease, appropriate drug use and whether to spend a few unprotected moments basking in sunshine.

The Sun Is Not the Enemy, but Sun Blockers Can Increase Skin Cancer

Medicine is supposed to provide instructions on how to handle dangerous chemicals and procedures safely and to enhance health. Solar radiation is dangerous and will cause skin cancer if used inappropriately, but solar radiation is also needed to produce vitamin D in skin. The public response to the medical mandate to limit solar exposure to reduce radiation-based skin cancer resulted in increased use of solar-blocking lotions. Unfortunately, the result was that some people spent more time in the sun, assuming that avoiding sun burns meant that they were avoiding skin cancer. Unknowingly they had shifted their skin exposure down from doses sufficient to kill cells and cause inflammation, to levels sufficient to just cause solar mutagenesis -- the lower exposures were optimal for skin cancer production.

Spare the Sun and Spoil the Child

Babies and children are the most sensitive to solar radiation induced skin cancer and need protection from over exposure, but the public response to medical advice has been to avoid prudent exposure to the sun. Now kids in the U.S. are showing symptoms of rickets, a vitamin D deficiency disease common during early industrialization, in which air pollution, urban poverty and factory work limited solar exposure. Babies in strollers are completely covered. One frightening consequence of this over-reaction could be a resurgence of poor bone growth that in the 1920’s resulted in the development of the now-trendy Cesarean section procedure to accommodate women with malformed pelvises due to rickets.

Rickets Is Rampant

Ubiquitous vitamin D deficiencies due to inadequate sun exposure is compounded by inadequate sources of dietary vitamin D and inappropriate medical interventions. Most vitamin D deficiencies go unnoticed, because the typical symptoms of deficiency mimic other forms of inflammation. When serum levels of vitamin D are actually measured and found to be inadequate, supplements of 600-1000 iu/day of vitamin D3 are prescribed. Unfortunately, there is seldom followup testing and a recent study indicates that most treatment for vitamin D deficiencies is inadequate -- much higher doses, ca. 2-5000 iu/day are required to reach optimum levels. Most people are and remain vitamin D deficient.

Scourge of Scurvy

Vitamin C deficiencies are also a problem. Most people get enough vitamin C to avoid losing their teeth (vitamin C is needed for collagen production), but subclinical deficiencies still produce chronic inflammation. The major cellular anti-oxidant is glutathione, but vitamin C is another major defense against reactive oxygen species (ROS). An increase in ROS triggers oxygen stress and inflammation. Deficiency of vitamin C indicates that more vitamin C is being used up than is being replenished in the diet. Numerous metabolic disturbances associated with other deficiencies or infections can result in vitamin C depletion and chronic inflammation. Most people are vitamin C deficient.

Vegetable Oils Are the Problem, Not the Cure

Medical advice to avoid saturated fats in meats and shift to omega-6-rich vegetable oils is a major contributor to chronic inflammation and modern degenerative diseases. The original claimed association between saturated fat consumption and cardiovascular disease was tenuous, but produced a glacial shift in diet toward consumption of omega-6 fatty acids, e.g. corn and soy oils. The medical dependence on measurements and treatments of LDL, has outweighed the actual data in the biomedical literature -- LDL levels are not important in cardiovascular disease. Drugs that lower LDL, serum cholesterol, are only effective in reducing heart disease, if they lower LDL by lowering inflammation. The risk factor is the inflammation, not the LDL level. Agricultural practices that use grain over grass further reduce the omega-3 fatty acid content of meat and increase the inflammatory omega-6 fatty acid level.

Statins Are a Problem, Not the Cure

Statins are broad spectrum disrupters of the function of many different enzymes and proteins. They were originally isolated from fungi based on their ability to poison bacteria, i.e. they are antibiotics. They disrupt fat metabolism and thereby lower LDL levels, but they also cause many undesirable and potentially dangerous side-effects. One of these actions is to block inflammation triggered by activation of the inflammation transcription factor, NFkB. By blocking NFkB activation, some statins lower inflammation and thereby decrease cardiovascular disease. This activity is similar to aspirin, which acts on COX-2 as well as directly on NFkB. Both statins and aspirin (NSAIDs) have multiple activities on numerous areas of cellular metabolism. The activities of both include reduction in inflammation, but they also produce other undesirable side effects. Chronic inflammation is better treated by diet, exercise and traditional herbs and spices, rather than more dangerous statins.

Water Is Miraculous, but just Satisfy Your Thirst

If you are thirsty drink tap water. There is no improvement in health by drinking some extra amount of water each day. Drinking water in plastic bottles from magical sources provides no improvement in health. Much of the “spring water” with designer labels is only locally bottled tap water. The plastic bottles are an ecological disaster and the “purified” water in the bottles is contaminated with compounds leaching from the bottles. If you want a constant source of water, bottle your own tap water. If you want to avoid the minor contaminants added to avoid bacterial contamination of municipal water supplies, use a simple point-of-use filter.

Starch Is the Problem

Starch is rapidly converted into blood glucose and that spike in blood sugar causes major problems. The foundation of the old food pyramid, grains, is no different than table sugar in being hyperglycemic, i.e. rapidly raising blood sugar. A large muscle mass and high physical activity can minimize the rise in blood sugar, by using up the sugar for muscle energy as it enters the blood. Unfortunately, most people do not have enough muscle and are not physically active enough to be protected from the starch and sugars in their diets. The result is chronic inflammation in the form of metabolic syndrome and degenerative diseases, e.g. diabetes, allergies, depression, acne, infertility, cardiovascular disease, autoimmune diseases and cancers.

One slice of white bread with a meal may be too much starch for some people. The maximum for most people is: one half of a ripe banana or one half cup of a starchy entree such as pasta, potato, rice, or one of the two buns on a burger. The starch needs to be spread over several meals. Eating too much starch with a meal produces intense hunger, as the blood sugar rapidly rises, triggers insulin release and a subsequent crash in blood sugar. Don’t believe any of the diets that recommend starches to replace fats. Many “lite” diet foods are more unhealthy than the higher fat originals that they replace. Replacing saturated fats with saturated starch is dangerous. The temporary high blood sugar level produces the increased health risks routinely associated with diabetes.

Insufficient Food Is the Problem -- Insufficient Minerals

It takes only 2-3000 Calories per day to energize most people. That means that most people can eat their day’s worth of calories with the sandwich plate at a fast food restaurant. That meal will provide an overdose of starch and sugar, but will be deficient in vitamins and minerals. A major dilemma is that it takes so little food to provide adequate energy for a low activity lifestyle, that the choice must be made between obesity and vitamin/mineral deficiencies. Eating just enough to satisfy energy needs results in deficiencies, but eating more to avoid vitamin/mineral deficiencies, results in obesity. The only solutions are to eat supplements to supply needed vitamins, minerals, antioxidants, etc. or increase physical activity and body muscle mass, so that more can be eaten without producing obesity. For most people the solution is a combination of increased physical activity and supplements. That combination is also found to reduce inflammation and the associated risk of degenerative diseases.

It’s the Stupid Diet

The obsession of medicine with drugs and invasive procedures provides additional health risks for patients. Many researchers complain in the biomedical literature that there is insufficient focus on the cause of disease and too much emphasis on the study of the impact of specific drugs on disease symptoms. The result is that in most cases the symptoms are treated and the disease becomes chronic. Of course this also means that the patient is a permanent consumer of health care.

The foundation of all healthcare should be to improve the lifestyle of the patient. Diseases don’t just happen. The biggest contributions of immediate family to disease of an individual are not defective genes, but rather defective diet and lifestyle habits. Our healthcare system is too no fault. People are sick because there is something wrong with how they live. They eat too much or they eat the wrong foods. They don’t get enough exercise to develop a healthy muscle system to support their joints. Most importantly, bad diet and lifestyle choices produce chronic inflammation. Drugs can reduce chronic inflammation, but will also produce additional side effects that will also require interventions. It makes more sense to attack the original causes of inflammation.

Every treatment program should address the pervasive contribution of chronic inflammation by including a diet and lifestyle inventory and an assessment of the cause of the disease that is being treated. An appropriate anti-inflammatory diet and a path toward a more active lifestyle should be the foundation of every treatment plan.