Another interview with Livin' La Vida Low Carb's Jimmy Moore

I recently provided another interview for Livin' La Vida Low Carb's Jimmy Moore.

You may remember Jimmy as the irrepressible host of the Livin' La Vida Low Carb Show who lost around 200 lbs, dropping from 410 to 230 lbs on a low-carbohydrate diet.

In this hour-long interview, we discussed some of the dietary strategies that we use in the Track Your Plaque program.

Jimmy's website is definitely worth exploring. It's loaded with great interviews, including with Good Calories, Bad Calories author, Gary Taubes.

"Millions of needless deaths"

"Millions of needless deaths" is the title of an editorial by Life Extension Magazine's Bill Faloon.

". . . If vitamin D’s only benefit was to reduce coronary heart attack rates by 142%, the net savings (after deducting the cost of the vitamin D) if every American supplemented properly would be around $84 billion each year. That’s enough to put a major dent in the health care cost crisis that is forecast to bankrupt Medicare and many private insurance plans."

Although I don't agree with all the over-the-top commentary that issues from Mr. Faloon or Life Extension (although I sit on their Medical Advisory Board), I agree with virtually all of the issues he raises with vitamin D.

Despite the enormously compelling observations of vitamin D potential effects in populations, the medical community's reluctance comes from the lack of treatment data. In other words, what we lack are long-term data on vitamin D supplementation vs. placebo on rate of heart attack, vitamin D vs. placebo on risk of colon cancer, etc.

The data that exists connecting vitamin D levels with cardiovascular risk originate from three population observations:

1) The NHANES data in 16,000 participants showed 20% increased risk of cardiovascular events in those with vitamin D levels <20>20 ng/ml after factoring in all standard risk factors.

Another NHANES analysis showed the high prevalence of vitamin D deficiency in those with cardiovascular disease.

2) A German study of 2500 participants that showed showed the lowest quartile of vitamin D levels (<13.3>28.4 ng/ml.

3) The Health Professionals' Follow-Up Study of 18,000 males showed a 2.4-fold increase in cardiovascular events in those with vitamin D levels <15>30 ng/ml.

While we lack treatment data (vitamin D vs. placebo) in a large population, we do have data that Suzie Rockway, Mary Kwasny (both from Rush University, Chicago) and I generated on the effect of vitamin D as a part of a broader treatment program on coronary calcium scores:

Effect of a Combined Therapeutic Approach of Intensive Lipid Management, Omega-3 Fatty Acid Supplementation, and Increased Serum 25 (OH) Vitamin D on Coronary Calcium Scores in Asymptomatic Adults.
Davis W, Rockway S, Kwasny M. Amer J Ther 2008 (Dec 15).

The impact of intensive lipid management, omega-3 fatty acid, and vitamin D3 supplementation on atherosclerotic plaque was assessed through serial computed tomography coronary calcium scoring (CCS). Low-density lipoprotein cholesterol reduction with statin therapy has not been shown to reduce or slow progression of serial CCS in several recent studies, casting doubt on the usefulness of this approach for tracking atherosclerotic progression. In an open-label study, 45 male and female subjects with CCS of >/= 50 without symptoms of heart disease were treated with statin therapy, niacin, and omega-3 fatty acid supplementation to achieve low-density lipoprotein cholesterol and triglycerides /=60 mg/dL; and vitamin D3 supplementation to achieve serum levels of >/=50 ng/mL 25(OH) vitamin D, in addition to diet advice. Lipid profiles of subjects were significantly changed as follows: total cholesterol -24%, low-density lipoprotein -41%; triglycerides -42%, high-density lipoprotein +19%, and mean serum 25(OH) vitamin D levels +83%. After a mean of 18 months, 20 subjects experienced decrease in CCS with mean change of -14.5% (range 0% to -64%); 22 subjects experienced no change or slow annual rate of CCS increase of +12% (range 1%-29%). Only 3 subjects experienced annual CCS progression exceeding 29% (44%-71%). Despite wide variation in response, substantial reduction of CCS was achieved in 44% of subjects and slowed plaque growth in 49% of the subjects applying a broad treatment program.


I also summed up the data as of early 2008 in a Life Extension article:

Vitamin D's Crucial Role in Cardiovascular Protection


I do agree with Mr. Faloon: It's time to take the vitamin D issue very seriously. Personally, I think it is foolhardy to not correct vitamin D deficiency, even in the absence of long-term treatment data.

Should we subject people living in tropical climates with vitamin D blood levels of 90 ng/ml to long-term observation? Though that has not yet been done, it has been done--in effect--through observations on the prevalence of diabetes, heart disease, and various cancers by latitude: the farther away from the equator, the greater the prevalence of these diseases.

That's more than good enough for me.

Thiazide diuretics: Treatment of choice for high blood pressure?

Thiazide diuretics are a popular first-line treatment for hypertension among the primary care set.

This practice became especially well-established with the 2002 publication of the ALLHAT Study (Major Outcomes in High-Risk Hypertensive Patients Randomized to Angiotensin-Converting Enzyme Inhibitor or Calcium Channel Blocker vs Diuretic:The Antihypertensive and Lipid-Lowering Treatment to Prevent Heart Attack Trial (ALLHAT)).

ALLHAT showed that an inexpensive diuretic like chlorthalidone (a weak diuretic in the thiazide class, similar to hydrochlorothiazide) as first-line treatment for hypertension achieved equivalent reductions in cardiovascular events (cardiovasular death and heart attack) as non-thiazide antihypertensives, lisinopril (an ACE inhibitor) and amlodipine (a calcium channel blocker, better known as Norvasc).

After 7 years of treatment, there was 14% death or heart attack among all three groups--no difference.

This was interpreted to mean that inexpensive thiazide diuretics like chlorthalidone offer as much benefit as other blood pressure medications at reduced cost.

On the surface, that's great. Anything that detracts from the ubiquitous pharmaceutical industry propaganda of bigger, better, more expensive drugs to replace old, inexpensive, generic drugs is fine by me.

But you knew there'd be more to this issue! If we accept that thiazides are equivalent to other single-drug treatments for high blood pressure, what do we do with the following issues:

--Thiazides deplete body potassium-This effect can be profound. In fact, built into the ALLHAT mortality rate is an expected death rate from potassium depletion. When potassium in the body and blood go low, the heart becomes electrically unstable and dangerous rhythms develop.

--Thiazides deplete magnesium--Similar in implication to the potassium loss, magnesium loss also creates electrical instability in the heart, not to mention exaggeration of insulin resistance, rise in triglycerides, reduction in HDL.

--Thiazides reduce HDL cholesterol

--Thiazides increase triglycerides

--Thiazides increase small LDL particles--You know, the number one cause for heart disease in the U.S.

--Thiazides increase uric acid--Uric acid is increasingly looking like a coronary risk factor: The higher the uric acid blood level, the greater the risk for heart attack. Thiazides have long been known to increase uric acid, occasionally sufficient to trigger attacks of gout (uric acid crystals that precipitate in joints, like rock candy). (Fully detailed Special Report on uric acid coming this week on the Track Your Plaque website.)

What about the advice we commonly give people to hydrate themselves generously? Yet we give them diuretics? Which is it: More hydration or less hydration? You can't have both.

Do thiazides exert an apparent cardiovascular risk reduction in a society due to its flagrant sodium obsession?

Thus, there are a number of inconsistencies in the thinking surrounding thiazides. In my experience, I have seen more harm done than good using these agents. While I cannot fully reconcile the reported benefit seen in ALLHAT with what I see in real life, all too often I see people having to take another drug to make up for a side-effect of a thiazide diuretic (e.g., high-dose prescription potassium to replace lost potassium, allopurinol to reduce uric acid, etc.). I have seen many people get hospitalized, even suffer near-fatal or fatal events from extremely low potassium or magnesium levels.

My personal view: ALLHAT or no, avoid thiazide diuretics like the plague. Sure, it might save money on a population basis, but I suspect that the ALLHAT data are deeply misleading.

What's better than a thiazide, calcium blocker, or ACE inhibitor? How about vitamin D restoration, thyroid normalization, wheat elimination?

"High-dose" Vitamin D

I stumbled on one of the growing number of local media stories on the power of vitamin D.

In one story, a purported "expert" was talking about the benefits of "high-dose" vitamin D, meaning up to 1000, even 2000 units per day.

I regard this as high-dose---for an infant.

Judging by my experiences, now numbering well over 1000 patients over three years time, I'd regard this dose range not as "high dose," nor moderate dose, perhaps not even low dose. I'd regard it as barely adequate.

Though needs vary widely, the majority of men require 6000 units per day, women 5000 units per day. Only then do most men and women achieve what I'd define as desirable: 60-70 ng/ml 25-hydroxy vitamin D blood level.

I base this target level by extrapolating from several simple observations:

--In epidemiologic studies, a blood level of 52 ng/ml seems to be an eerily consistent value: >52 ng/ml and cancer of the colon, breast, and prostate become far less common; <52 ng/ml and cancers are far more likely. I don't know about you, but I'd like to have a little larger margin of safety than just achieving 52.1 ng/ml.

--Young people (not older people >40 years old, who have lost most of the capacity to activate vitamin D in the skin) who obtain several days to weeks of tropical sun typically have 25-hydroxy vitamin D blood levels of 80-100 ng/ml without adverse effect.

More recently, having achieved this target blood level in many people, I can tell you confidently that achieving this blood level of vitamin D achieves:

--Virtual elimination of "winter blues" and seasonal affective disorder in the great majority
--Dramatic increases in HDL cholesterol (though full effect can require a year to develop)
--Reduction in triglycerides
--Modest reduction in blood pressure
--Dramatic reduction in c-reactive protein (far greater than achieved with Crestor, JUPITER trial or no)
--Increased bone density (improved osteoporosis/osteopenia)
--Halting or reversal of aortic valve disease

(I don't see enough cancer in my cardiology practice to gauge whether or not there has been an impact on cancer incidence.)

My colleagues who have bothered to participate in the vitamin D conversation have issued warnings about not going "overboard" with vitamin D, generally meaning a level of >30 ng/ml.

I know of no rational basis for these cautions. If hypercalcemia (increased blood calcium) is the concern, then calcium levels can be monitored. I can reassure them that calcium levels virtually never go up in people (without rare diseases like sarcoid or hyperparathyroidism). Then why any hesitation in recreating blood levels that are enjoyed by tropical inhabitants exposed to plentiful sun that achieve these extraordinary health effects?

For the present, I have applied the target level of 60-70 ng/ml without apparent ill-effect. In fact, I have witnessed nothing but hugely positive effects.

Vitamin D Home Test

The ever-resourceful Dr. John Cannell of the Vitamin D Council has announced the availability of an at-home, self-ordered vitamin D test kit for $65. The Vitamin D Council newsletter is reprinted below.

(However, please note that, as wonderful as the advice Dr. Cannell provides, I don't agree on several small points, such as the lack of need for vitamin D if you use a tanning bed or obtain "sufficient" sun; I have seen many people with dark tans, virtually all over 40 years old, who are still severely deficient. I attribute this to the lost capacity for vitamin D activation as we age.)

I have not used this service. Should anyone choose to try it, please let us know how it goes.



The Vitamin D Newsletter
December 28, 2008

The Vitamin D Council is happy to announce that we have partnered with ZRT Laboratory to provide an inexpensive, $65.00, in-home, accurate, vitamin D [25(OH)D] test. The usual cost for this test is between $100.00 and $200.00.

If you read this newsletter, you know about our interest in accurate vitamin D testing. In the next few weeks, you may read about the Vitamin D Council's quest for accurate vitamin D blood tests in the national media. Before we partnered with ZRT, we verified, repeatedly, that ZRT provides accurate and reliable vitamin D tests and that their method corresponds very well to the gold standard of vitamin D blood tests, the DiaSorin RIA.

Our ZRT service is not just inexpensive, it means no more worrying about your doctor ordering the right test or interpreting it correctly. You buy the test kit on the internet or by phone, a few days later the kit comes in the mail, you or a nurse friend do a finger stick, collect a few drops of blood, and send the blotter paper back to ZRT in the postage paid envelope provided with the kit. A week later you get results back in the mail and know accurate 25-hydroxy-vitamin D levels of you and your family.

For every test you order, ZRT will donate $10.00 to the Vitamin D Council. Please read the new page hyperlinked below on our website as it both explains the procedure and how to order the test.

http://www.vitamindcouncil.org/health/deficiency/am-i-vitamin-d-deficient.shtml

Executive summary: keep your family's 25-hydroxy-vitamin D blood test above 50 ng/ml, year around. Most adults need at least 5,000 IU per day, especially this time of year. Most children need at least 1,000 IU per day per every 25 pounds of body weight. Bio Tech Pharmacal provides high quality and inexpensive vitamin D. Currently Bio Tech Pharmacal is providing vitamin D for numerous scientific studies. To see their prices and for ordering, click the hyperlink below.

http://www.bio-tech-pharm.com/catalog.aspx?cat_id=2

As a gift to our readers for the New Year, Thorne publications have provided a free download to a basic paper about vitamin D. I wrote it earlier this year for educated lay people as well as health care practitioners. Please read this paper carefully, your family's well-being, even lives, may depend on you understanding it.

http://www.thorne.com/altmedrev/.fulltext/13/1/6.pdf

Seasons Greetings
John Cannell, MD
vitamindcouncil.org

Where do Track Your Plaque membership revenues go?

People pay about $90 per year to become Members on the Track Your Plaque website. This provide access to our in-depth Special Reports, guides, webinars, and our proprietary software data tracking tools. Members can also participate in online discussions, such as those in the Track Your Plaque Forum and chats.

Why is there a charge for membership in the program and where does the money go?

Money raised from membership fees goes towards:

1) The costs of doing business, e.g., server fees, software purchases, legal fees. Hosting webinars, for instance, costs us about $99 per month for the GoToWebinar software service.

2) Software development--Our most recent round of software data tracking tools, for instance, cost us nearly $30,000. That may not be a lot from big business standards, but it is onerous enough that obtaining membership dues really helps.

3) Graphics development--A website without graphics would be awfully dull, regardless of the quality of the textual content. Some of the newest tools on the Track Your Plaque website require photography and graphics work, which can add up very quickly.


Where membership fees do NOT go:

1) In our pockets--In fact, except for the various contractors who are paid for their services (e.g., software developers), NOBODY on the Track Your Plaque staff are paid: not me, nor any of the behind-the-scenes staff. Some of the staff overlap with my office staff, but they are paid purely out of the office revenues, not out of Track Your Plaque membership dues.

2) Towards overhead costs beyond those listed above--For example, membership fees do not pay for office lease, utilities, phones, etc.


We rely on membership fees because we have chosen to remain as free of commercial bias as possible. We host no advertising, we have no behind-the-scenes corporate or institutional agendas, we show no favoritism to any business or commercial operation. We believe this permits editorial freedom that few other health websites can enjoy. (In fact, I know of no other that is so free of commercial bias, outside of small blogs or narrow-interest websites.)

If you want to see what damage commercial bias can create, just go to a health website like WebMD. I challenge you to find information that is not flagrantly biased by commercial influence, namely that of the drug industry. (According to the WebMD SEC filings, in fact, the great majority--approximately 80%--of their $331 million revenues (2007) were derived directly or indirectly from the drug industry.) This commercial bias reaches into all of WebMD's related businesses, including MedicineNet.com, RxList.com, Medscape.com, and several others.

Preventing heart disease is not a money maker, sad to say. It is, from the perspective of conventional heart care, a big money loser. Undergo a heart catheterization, hospitalization, stent or bypass for anywhere from $14,000 to well over $100,000---or pay $90 for in-depth health information that dramatically reduces the potential need for the hospital and its procedures, minimizes need for prescription medication (statins alone, of course, are a $27 billion annual revenue phenomenon), and achieves all this by maximizing nutrition, self-purchased nutritional supplements, and inexpensive heart scans. Nobody is going to make a bundle off of this approach.

So that is why we charge a membership fee. I often get a laugh from some of the comments of people on this blog or even in my office who believe that we are rolling in money from the website from membership dues. The opposite is true: We don't pay ourselves. Virtually every penny is reinvested back into the website to better serve the Members.

Getting your dose of fish oil right

Confusion often stems from the simplest of calculations: dose of fish oil.

Actually, you and I don't take fish oil for fish oil. We take fish oil for its content of omega-3 fatty acids, the dominant ones being EPA and DHA. The contents of fish oil outside of its EPA + DHA content likely exert little or no benefit (beyond that of other dietary oils).

To determine what you are currently taking, simply examine the back of your fish oil bottle and look for the EPA + DHA composition. This should be clearly and prominently labeled. If not, don't buy that brand again. Add up the EPA + DHA content per capsule, then multiply by the number of capsules you take per day. That yields your daily EPA + DHA intake.

The only other substantial source of omega-3 fatty acids is fish. Other food sources, such as non-fish meats, eggs, etc., contribute little or none. Processed foods that bear health claims of "contains heart healthy omega-3" often contain linolenic acid or flaxseed oil, which contributes very little to total EPA + DHA, or contain relatively trivial quantities of DHA. What are you doing eating processed foods, anyway?

What should the total daily dose of EPA + DHA dose be? That depends on what your goals are.

If your goal is to modestly reduce the risk of dying from heart attack, then just eating fish a couple of times per month will begin to exert an effect, or just taking a dose of 300 mg EPA + DHA per day from a low-potency capsule will do it. However, that's an awfully unambitious goal.

Our starting omega-3 dose in the Track Your Plaque program has, over the years, increased and now stands at 1800 mg EPA + DHA per day. However, the dose for 1) full reduction of triglycerides and/or triglyceride-containing abnormal lipoproteins, 2) reduction of Lp(a), and 3) the ideal dose for coronary and carotid plaque control are substantially higher.

But once you know your desired daily target of total EPA + DHA, you can easily determine the quantity of capsules to take by doing the above arithemetic, totaling the EPA + DHA per capsule. For example, if you have been instructed to take 6000 mg per day EPA + DHA, and your capsule contains 750 mg EPA + DHA, then you will need to take 8 capsules per day (6000/750).

Flat tummy . . . or, Why your dietitian is fat

When I go to the hospital, I am continually amazed at some of the hospital staff: 5 ft 4 inch nurses weighing over 200 lbs, etc.

But what I find particularly bothersome are some (not all) hospital dietitans--presumably experts at the day-to-day of healthy eating--who waddle through the halls, easily 40, 50, or more pounds overweight. It is, to say the least, credibility-challenging for an obese dietitian to be providing nutritional advice to men or women recovering after bypass or stent while clearly not in command of nutritional health herself.

What's behind this perverse situation? How can a person charged to dispense "healthy" nutritional information clearly display such clear-cut evidence of poor nutrition?

How would you view a success coach dressed in rags? Or a reading coach who can barely read a sentence?

Easy: She follows her own advice.

Hospital dietitians are essentially forced to adhere to nutritional guidelines of "official" organizations, such as the American Heart Association and the USDA. There is some reason behind this. Imagine a rogue dietitian decides to advocate some crazy diet that yields dangerous effects, e.g., high-potassium diets in people with kidney disease. There is a role for oversite on the information any hospital staff member dispenses.

The problem, of course, doesn't lie with the dietitian, but with the organizations drafting the guidelines. For years, the mantra of hospital diets was "low-fat." More recently, this dated message has begun--only begun--to falter, but now replaced with the "healthy, whole grain" mantra. And that is the advice the hapless dietitian follows herself, unwittingly indulging in foods that make us fat.

Sadly, the "healthy, whole grain" message also contributes to heart disease via drop in HDL, increased triglycerides, a huge surge in small LDL, rise in blood sugar, increased resistance to insulin, tummy fat, and diabetes. Yes, the diet provided to survivors of heart attack increases risk.

The "healthy, whole grain" message also enjoys apparent "validation" through the enormous proliferation of commercial products cleverly disguised as healthy: Cheerios, Raisin Bran, whole grain bread, whole wheat pasta, etc. The "healthy, whole grain" message, while a health disaster, is undoubtedly a commercial success.

I'll bet that our fat dietitian friend enjoys a breakfast of healthy, whole grains in skim milk, followed by a lunch of low-fat chicken breast on two slices of whole grain bread, and ends her day with a healthy meal of whole wheat pasta. She then ascribes her continually climbing weight and size 16 figure to slow metabolism, lack of exercise, or the once-a-week piece of chocolate.

Wheat has no role in the Track Your Plaque program for coronary plaque control and reversal. In fact, my personal view is that wheat has no role in the human diet whatsoever.

More on this concept can be found at:

What's worse than sugar?

The Wheat-Deficiency Syndrome


Nutritional approaches: Large vs. Small LDL

Are you wheat-free?

Statin drug revolt

I sense a growing revolt against the intrusion of statin drugs into our lives.

No doubt, the statin drug industry is, at least from an economic perspective, a huge success: $27 billion annual revenues at last accounting. The latest big plug for more and more statins was the JUPITER trial that showed reduced cardiovascular events on Crestor in people with "normal" LDL cholesterol levels and increased c-reactive protein.

It seems that not one day passes that doesn't include some news story about the "benefits" of statin drugs: reduction in heart attack, stroke, colon cancer, osteoporosis, heart failure, etc.

Ironically, the overwhelming economic success of the statin drug industry also seems to be encouraging a grassroots revolt.





More and more people are coming to the office, more people commenting on the web over how they want to avoid statin drugs, stop a drug they are already taking, or at least reduce the dose of an ongoing drug.

My day-to-day experience with coronary plaque control and reversal is that, while statin drugs are helpful tools, they are not necessary tools for full benefit of a prevention program. "Need" for statin drugs can differ by the patterns measured, though not the usual patterns suggested by the drug industry. For instance, using C-reactive protein, a la JUPITER, as justification for statin prescription is, in my view, totally absurd and makes no sense whatsoever, since inflammatory responses can be effective reduced with plenty of other strategies besides statin drugs. Conventional LDL, likewise, is a fictitious number that often bear little or no resemblance to the true and genuine measured value (apoprotein B or LDL particle number).

So here are a number of strategies that can help reduce or eliminate the "need" for a statin drug:

--Elimination of wheat and cornstarch--This is no namby-pamby dietary strategy, as low-fat diets were. This is a powerful, enormously effective strategy, particularly if LDL is in the small category. Small LDL drops like a stone when these foods are eliminated. This means no breads, pasta, breakfast cereals, pretzels, crackers, chips, tacos, wraps, etc.
--Non-wheat fibers--Especially raw nuts, ground flaxseed, and oat bran.
--Vitamin D restoration
--Fish oil
--Weight loss
--Niacin

There are additional strategies that focus on specific subsets of LDL cholesterol (e.g., Lp(a) masquerading as LDL). But the above list can reduce LDL cholesterol substantially, reducing the apparent "need" for a statin drug.

You will notice that there are few money makers in the above list, compared to the billions of dollars reaped by the statin drug industry. There is therefore little incentive to allow a pretty sales rep to go to your doctor and pitch the use of over-the-counter vitamin D or make changes in diet.

Statin drugs in my view need to be shoved back into their more limited role as drugs to be used on occasion when necessary (e.g., heterozygous familial hypercholesterolemia with LDL cholesterol values of 250 mg/dl in a person with measurable coronary plaque). These should never have achieved the "celebrity" status they enjoy, complete with gushing endorsements by TV personalities, daily news stories, and back-to-back TV commercials.

Join the revolt!

Lovaza Rip-off

Lovaza is GlaxoSmithKline's prescription fish oil, an ethyl ester modification to allow higher concentration of omega-3 fatty acids, EPA + DHA, per capsule. Each capsule contains 840 mg EPA + DHA.

It is FDA-approved for treatment of high triglycerides (>500 mg/dl). In their marketing, they claim "Unlike LOVAZA, dietary supplements are not FDA approved to treat any disease." They also highlight the "patented five-step" purification process that eliminates any concerns over mercury or pesticide residues.

What does Lovaza cost? In Milwaukee, it costs about $70 per capsule per month (PCPM). Most people are taking four capsules per day: $280 per month, or $3360 per year to obtain 3360 mg of EPA + DHA per day. (Funny coincidence with the numbers.)

Did you catch that? $3360 per year, just for one person to take Lovaza.

What if I instead went to Costco and bought their high-potency fish oil. This is also an ethyl ester form. It costs $14.99 for 180 capsules, or $2.50 PCPM; each capsule contains 684 mg EPA + DHA. I would therefore have to take five capsules per day to obtain the same 3360 mg EPA + DHA per day. This would cost me 5 x $2.50 = $12.50 per month, or $150 per year.

$3360 per year vs. $150 per year to obtain the same dose of omega-3 fatty acids, or a 22.4-fold difference.

Lovaza is FDA-approved for treatment of high triglycerides. But I am seeing more and more people take it for other reasons at this four-capsule-per-day dose. Regardless, this "drug" is adding $3360 per year costs to our healthcare. A school teacher, for instance, recently commented to me that she didn't care about the costs, since her insurance (in Milwaukee county, teachers have unbelievably generous healthcare coverage) covers Lovaza. I've heard this from others: insurance covers it, so they don't care how much it costs.

Guess who eventually has to pay the $3360 per year per person costs? Yup, you and me. We all bitch and moan about the costs of healthcare and health insurance, but many of us are more than willing to shift the costs to our friends and neighbors to save a few bucks. You think Lipitor makes a bundle of money for Pfizer at about $120 per month? Lovaza is making a bundle of money for GlaxoSmithKline, and all because people are cheap and willing to selfishly shift costs to other people.

Keep in mind that $3360 per year is just for fish oil. It's not for surgery, it's not for hospital care, it's just for stinking fish oil.
All posts by william-davis

Human foie gras

If you want to make foie gras, you feed ducks and geese copious quantities of grains, such as corn and wheat.

The carbohydrate-rich diet causes fat deposition in the liver via processes such as de novo lipogenesis, the conversion of carbohydrates to triglycerides. Ducks and geese are particularly good at this, since they store plentiful fats in the liver to draw from during sustained periods of not eating during annual migration.

Modern humans are trying awfully hard to create their own version of foie gras-yielding livers. While nobody is shoving a tube down our gullets, the modern lifestyle of grotesque carbohydrate overconsumption, like soft drinks, chips, pretzels, crackers, and--yes--"healthy whole grains" causes fat accumulation in the human liver.

Over the past few years, there has been an explosion of non-alcoholic fatty liver disease and non-alcoholic steatosis, two forms of liver disease that result from excess fat deposition. The situation gets so bad in some people that it progresses to cirrhosis, i.e., a hard, poorly-functioning liver that paints a very ugly health picture. The end-result is identical to that experienced by longstanding alcoholics.



While Hannibal Lecter might celebrate the proliferation of human fatty livers with a glass of claret, fatty liver disease is an entirely preventable condition. All it requires is not eating the foods that create it in the first place.

Let go of my love handles

When is fat not just fat?

When it's visceral fat. Visceral fat is the fat that infiltrates the intestinal lining, the liver, kidneys, even your heart. It's the stuff of love handles, the flabby fat that hangs over your belt, or what I call "wheat belly."

Unlike visceral fat, the fat in your thighs or bottom is metabolically quiescent. Thigh and bottom fat may prevent you from fitting into your "skinny jeans," but its mainly a passive repository for excess calories.

Visceral fat, on the other hand, is metabolically active. It produces large quantities of inflammatory signals ("cytokines"), such as various interleukins, leptin, and tumor necrosis factor, that can trigger inflammatory responses in other parts of the body. Visceral fat also oddly fails to produce the protective cytokine, adiponectin, that protects us from diabetes, cancer, and heart disease.

Visceral fat also allows free fatty acids to leave and enter fat cells, resulting in a flood of fatty acids and triglycerides (= 3 fatty acids on a glycerol "backbone") in the bloodstream. This worsens insulin responses ("insulin resistance") and contributes to fatty liver. The situation is worsened when the very powerful process of de novo lipogenesis is triggered, the liver's conversion of sugar to triglycerides.

Visceral fat is also itself inflamed. Biopsies of visceral fat show plenty of inflammatory white blood cells (macrophages) infiltrating its structure.

So what causes visceral fat? Anything that triggers abnormal increases in blood glucose, followed by insulin, will cause visceral fat to grow.

It follows logically that foods that increase blood glucose the most will thereby trigger the greatest increase in visceral fat. Eggs don't lead to visceral fat, nor do salmon, olive oil, beef, broccoli, or almonds. But wheat, cornstarch, potato starch, rice starch, tapioca starch, and sugars will all trigger glucose-insulin that leads to visceral fat accumulation.

Fructose is also an extravagant trigger of visceral fat. Fructose is found in sucrose (50% fructose), high-fructose corn syrup, agave syrup, maple syrup, and honey.

Increased visceral fat can be suggested by increased waist circumference. The inflammatory hotbed created by excess visceral fat has therefore been associated with increased likelihood of heart attack, cardiovascular mortality, diabetes, cancer, and total mortality.

So I'm not so worried that you can't squeeze your bottom into your size 8 jeans. I am worried, however, when you need to let your belt out a notch . . . or two or three.

Surviving a widow maker

Gwen came to me 5 years ago. In her late 60s, she'd been having feelings of chest pressure for the past 4 weeks with small physical efforts, such as climbing a flight of stairs or lifting her grandchildren.

She sat in my office, heaving small sobs, accompanied by her daughter.

Gwen had already undergone a heart catheterization at a hospital near home by a cardiologist who I knew to be honest and competent. She'd been told that she had a 90% stenosis ("blockage") of her proximal left anterior descending (LAD) coronary artery. He called it a "widow maker," since closure of the artery at this point can be fatal within minutes. He advised bypass surgery as soon as possible. Though a stent could be placed at this location, he felt that its proximity to the left main stem (i.e., the "trunk" that divides into the LAD and circumflex arteries) might be jeopardized by expanding a stent in this bulky plaque, what I felt was a reasonable concern.

I reviewed the images that she brought with her. Yes, indeed: a widow maker. The portion of the left ventricle (heart muscle) fed by the LAD was also impaired ("hypokinetic"), reflecting reduced flow through the artery.

I advised Gwen that her first cardiologist's advice was sound: This was a potentially dangerous and severe condition. Either a bypass or stent should be performed near-future, the less delay the better.

But Gwen and her daughter would have no talk of any more procedures. She'd come to me because she heard about the (then rudimentary) effort I'd been making at reversing coronary plaque. "I admire your commitment, Gwen, but I am concerned that there may not be sufficient time to implement a program of prevention or reversal. Prevention is very powerful, but very slow. When symptoms like yours are active, also, it can mean that we won't have full control over the plaque causing the symptoms. This risks closure of the vessel, since flow characteristics in the plaque are abnormal. I think that you should go through a stent or bypass. We can then start your prevention/reversal program once we know you're safe."

Gwen would still have none of it. I asked her to return in a few days after thinking it over. In the meantime, we drew her lipoprotein blood samples while she added fish oil, l-arginine (back then I used a lot of l-arginine for its endothelial health effects), and began the Track Your Plaque diet a la 2004. This was in addition to the aspirin, beta blocker, and statin prescribed by the first cardiologist.

Several days later, Gwen and her daughter returned, as committed as ever to not having a procedure and proceeding with our prevention/reversal efforts.

So off we went. I was nervous about Gwen's safety, but she had clearly made her mind made up. Gwen's lipoprotein analysis revealed a severe small LDL pattern along with markers for prediabetes (high insulin, high blood glucose, hypertension, along with the loose tummy of visceral fat). So I counseled her intensively in diet and added niacin.

Within 2 weeks, Gwen no longer had chest pain. Whether this was due to her efforts or to some resolution of an intraplaque phenomenon (e.g., resorption of internal plaque hemorrhage), I don't know. But her symptoms did not return.

As the program evolved, we added the new strategies along the way--vitamin D supplementation; elimination of all wheat along with other changes in diet; iodine and thyroid normalization; as well as discontinuing l-arginine after the initial two years. She also got rid of the statin drug after losing around 20 lbs on the diet.

It's now been six years with her "widow maker" and Gwen has been fine: no recurrence of her symptoms, all stress tests performed have been normal, reflecting normal blood flow in her coronary arteries.

Should ALL people with symptomatic widow makers undergo such an effort and avoid procedures? No, not yet. Prevention and reversal efforts are indeed powerful, but slow. Some people just may not have sufficient time to accomplish what Gwen did. The fact that Gwen showed evidence for reduced flow in the LAD worried me in particular. There is no question that mortality benefits for stenting or bypass of this location are not as large as previously thought (see here, for instance), but each case needs to be viewed individually, factoring in flow characteristics in the artery, appearance of "stability" or "instability" of the plaque itself, not to mention commitment of the person.

But it can be done.

Fred Hahn's Slow Burn

I just had a workout with personal trainer and fitness expert, Fred Hahn. After a workout that quickly taught me that I had a lot to learn about exercise and strength training, Fred and I had a nice low-carbohydrate dinner at a Manhattan restaurant and shared ideas.

Fred is coauthor of Slow Burn Fitness Revolution: The slow motion exercise that will change your body in 30 minutes a week, written in collaboration with the Drs. Eades, Michael and Mary Dan. Fred also blogs here.

I had heard about Fred's "slow-burn" concept in past, but made little of it. I then met Fred on Jimmy Moore's low-carb cruise this past year, where I gave a talk on how carbohydrate-reduced diets reduce small LDL particles. Fred provided a group demonstration on his slow-burn techniques. I watched the demonstration, even tried it a few times back home in the gym, but never really applied them, losing patience most of the time and just going back to my usual routine.

Well, Fred showed me today how to do his slow-burn. In a nutshell, it is the slow, methodical use of weight resistance until the muscle is exhausted. It involves slow movement--e.g., 5 seconds for a lat pulldown from top to bottom--repeated until exhaustion using a weight that allows, perhaps, 6 repetitions over a 60-second effort.

I've been strength training since I was a teenager. I've seen lots of bad training techniques, injuries, and hocum when it comes to how to use resistance training techniques. But I believe that Fred Hahn's slow-burn technique really provides something unique that I hadn't experienced before.

For one, the burn is nothing like I've felt before. Two, there appears to be nearly zero risk for injury, since the usual momentum-driven, herky-jerky motion often employed with weight machines is entirely gone. Three, if what Fred is seeing is true--enhanced visceral (abdominal) fat loss, reduced blood glucose, increased HDL, decreased LDL/total cholesterol--then there's something really interesting going on here.

I also discovered that Fred is no ordinary personal trainer. He has insights into metabolism that I found truly impressive. After all, he's been hanging around with Mike Eades, who's a pretty sharp guy. What Mike Eades is to metabolic insights is what Fred Hahn is to exercise physiology.

I'm going to take Fred's slow burn training insights home with me. I'll let you know how it goes. Some aspects I'd like to explore: Will strength, muscle mass, and blood sugar responses change?



Fred Hahn's latest book, adapting slow burn techniques for kids.

Can I stop my Coumadin?

Here I go again.

While I will try to keep this blog on topic, i.e., coronary heart disease prevention and reversal using nutritional and other natural strategies, I believe that a "critical mass" of frequently asked, though off topic, questions keep cropping up.

One such question revolves around Coumadin, or warfarin.

Somehow, my Nattokinase scam blog post draws traffic about Coumadin. I tried to make the point that a conventional blood thinning agent like Coumadin that undoubtedly has undesirable side-effects cannot be replaced by an agent that has an uncertain track record. In the case of nattokinase, no track record.

To illustrate how far wrong the "nattokinase as replacement for Coumadin" idea can go, here is a question from Anna:


I came across your blog while perusing.

I am a bit bummed because I have been on Coumadin (warfarin) for around 22 years since I was 6 years old. I have a mechanical heart valve (St. Jude's), as I have heart-related issues, including hypertrophic obstructive cardiomyopathy.

Well, it is just that the warfarin seems to interact with nearly everything. I feel like I can not get the nutrients my body requires. I desire to consume more raw foods and vegan foods, though I do not want anything to damage my heart valve or risk a stroke/heart attack or internal bleeding.

I have been underweight the majority of my life, malnourished , currently am still somewhat underweight, though enjoying food again, as I had what mimicked Crohn's Disease for several years (horrendous pain), from which I am in remission now. I was diagnosed with osteoporosis, which may or may not be caused from consuming warfarin.

Is it possible to get off of warfarin and effectively keep my blood thinned ? I currently take 1.5 mg to 2 mg dosage. Does the warfarin destroy Vitamin K and if so does that mean while on warfarin I never get the Vitamin K nutrients even if I did consume foods with it in it?

Thank you
Anna


No, sorry, Anna. Stopping Coumadin with your unique issues, i.e., a prosthetic mechanical heart valve (likely mitral, judging by your history of hypertrophic obstructive cardiomyopathy, in which the patterns of blood flow ejected from the heart disrupt the natural mitral valve function) and cardiomyopathy, can be fatal. Without blood thinning, the mechanical heart valve can trigger blood clot formation, since it is a foreign object implanted into the bloodstream.

There are no natural alternatives available with track records confident enough to bet your life on. Aspirin nor Plavix are blood thinners, but platelet inhibitors. These two agents, while they work for other forms of arterial (but not venous) blood clot inhibition, will not work for your unique situation.

Likewise, a purported oral lytic agent like nattokinase should not be substituted for Coumadin. Even if there was plausible science behind it, you should demand substantial evidence that it provides at least blood thinning equivalent to Coumadin. Should a blood clot, even a small one, form in or around the prosthetic valve, the valve can stop working within seconds. This can lead to death within minutes.

I believe it would be foolhardy to bet your life based on the marketing--let me repeat: MARKETING--of a "nutritional supplement" by supplement manufacturers eager to make a buck.

Nor are there any other nutritional supplements that can safely replace the Coumadin. I wish that were NOT true, as I am no stranger to the long-term dangers of Coumadin and I am a big believer, in general, in nutritional supplements. I am a BIGGER believer, however, in the truth. Weighing the options available to us today, there really is no rational choice but to remain on Coumadin.

By the way, I tell my patients to eat a substantial amount of green vegetables while they take Coumadin. I know that conventional advice is to reduce or eliminate green vegetables due to their content of Coumadin-antagonizing vitamin K. I think this is wrong, also. Green vegetables are the best foods on earth. They reduce risk for cancer, diabetes, bone disease, and coronary heart disease.

To obtain the benefits of green vegetables without mucking up your blood thinning (your "protime" or International Normalized Ratio, INR), I advise my patients who take Coumadin to eat green vegetables--but do so every day in relatively consistent quantities, so that the protime or INR is not disrupted and remains reasonably constant. It may mean that your total dose of Coumadin may be somewhat higher, e.g., 3 or 4 mg instead of 2 mg, but the dose is immaterial outside of blood thinning. That way, you obtain all the wonderful health benefits of green vegetables while maintaining fairly consistent blood thinning/protime/INR. Coumadin does not block all the health benefits of vegetables, only those related to vitamins K1 and K2.

With regards to protecting yourself from the osteoporosis promoting effects of Coumadin, I would be sure to follow a program of natural bone health, such as the one I discussed in Homegrown osteoporosis prevention and reversal. You will have to be extra careful, however, with the vitamin K2. Ideally, you have a doctor knowledgeable about vitamin K2 who can assist you in managing K2 intake while on Coumadin. This is something you can definitely NOT manage on your own. (I am a big believer in self-managed care, but this is way beyond the limit.)

Lastly, it is my belief that anyone with an inflammatory bowel condition, such as Crohn's disease or ulcerative colitis, should absolutely, positively, and meticulously AVOID WHEAT and all other gluten sources (such as rye, barley, and oats). Even if you test negative for celiac markers (e.g., anti-gliadin antibodies, emdomysium and transglutaminase antibodies), the enhanced intestinal permeability will allow wheat proteins, such as gluten, to gain ready entry into the bloodstream. Not to mention that wheat should have no place in the human diet anyway, in my view.

Homegrown osteoporosis prevention and reversal

I don't like to stray too far off course from discussions of heart disease and related issues in this blog. But the question of bone health comes up so often that I thought I'd discuss the strategies available to everybody to stop, even reverse, osteoporosis.

Coronary atherosclerotic plaque and bone health are intimately interwoven. People who have coronary plaque usually have osteoporosis; people who have osteoporosis usually have coronary plaque. (The association is strongest in females.) The worse the osteoporosis, the greater the quantity of coronary plaque, and vice versa. The two seemingly unconnected conditions share common causes and thereby respond to similar treatments.

Incredibly, rarely will your doctor tell you about these strategies. Your doctor orders a bone density test, the value shows osteopenia or osteoporosis, and a drug like Fosamax or Boniva is prescribed. As many people are learning, drugs like this can be associated with severe side-effects, such as jaw necrosis (death of the jaw bone), a dangerous and disfiguring condition that leads to loss of teeth and disfigurement, followed by reconstructive surgery of the jaw and face. These are not trivial effects.

Note that drugs are approved by the FDA based on assessment of efficacy and safety, NOT proven equivalence or superiority to natural treatments.

In order of importance (greatest to least), here are strategies that I believe are important to regain or maintain bone health. Indeed, I have seen many women increase bone density using these strategies . . . without drugs of any sort.

1) Vitamin D restoration--Vitamin D is the most important control factor over bone calcium metabolism, as well as parathyroid function. As readers of this blog already know, gelcap forms of vitamin D work best, aiming for a 25-hydroxy vitamin level of 60-70 ng/ml. This usually requires 6000 units per day, though there is great individual variation in need.

2) Vitamin K2--If you lived in Japan, you would be prescribed vitamin K2. While it's odd that K2 is a "drug" in Japan, it means that it enjoys the validation required for approval through their FDA-equivalent. Prescription K2 (as MK-4 or menatetranone) at doses of 15,000-45,000 mcg per day (15-45 mg), improves bone architecture, even when administered by itself. However, K2 works best when part of a broader program of bone health. I advise 1000 mcg per day, preferably a mixture of the short-acting MK-4 and long-acting MK-7. (Emerging data measuring bone resorption markers suggest that lower doses may work nearly as well as the high-dose prescription.)

3) Magnesium--I generally advise supplementation with the well-absorbed forms, magnesium glycinate (400 mg twice per day) or magnesium malate (1200 mg twice per day). Because they are well-absorbed, they are least likely to lead to diarrhea (as magnesium oxide commonly does).

4) Alkaline potassium salts--Potassium as the bicarbonate or the citrate, i.e., alkalinizing forms, are wonderfully effective for preservation or reversal of bone density. Because potassium in large doses is potentially fatal, over-the-counter supplements contain only 99 mg potassium per capsule. I have patients take two capsules twice per day, provided kidney function is normal and there is no history of high potassium.

5) An alkalinizing diet--Animal products are acidic, vegetables and fruits are alkaline. Put them together and you should obtain a slightly net alkaline body pH that preserves bone health. Throw grains like wheat, carbonated soft drinks, or other acids into the mix and you shift the pH balance towards net acid. This powerfully erodes bone. Therefore, avoid grains and never consume carbonated soft drinks. (Readers of this blog know that "healthy, whole grains" should be included in the list of Scams of the Century, along with Bernie Madoff and mortgage-backed securities.)

6) Strength training--Bone density follows muscle mass. Restoring youthful muscle mass with strength training can increase bone density over time. The time and energy needs are modest, e.g., 20 minutes twice per week.

Note that calcium may or may not be on the list. If on the list at all, it is dead last. When vitamin D has been restored, intestinal absorption of calcium is as much as quadrupled. The era of force-feeding high-doses of calcium are long-gone. In fact, calcium supplementation in the age of vitamin D can lead to abnormal high calcium blood levels and increased heart attack risk.

These are benign and easily incorporated strategies. They are also inexpensive. I challenge any drug to match or exceed the benefits of this combination of strategies. Keep in mind that strategies like vitamin D restoration provide an extensive panel of health benefits that range far beyond bone health, an effect definitely NOT shared by prescription drugs.

Your enlarged aorta

The thoracic aorta lives happily within the chest.

The aorta is the main artery of the body that emerges from the heart, located just under the sternum. It is the "tree trunk" from which all the major arteries branch off to the rest of the body: the arms, brain, abdominal organs, pelvis, and legs. The aorta receives the high-pressure blood ejected directly out of the heart muscle.

However, there are evil forces in the body that work to weaken the aorta. When the aorta is weakened, it enlarges. Enlarged aortas also tend to grow atherosclerotic plaque. Plaque in the aorta poses long-term risk for stroke and and mini-strokes ("transient ischemic attacks," or TIAs), due to fragmentation.

There are many enlarged aortas in this world. I see at least several every week. It is fairly common, particularly in people with high blood pressure and cholesterol abnormalities, as well as those who are overweight. Smokers get it really bad.

Conventional thinking is that, once an aorta enlarges, it will inevitably continue to enlarge at the average rate of 2.0 mm per year (resulting in 1.0 cm enlargement over 5 years). For this reason, conventional discussions on the topic of thoracic aortic aneurysms all say something like "Enlarged aortas should be monitored yearly. Surgical replacement should proceed when the aorta reaches a diameter of 5.5 cm."

This is because an aortic diameter of 5.5 cm is associated with much greater likelihood that the aorta will rupture (fatal within minutes) or the internal lining will tear, a "dissection." The surgery is a major undertaking that involves opening the chest and usually replacing the aortic valve and inserting a synthetic aorta. The procedure is high-risk, especially if any branch arteries are involved.

So putting a stop to any further aortic enlargement is a worthwhile goal. Unfortunately, conventional thought is that there is nothing you can do to stop the inevitable growth of the thoracic aorta.

Nonsense. There are a number of efforts you can make to halt further increase in aortic diameter. (My experience in this is anecdotal and unpublished, but now numbers several hundred patients.)

There are two categories of factors that cause the aorta to increase in diameter:

1) Internal pressure--Think of blood pressure as the internal inflating pressure on this "balloon." Keeping the "inflating pressure," i.e., blood pressure, low exerts substantial effect on slowing growth of aortic diameter. I aim for normal BP or lowish BP (less than 130/80, preferably 100/70).

2) Factors that weaken the aortic wall--Processes like inflammation, glycation, lipoprotein deposition, and nutritional deficiencies will serve to weaken the supportive tissue of the aorta. For that reason, correction of lipoprotein abnormalities (e.g., small LDL and lipoprotein(a)), reductions in carbohydrate intake and thereby blood glucose/glycation, and "normalization" of vitamin D, vitamin C supplementation (for collagen crosslinking), and omega-3 fatty acids all play a role.

To push even farther, there may be additional advantage to following strategies that impair the production and activity of a crucial enzyme that lives within the aortic wall: matrix metalloproteinase, or MMP. MMP degrades the collagen and other supportive tissues within the aorta, weakening it and permitting expansion. Blocking MMP may prove to be among the most powerful new strategies to halt aortic expansion.

Compounds that have potential MMP-inhibiting effects include:
--Vitamin D--A substantial effect
--Resveratrol--One of the polyphenols from red wine
--Doxycycline--This old antibiotic often used for acne treatment has, in preliminary studies, shown important MMP-blocking effects and slowed aortic expansion.

Anyway, there you have it. A bit complicated, but a "recipe" that has failed me only rarely.

Extreme carbohydrate intolerance

Here's an interesting example of what you might call "extreme carbohydrate intolerance."

May is a 44-year woman who has now had her 7th stent placed in her coronary arteries. She lives on a diet dominated by breads, breakfast cereals, muffins, rice, corn products, along with some real foods.

Her conventional lipid panel and other lab values:

Total cholesterol 346 mg/dl
Triglycerides: 877 mg/dl
HDL cholesterol: 22 mg/dl
LDL cholesterol: incalculable
(Recall that LDL cholesterol is usually a calculated, not a measured value. The excessively high triglycerides make the standard calculation invalid--more invalid than usual.)

Fasting blood glucose: 210 mg/dl
HbA1c (a reflection of previous 60-90 days average glucose): 7.2% (desirable 4.5% or less)
ALT (a "liver enzyme"): 438 (about five-fold normal)


At 5 ft even and 138 lbs (BMI 27.0), May appears small. But the modest excess weight is all concentrated in her abdomen, i.e., in visceral fat.

By lipoprotein analysis via NMR (Liposcience), May's LDL particle number was 2912 nmol/L, or what I would call a "true" LDL of 291 mg/dl. (Drop the last digit.) Of the 2912 nmol/L LDL particles, 2678 nmol/L, or 92%, were small.

The bad news: This pattern of extremely high triglycerides, extremely high LDL particle number, low HDL, predominant small LDL, and diabetes poses high-risk for heart disease--no surprise. It earned her 7 stents so far. (Unfortunately, she has made no effort whatsoever to correct these patterns, despite repeated advice to do so.)

The good news: This collection is wonderfully responsive to diet. LDL particle number, small LDL, triglycerides, blood glucose, and HbA1c drop dramatically, while HDL increases. Heart disease will at least slow, if not stop.

It's amazing how far off human metabolism can go while indulging in carbohydrates, particularly a genetically carbohydrate-intolerance person. (Actually, I wouldn't be surprised if May's diet, as bad as it seems to you and me, still fits within the dictates of the USDA food pyramid.) The crucial step in diet to correct this smorgasbord of disaster is elimination of carbohydrates, especially that from wheat, cornstarch, and sugars.

What's for breakfast? Egg bake

Heart Scan Blog reader and dietitian, Lisa Grudzielanek, provided this recipe in response to the post, What's for breakfast?

Lisa, by the way, is one of the rare dietitians who understands that organizations like the American Dietetic Association have made themselves irrelevant. She therefore advocates diet principles that work, not just echoing the idiocy that emanates from such organizations, often driven by economics more than science. Lisa works in the Milwaukee area and has proven a useful resource person for my patients who have required extra coaching in the Track Your Plaque diet principles.

Egg Bake
My favorite breakfast is what I call an "egg bake." Others may refer to it as a "quiche."

Take a variety of fresh vegetables. This time of year is great for farmers' markets.

I typically use fresh chopped organic spinach, bell peppers, red & white onions, scallions, broccoli, mushrooms, cherry tomatoes halved and, if desired, meat (nitrite-free ham or leftover chicken breasts).

1) Chop veggies and place in casserole dish.
2) Add meat and handful of cheese of your choice.
3) Scramble 8 eggs & little bit of milk & pepper.
4) Add to casserole dish and mix/coat veggies with egg mixture.
5) Put in oven at 450 degress for 30 minutes.

Yummy, ready to eat breakfast that is so easy for the work week.

What's for breakfast?

If you eliminate wheat from breakfast and otherwise adhere to a low-carbohydrate dietary approach, what is there to eat for breakfast?

If you take out English muffins, bagels, all breakfast cereals, pancakes, waffles, and toast, what's left to eat?

Actually, there's plenty left to eat. It just may not look like the traditional American notion of "breakfast." (The traditional idea of breakfast was is, in part, due to the legacy of Dr. John Harvey Kellogg, who, in the latter part of the 19th century, ran a sanitarium in Battle Creek Michigan. He and his brother, Will Keith Kellogg, discovered the idea of turning grains into flakes, the birth of the breakfast cereal. Subscribe to the idea of breakfast cereal for breakfast and you subscribe to the ideas of a man who would administer four enemas for you today to cure your cancer or rheumatism.)

Here are a few ideas. By no means is this meant to be a comprehensive list, just a starting point for a few new breakfast food ideas.

--Eggs--Of course, eat the yolk. Eat three yolks. Scrambled, "fried," (not really deep-fried, of course), hard-boiled, poached, as an omelette. Add pesto, olive oil, vegetables, mushrooms, salsa.

--Ground flaxseed--As a hot cereal with your choice of water, milk (not my favorite because of insulin effects; the fat is immaterial), full-fat soy milk (yeah, yeah, I know), unsweetened almond milk. Add walnuts, blueberries, etc. Ground flaxseed is the only grain I know of that contains no digestible carbohydrates.

--Lunch and dinner--Yes, if you cannot have breakfast foods for breakfast, then have lunch and dinner, meaning incorporating foods you ordinarily regard as lunch and dinner foods into your day's first meal. This means salads, leftover chicken from last night, soup, raw vegetables dipped in hummus or guacamole, stir fry, etc.

--Cheese--For something quick, grab a chunk of gouda or emmentaler along with a handful of raw almonds, walnuts, or pecans. Because of the excess acidity of cheese (along with meats, among the most acidifying of foods), I usually try to include something like a raw pepper or avocado, foods that are net alkaline.

--Avocados--Cut in half, scoop out contents. They're quick and delicious, when available.

I hesitate to mention it, but I sometimes will have tofu, cubed and flavored with whatever is available--soy sauce, miso, pickled vegetables. My mother was Japanese, so I'm comfortable with this, though many people are not.

Anyway, that's a partial list that nonetheless can get you started on a wheat-free, low-carb breakfast.

If you are just starting out, you will notice a number of fundamental changes. You may first experience the characteristic "withdrawal" effect: mental fog and fatigue that lasts about a week. Energy then picks up, often substantially. This is followed by gradually reduced appetite: You will be far less hungry. You will require less food, less often, since appetite will be driven by physiologic need, not the appetite-stimulating properties of wheat (and cornstarch, high-fructose cornsyrup and sucrose).

By the way, do not skip breakfast unless it's part of an occasional fasting effort. Skip breakfast, wind down metabolism, get fat. I am impressed at how consistent skipping breakfast backfires in those who think that it helps you control weight.

I also welcome any suggestions on what you eat as part of your wheat-free, low-carb breakfast. (Thanks for the great suggestions on the last blog post, Anna.)