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 sorted by relevance for query antibiotic. Sort by date Show all posts
Showing posts sorted by relevance for query antibiotic. Sort by date Show all posts

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.]



Thursday, January 22, 2015

Essential Oils, Phytoalexins, Drugs Are All Antibiotics

---  the other 200 posts  ---
Superbug multidrug resistant plasmid
A recent, informative article by Tori Rodriguez for The Atlantic suggests that,


I want to discuss other ramifications of using essential oils as antibiotics to avoid multiple antibiotic resistant superbugs.

The logic for using essential oils in place of medical antibiotics is compelling: 
  • Essential oils are extracts of plants, which have myriad traditional uses, including food.
  • Most antibiotic use is to increase livestock production. 
  • Antibiotics selectively kill gut bacteria in livestock and make them obese.
  • Antibiotic resistance occurs within a week of use in livestock (or people.)
  • Medical antibiotics are quickly losing efficacy.
  • Antibiotic resistance genes quickly move from agriculture to superbugs to people.
  • Plants/essential oils contain natural antibiotics that kill gut flora and increase livestock productivity.
  • Resistance to essential oil antibiotic activity is slower, because of simultaneous use of multiple antibiotics.

Obesity is a Symptom of Antibiotic Damage to Gut Microbiome
Antibiotics make meat fatter
We may enjoy a fat marbled steak, but the corn and antibiotics used to produce that mouth-watering plate of satiety, is not so healthy.  Corn and antibiotics make that meat on the hoof fit for human consumption, but the cattle are quickly dying and the fat marbling is a symptom of cattle metabolic syndrome.  The corn and antibiotics disrupt the bovine gut microbiota and alter energy flow.  The result is prime beef. 

As It Is with Cattle, so It Is with Middle Americans
General descriptions of Americans with metabolic syndrome and steers ready for the abattoir are similar.  That should not be surprising, because both are caused by damaged gut microbiota and consequences of metabolic syndrome.  Americans routinely damage their gut microbiota with antibiotics (processed food, etc.) and the major symptoms of the resulting gut dysbiosis are chronic inflammation, depression, autoimmune diseases, obesity and metabolic syndrome.  Repairing gut microbiota reverses all of these symptoms. 

But Essential Oils Are Just Natural Antibiotics
Essential oils are natural antibiotics
Is it better to use essential oils than medical antibiotics to fatten cattle or treat Lyme disease or hospital infections such as C. diff.?  Most pharmaceuticals were derived from plants or fungi and were originally used to kill microorganisms, i.e. they were natural antibiotics.  We call these phytochemicals by a variety of names, e.g. antioxidants or essential oils, but they are more appropriately called phytoalexins, all natural, all plant, all toxic antibiotics.  It is entertaining that essential oils have had so many different traditional and pharmaceutical uses, and yet they have always been experienced by microorganisms (and our livers) as simply toxic.  Essential oils do have the significant advantage of being a mixture of antibiotics and might be very useful where pharmaceutical antibiotics have problems.  The toxicity of essential oils, especially toward gut bacteria, should not be ignored.

Resistance to Essential Oils as Antibiotics
Antibiotic resistance develops in sewage
I previously kept track of laboratory strains of bacteria by simply exposing large numbers of the bacteria to an antibiotic and selecting for the rare individual that had already spontaneous mutated (DNA replication error of one in a million).  We could then use the new drug resistant strain in experiments and identify it by its resistance.  The same thing happens to your gut bacteria with an overnight exposure to an antibiotic.  And of course it also occurs immediately in livestock exposed to antibiotics or in sewage plants where tons of antibiotics and gut bacteria are mixed.  Resistance to each of the chemicals in an essential oil also would rapidly occur, if bacteria were exposed to each alone and in a  toxic concentration.  This is repeatedly observed, since commonly used drugs are just individual components of essential oils that have been produced in large amounts in pills and marketed based on their predominant physiological activity, rather than just another antibiotic.  Thus, resistance to a statin or Metformin, as antibiotics, could be easily observed (even on multiple drug resistance plasmids), but is just ignored.

Essential Oils Are just Mixtures of Natural Antibiotics
Statins from fungal antibiotics
The impact of essential oils on gut microbiota is unpredictable, because the composition of essential oils is highly dynamic and so are gut microbiota.  Each component of an essential oil has a different spectrum of toxicities to hundreds of different target proteins to each of the hundreds of different species of bacteria in the human gut.  Ingested essential oils are modified by the detox enzymes of the intestine and liver.  The modified phytochemicals have different toxicities and act as additional antibiotics.  Mixtures of antibiotics, as in essential oils, less likely to select for resistance than individual antibiotics, but an antibiotic is still just an antibiotic, regardless of whether it is straight from the plant or via a pharmaceutical salesman. 

Common Medicines Are the Source of Superbugs

Common meds are antibiotics
Doctors with prescription pads and steers eating antibiotics are blamed, I think unjustly, for the crisis of antibiotic resistance.  The real culprit is you taking NSAIDs, statins, proton pump inhibitors, antidepressants and other common medicines.  Since they are all developed from plant antibiotics, they are still antibiotics, and they still select for antibiotic resistance.  It is important to remember that pharmaceuticals are repurposed natural antibiotics from plants.  The answer to the superbugs that are resistant to all of the common antibiotics is to dramatically reduce the use of all pharmaceuticals.  The initial goal should be a 90% reduction.  Costly pharmaceutical chemicals could be replaced with preventive diets and less disruptive manipulations of gut microbiota, e.g. ingestion of capsules containing freeze-dried gut flora.  This more gentle approach to health care would also provide huge cost savings, as well as vastly improving health.

Thursday, April 22, 2010

Antibiotics, Gut Flora, Food Intolerance and Disease

Cattle Are Finished by Selective Killing of Gut Flora.  The Sickened Animals Store Fat that Grills Great.  People Get Metabolic Syndrome.
The likening of modern humans to potatoes sacked out on a couch is misleading.  The obesity epidemic linked to diets of processed foods more closely resembles the stumbling progression of cattle to abattoir.  Antibiotics and diet systematically lead in both feedlot and food court to gut dysbiosis, immune system failure, hormone disruption, rampant fat accumulation, physical inactivity, depression and the modern suite of chronic diseases.  Healthcare costs escalate, but vet bills, in contrast, are forestalled by a captive bolt pistol.
Background Observations
  • Antibiotics kill bacteria and not humans, because the bacteria have different machinery for making proteins, nucleic acids and cell walls.
  • Antibiotics kill bacterial pathogens and not viruses or fungi.
  • Antibiotics kill helpful bacteria in the gut (gut flora) even more readily than pathogens.
  • Antibiotics are used in meat production to alter gut flora to change animal metabolism;  e.g. cattle treated with antibiotics gain fat.  Protection from disease is secondary.
  • Simple diet means simple gut flora.  Processed foods are simplified foods that simplify gut flora.
  • Probiotics can replace only a small fraction of the gut flora diversity.
  • Gut bacteria control the immune system development in the lining of the gut.
  • Chronic antibiotic use permanently simplifies gut flora and compromises the immune system.
  • The appendix stores gut bacteria as a reserve to replenish gut flora following diarrhea.
  • Diseases based on inflammation and immune system intolerance result from gut dysbiosis (inadequate gut bacteria).
Antibiotics Kill Good Bacteria
This is a rant about antibiotics, not about humane actions.  Humane actions are not the point here, since I am talking about health care and not treatment of agricultural animals.  I am pleading for the rights of gut flora everywhere and antibiotics are the casual killers.  Compromised gut flora is collateral damage in attempting to eliminate bacteria characterized as pathogens.  Every time the pediatrician treats the mother by acceding to her pleas for an antibiotic prescription to silence a howling ear ache and get a good night’s sleep, or the dermatologist treats teen acne with antibiotics, billions and billions of domesticated bacteria die.
Constipation Is a Sign
Countless hours are wasted waiting, because antibiotic-depleted gut flora cannot hydrate and form normal stools.  Probiotics are gulped down, but they supply only a handful of the hundreds of bacterial species that are needed for health.  Yeasts and other fungi that are naturally resistant to antibiotics quickly replace the lost beneficial bacteria in the gut, vagina and on other body surfaces.  Surcease for simple sorrows leads to lingering and lasting laminations.  Don’t mess with mother nurture.
Damage of Antibiotic Use Is Slow
Most of the impact of antibiotic annihilation of bacteria normally present in humans is unobserved, because the deleterious effects lag months behind the initial treatment.  After all, cattle treated with antibiotics to restructure their gut flora to induce bovine obesity, appear to thrive as they rapidly gain weight and avoid symptoms of infectious diseases.  Humans on antibiotics also display fewer dental and incidental infections.  Constipation is not a high price to pay for a better mirror image.  
Antibiotics Compromise the Immune System
Unfortunately, allergies, autoimmune diseases, degenerative diseases and cancers are not usually linked to prior use of antibiotics.  There is no evidence that gut flora recovers  after antibiotic treatment, but constipation as a consequence of chronic antibiotic use is a common indicator of gut dysbiosis, collapse of normal gut flora bacterial communities.  The harbingers of inflammatory and degenerative diseases are present, but are usually discounted, because they are a common consequence of the Western diet.
Food Intolerance Reveals Inadequacies in Gut Flora
Food intolerance is a sign of depleted gut flora diversity.  Gut flora have hundreds of genes that can break down a huge diversity of polysaccharides derived from plant cell walls.  Gut flora of Japanese who routinely consume kelp have specialized enzymes to hydrolyze unusual algal sulfated polysaccharides.  Essentially all of the polysaccharides in plant fiber can be consumed by bacteria in the anaerobic environment of the colon.  Inability of individuals to digest particular food components usually results from a deficiency of the gut flora and an indication of a history of dietary simplification and antibiotic use.  Lactose intolerance, for example, results from depletion of lactose-degrading bacteria from the gut flora and can be remedied by simply eating lactose with probiotics for a couple of weeks.  Gut flora can adapt, but they need persistent exposure to diverse, i.e. non-processed, food.
Antibiotic Allergies Are Natural
Allergies develop from a combination of inflammation and compromised immunological tolerance.  Inflammation heightens processing of antigens for presentation to the immune systems, whereas loss of immunological tolerance means that aggressive immune responses are inadequately controlled.  Thus, innocuous environmental molecules are incorrectly recognized as pathogen components.  Allergies to antibiotics, such as penicillin, make sense, because the antibiotic is used to treat inflammatory infections and the antibiotic treatment eliminates the gut bacteria that are needed to develop gut lymphocytes (Tregs) to produce tolerance.  Antibiotics lay the foundation for immune system dysfunction that is central to many chronic diseases.
Healthy gut flora and a healthy immune system require:
  • avoidance of antibiotics
  • systematic (not simply eating yogurt) rebuilding of gut flora following diarrhea or antibiotic use; lack of an appendix means gut flora reservoir is gone
  • eating a variety of vegetables; avoiding processed food
  • using herbs and spices
  • don’t overdo hygiene; gut flora diversity derives from bacteria that you eat and those that rub off acquaintances
  • eat seasonally to increase diversity

Wednesday, June 24, 2015

Making Monsters, Renegade C. butyricum and E. coli

Clostridium
It is common knowledge that our gut is teeming with good bacteria that we feed with prebiotic fiber to keep us healthy.  But a sick gut, caused by antibiotics or fiber deficient processed food, can make us susceptible to infection with pathogens, such as the notorious, toxin-producing strains of E. coli that cause food poisoning or Clostridium difficile, a.k.a. C. diff. of hospital infections.  What prompted me to write this post, was reading that premature babies in neonatal intensive care units are dying from gut infections caused by a pathogenic strain of C. butyricum, known as a probiotic that provides protection from C. diff.

New Toxin-Producing, Antibiotic Superbugs are Manmade
Closer examination of the report revealed that the new strain of C. butyricum is a toxin producer.  This made a lot of sense to me.  When I started working with E. coli in the early 70’s, it was known as the safe ubiquitous lab bacterium that everyone cultivated in their colons.  Similarly, C. butyricum is present in commercial probiotics and is a hero for producing butyric acid from resistant starch, promoting immune system development and reducing inflammation.  How did these beneficial gut bacteria become converted into pathogens?

Antibiotic and Drug Use in Hospitals and Farms Select for Antibiotic Resistance
C. butyricum and E. coli have been converted into toxin-producing, antibiotic resistant pathogens by common procedures of meat production and hospital treatments.  These bacteria do not normally produce toxins nor are they resistant to antibiotics.  They have been systematically selected for those pathogenic properties.

Common Practices in Neonatal Intensive Care Units Lead to NEC
Chronic inflammation is one of the common contributing factors to premature births, because labor is stimulated by a spike of inflammation, normally occurring at 40 weeks of gestation.  Chronic inflammation from autoimmune disease, infection, or obesity, can cause labor to be early and a newborn to be unprepared for life without some special care.  Unfortunately, there is not uniform enlightenment about the development of newborn gut flora, and immature newborns are exposed to antibiotics and formula, which prevent normal gut flora development.  C. butyricum is not present in low birth weight babies exclusively fed breast milk, but the combination of antibiotics and formula select for colonization by antibiotic resistant hospital strains of C. butyricum.  This sets the stage for necrotizing enterocolitis, NEC, which is as nasty and lethal as the name suggests.

Antibiotics Used to Make Fat Cattle Select for Toxin Production
The development of toxin producing E. coli in cattle suggests how pathogenic C. butyricum was produced in the hospital environment.  E. coli was a healthy component of the digestive system of cattle, until the gut flora community was reengineered by antibiotics, so that short chain fatty acids that were normally converted into more gut bacteria and more steer manure, were instead absorbed by the gut to produce a fatter steak.  Unfortunately, this newly designed gut flora community left no place for E. coli.  Some of the E. coli spontaneously mutated to antibiotic resistance and/or picked up multi-drug resistant plasmids from other bacteria, but that still didn’t provide a niche in the new community.  Picking up a toxin-producing gene solved that problem, because the toxin releases needed nutrients from host cells.  Thus, antibiotic use in cattle directly selected for the evolution of toxin-producing, antibiotic resistant E. coli.


Antibiotics and Formula Use Lead to NEC Bacteria
Toxin-producing C. butyricum would be expected to develop in the hospital environment, because high antibiotic use will select for multiple drug resistant C. butyricum, and the disrupted gut flora produced in the presence of antibiotics will also favor toxin producing strains.  Thus, the hospital environment selects for toxin-producing, multiple drug resistant C. butyricum.  The gut flora of newborns in a neonatal intensive care unit are acquired from the staff and relatives that handle the babies.  Since the babies are routinely treated with antibiotics and drugs, multiple drug resistant bacteria, including C. butyricum, are common in fecal samples of neonates and persist for at least two years. 
Breastfeeding or Donor Bank Milk Avoids NEC Caused by Formula
Exclusive use of breastmilk from mothers, donor banks or breastmilk products, eliminates NEC.   Some hospitals respond to the scientific evidence and use only breastmilk for newborns.  Other hospitals simply stick to old practices until law suits force them to change.  They continue to use formula and cow’s milk products,  even though breastmilk is available, and as a consequence NEC is still a problem. Prejudice against breastmilk persists and there is intense promotion of commercial alternatives that contribute to NEC.  None of the alternatives containing probiotics and prebiotics have been found to be adequate.   Hospitals are slow to change, because patients are uninformed and low birthweight babies continue to die.

Monday, January 19, 2015

Gut Microbiome 2014: Diet, Inflammation, Disease, and Repair

The year 2014 began with my posts on damage to the gut microbiota caused by antibiotics, processed foods and excess hygiene.  I lamented the inadequacy of information from the media on damage/repair of the gut bacteria and highlighted medical myths with a post on some of Dr. Oz’s own ills that are self-inflicted by his diet and hygiene recommendations.  I also started to discuss how to cure autoimmune diseases by repairing damaged gut flora and by avoiding the antibiotic activity present in many common drugs.

With my 200th post in March, I summarized my thoughts on the causes and cures of common diseases in a series of diagrams on:


Health Diagram II   — Curing Autoimmunity and Allergies,



I illustrated the relationships among diet, inflammation and diseases mediated by gut flora that I have discussed, since I started my blog in 2008.  Now after a couple of hundred articles and more than two million visits to my blog, I think that I am starting to grasp some of the major issues that cause inflammatory diseases.  The cures also now seem obvious.

Antibiotics Contribute to Autoimmune Diseases
Some species of gut bacteria are needed for the development of the aggressive half of the immune system and other species are needed for the suppressive half.  Thus, starving or poisoning gut flora leads to immune system problems and diseases.  Antibiotics are a quick way of crippling the immune system.  It seems that the aggressive part of the immune system is less fragile, because in most cases antibiotic treatments produce autoimmune disease due to loss of bacteria that are needed for development of immune cells that block the aggressive half of the immune system from attacking innocuous cells of the body or environment, i.e. antibiotics usually trigger deficient tolerance, and autoimmunity.

Feed the Gut Microbiome for a Healthy Immune System
Diet provides food for the body and flora.  Protein and fat are the macronutrients needed for the body, while the gut microbiota lives off of plant polysaccharides (except starch) that pass through the small intestines undigested into the colon.  The hundreds of plant polysaccharides are hydrolyzed by hundreds of enzymes made by gut flora and produce short chain fatty acids, e.g. acetate and butyrate, that feed colon cells.  Food processing systematically removes polysaccharides that feed gut flora and compromises the components of the immune system dependent on those bacteria.

Repairing the Gut Microbiome by Eating the Missing Bacteria
It is easier to see that eating a diet that lacks food for the gut microbiota will be a problem, than it is to figure out where to find replacements for lost species of gut bacteria.  The only way that bacteria get into the gut is down the throat.  To repair a damaged gut microbiota requires both changing diet and introducing the missing types of bacteria by eating them.  Eating dairy probiotics and fermented vegetables can provide a quick, but only temporary fix.  Most of the needed bacteria are more common in soil than in food.

Phytochemicals Are First and Foremost Antibiotics
I was shocked that my background in phytochemicals didn’t lead more directly to a major culprit causing modern diseases.  The gut microbiota is clearly a major factor in health and sickness.  Antibiotics that kill bacteria, damage the gut microbiota.  It is also unsurprising that processing food to reduce soluble fiber, damages gut flora, by systematically depriving gut bacteria of their major source of food.  The proliferation of antimicrobial products also damages the gut flora.  What I missed in this onslaught of modern lifestyles on the gut microbiota, was the major player in antibiotic resistance — phytochemicals are natural antibiotics. 

I Missed the Antibiotic Activity of Common Medicines
I studied phytochemicals and wrote research articles on their toxic, antibiotic activities, but everyone else was merchandizing phytochemicals as antioxidants, essential oils and superfoods.  This is a major conceptual problem.  Our bodies expend a significant fraction of our energy resources to detoxicify phytochemicals and human cultures have elaborate rituals to avoid phytochemicals and domesticate plants by breeding for the least toxic.  What I missed was the implication that the pharmaceutical industry was repurposing toxic, antibiotic phytochemicals as medicines and then skipping the "antibiotic" label.

Unlabelled Antibiotic Drugs Cause the Rise of Superbugs

Overuse of antibiotics is a problem, because it damages the gut microbiome and contributes to the modern increase in autoimmunity.  Food processing is another culprit and so is the mania for hyperhygiene and the demonization of bacteria.  Unfortunately, the major culprit in the development of multiple antibiotic resistant superbugs is the tons of commonly used pharmaceuticals that systematically attack gut bacteria, but are not labelled as antibiotics.  Most modern drugs were developed from phytochemicals and were initially used in plants to kill bacteria and fungi, i.e. phytoalexins.  Pharmaceutical companies acknowledge the antibiotic activities of common drugs, by sponsoring research conferences to develop existing drugs as new classes of antibiotics for treatment of superbugs.

Monday, October 6, 2008

Chronic Disease and Bacteria

There is increasing evidence that many, if not all, chronic degenerative and autoimmune diseases have a bacterial component and that antibiotics may be much more broadly useful.

Antibiotics are fed to children with ear infections, fed to cattle to fatten them, sprayed on apple orchards to stop fireblight and used to treat AIDS patients with nuisance to nasty infections. Bacteria are in many ways better adapted for exploiting nutrients than plants or animals, but antibiotics level the playing field.

Fungi have the same problems with bacteria stealing their food and they have adapted their biochemistry to kill off competing bacteria with their antibiotics, while they digest the world around them with enzymes. Thus, the classic antibiotic, penicillin, is made by a green mold and this antibiotic kills bacteria by mimicking one of the ingredients used to make bacterial walls -- the unsuspecting bacterium incorporates the penicillin into its wall and the compromised wall stretches apart. Bacteria grow themselves to death in the presence of penicillin.

Antibiotics discriminate between bacteria and us, because the bacteria use different molecular machinery, e.g. ribosomes, cell walls, than we do. So antibiotics kill bacteria and our cells are spared. Some antibiotics are somewhat specific and can be used to kill just certain types of bacteria, while other antibiotics are broad spectrum and rather indiscriminate.

Use of antibiotics is problematical, because most of our bacteria are necessary for our health. Antibiotics kill a substantial fraction of the beneficial bacteria that live in and on us, and leave us exposed to opportunistic pathogens and parasites. Everyone is familiar with yeast infections following a course of antibiotics and the rapid acquisition of hospital strains of antibiotic resistant bacteria.

Another problem with antibiotics is that they fail to reach every nook and cranny of the body. Sinuses, for example, provide vast distances that separate bacteria from the blood stream. Similarly, pieces of metal that pierce cartilage can produce bacterial infections that can’t be reached by antibiotics, because cartilage inhibits capillary production, so their is no blood circulation to carry the antibiotics to the bacteria. In the same way, the depletion of capillaries in the extremities of diabetics with poorly controlled blood sugar, makes infections difficult to treat with antibiotics.

Even under the best of conditions it is difficult for antibiotics to reach lethal concentrations for resident bacteria and biofilms make survival of bacteria certain. Bacteria have adapted to the hostile environment of human tissue by making structured colonies. The outer layers of bacteria are sacrificed to spare the inner, proliferating bacteria. Bacterial biofilms are highly resistant to antibiotics and to attack by the cellular defenses of the immune system. Unfortunately the bacteria in biofilms, and in other forms adapted to human tissue and have a different metabolism and stain differently from the same bacteria grown on laboratory agar plates. Thus, it is quite possible for pathogenic bacteria to be undetectable and fail to be associated with a particular disease.

Bacteria may avoid scrutiny by pathologists, but they cannot fail to release cell wall fragments and debris, which triggers inflammation and other responses from the surrounding tissue. Numerous researchers have implicated mycobacteria, chlamydia and many other bacteria as causal agents of degenerative and autoimmune diseases -- there is a distinct correspondence between inflammatory diseases and these bacterially-associated diseases. There are also recent patents supported by provocative experimental data, that claim that aggressive antibiotic treatments (usually supported by anti-inflammatory lifestyles and diets) can cure these diseases.

I expect that antibiotic cures for many degenerative and chronic diseases will be demonstrated with a huge accompanying upheaval of traditional medicine. There will be, and there has been for the last century, substantial resistance to antibacterial approaches. Even though Helicobacter pylori was implicated as the causal agent of ulcers, antacids and blockers of acid production persist as the predominant treatment. The role of bacteria in chronic disease will be substantiated, but for me the lingering question will be, “where are the bacteria that are being treated?” I still think that the best candidate is the gut. Afterall, the gut is the body’s major interface with the outside world and there is a compelling research literature on the impact of gut flora on health and disease.

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%.

Thursday, January 29, 2015

Healthy Gut Microbiota Means: No Supplements, No Cleanses, No Drugs, No Processed Foods

A healthy, functional gut microbiota (bacteria and fungi) supplies all of the vitamins needed, stimulates the development of a balanced immune system and promotes vitality.  If you feed and maintain the diversity of the pounds of bacteria in your gut, you will be healthy.  If you listen to the medical and food industries, you will be sick, i.e. a good patient/consumer.

Supplements Compensate for Deficiencies/Sickness
The key to this discussion is the functions of the healthy communities of bacteria and fungi called the gut microbiota.  These pounds of bacteria produce all of the vitamins that your body needs, and spiking your diet with multivitamins may disrupt your microbiota, because vitamins are actually the chemical signals used for communications between bacteria in biofilms.  Numerous studies have shown that daily multivitamins are not beneficial, so if you see extra vitamins on the ingredients label, try some whole foods instead.  If, however, you have been exposed to antibiotics or other medications, since most have potent antibiotic activities, then your gut bacteria may not be producing vitamins normally, and you may need to supplement.  Vitamin deficiencies are a symptom of gut dysbiosis, damaged gut microbiota.

Vitamin D is a Steroid Hormone Produced from Cholesterol in Skin by Sunlight
Most people know that sunlight striking skin produces vitamin D, but they still think that they can get a significant amount of vitamin D from their diet.  The confusion comes from the fact that vitamin D is a major hormone that influences many body systems including bone production and immunity.  So in the absence of skin production of vitamin D, the low amounts added to milk are sufficient to prevent deficiency/rickets.  However, chronic inflammation can block solar production of vitamin D, so that even individuals near the equator and basking daily still remain deficient.  Vitamin D deficiency may also, insidiously, be a major source of chronic inflammation.  Thus, most individuals treated for deficiency with supplemental vitamin D3, do not reach high enough levels to suppress chronic inflammation and restart solar production, so they remain deficient.  Chronic inflammation is a symptom of vitamin D deficiency.

Bowel Cleanses Damage Gut Microbiota
The bowels are a long tubelike conveyance and it takes food about a day to travel from table to toilet.  In the colon, all of the plant polysaccharide fibers remaining after removal of sugar, starch, fat and protein, are digested by enzymes of the microbiota and converted into more bacteria and short chain fatty acids that feed the colon tissue. There is nothing toxic left behind in the colon. Protein from meat is readily digested in the stomach and the first part of the small intestines.  Plant materials cannot be digested without the help of a complex array of hundreds of enzymes produced by gut bacteria.  Food intolerances are caused by the loss of particular bacterial species needed for complete digestion of one type of plant fiber.  The bacteria form the stools, and insufficient healthy bowel bacteria, normally fed by the fiber, is the cause of constipation.  Clearly, flushing out bacteria with a "cleanse" is unhealthy and counterproductive.  There is nothing in the colon but gut bacteria and fiber to feed the bacteria. Those bacteria are needed for vitamin production, normal development of the immune system and normal stools.  A cleanse merely removes healthy gut bacteria and leads to constipation or replacement by pathogens. 

Processing Removes Prebiotic Fiber from Food and Starves Gut Microbiota
Diverse and complex plant polysaccharides, e.g. pectin, arabinogalactan, various glucans and fructans, are systematically digested by hundreds of different bacterial enzymes of the healthy gut microbiota.  The sugars that result are eventually converted into short chain fatty acids, such as butyrate, that feed the cells lining the colon.  The plant polysaccharides that feed gut bacteria are called prebiotics.  Unfortunately, prebiotics are removed during food processing to enhance ease of preparation and palatability.  The result of decreased dietary prebiotics is selective starvation and removal of bacterial species needed for the development of the immune system, and autoimmune diseases.

Most Medicines Have Substantial Antibiotic Activity and Damage Gut Microbiota
It is not surprising that antibiotics damage the bacteria in the gut.  What most people don’t realize is that most pharmaceuticals/medicines are developed from the natural antibiotics of plants, phytoalexins.  Numerous recent studies have demonstrated most common medicines, e.g. statins, NSAID, antidepressants, etc. have substantial antibiotic activity and damage gut bacteria.  Surgeons commonly suggest that patients eat yogurt to help repair their gut micro biomes after operations and antibiotics, but they don’t tell them how to fix their gut and immune system as they take medications for the rest of their lives.  The permanently damaged gut just causes further deterioration of the immune system and health.

Damaged Gut Microbiotas/Immune Systems Can Be Fixed
I have several other posts on repair of gut microbiota.


Examination of antimicrobial activity of selected non-antibiotic medicinal preparations.
Kruszewska H1, Zareba T, Tyski S.   Acta Pol Pharm. 2012.  69(6):1368-71.