Restaurant eating: A fructose landmine

There is no remaining question that fructose is among the worst possible things humans can consume.

Followers of the Heart Scan Blog already know this, from conversations like The LDL-Fructose Disconnect, Where do you find fructose?, and Goodbye, fructose.

But fructose, usually as either high-fructose corn syrup (44%, 55%, occasionally higher percentage fructose) or sucrose (50% fructose), is ubiquitous. I've seen it in the most improbable places, including cole slaw, mustard, and dill pickles.

It's reasonably straightforward to avoid or minimize fructose exposure while eating at home, provided you check labels and focus on foods that don't require labels (like green peppers, salmon, and olive oil, i.e., unprocessed foods). But when you choose to eat at a restaurant, then all hell can break loose and fructose exposure can explode.

So what are some common and unsuspected fructose sources when eating at a restaurant?

Salad dressings--Dressings in all stripes and flavors are now made with high-fructose corn syrup and/or sucrose. This is especially true of low-fat, non-fat, or "lite" dressings, meaning oils have been replaced by high-fructose corn syrup. It can also be true of traditional non-low-fat dressings, too, since high-fructose corn syrup is just plain cheap.

Olive oil and vinegar are still your safest bets. I will often use salsa as a dressing, which works well.

Sauces and gravies--Not only can sauces be thickened with cornstarch, many pre-mixed sauces are also made with high-fructose corn syrup or sweetened with sucrose. Barbecue sauce is a particular landmine, since it is now a rare barbecue sauce not made with high-fructose corn syrup as the first or second ingredient. Sauces for dipping are nearly always high-fructose corn syrup-based.

Ketchup--Yup. Good old ketchup even is now made with high-fructose corn syrup. In fact, you should be suspicious of any condiment.

Highball, Bloody Mary, Margarita, Daiquiri, beer--Even the before-dinner or dinner drink can have plenty of fructose, particularly if a mix is used to make it. While Blood Marys seem the most benign of all, adorned with celery, pickle, and olive, just take a look at the ingredient label on the mix used: high-fructose corn syrup.

Fructose is a stealth poison: It doesn't immediately increase blood sugar; it doesn't trigger any perceptible effect like increased energy or sleepiness. But it is responsible for an incredible amount of the health struggles in the U.S., from obesity, to diabetes, to hyperlipidemias and heart disease, to arthritis, to cataracts.

A glycation rock and a hard place

Advanced Glycation End-products, or AGEs, the stuff of aging that mucks up brains, kidneys, and arteries, develop via two different routes: endogenous (from within the body) and exogenous (from outside the body).

Endogenous AGEs develop via glycation. Glycation of proteins in the body occurs when there are glucose excursions above normal. For instance, a blood glucose of 150 mg/dl after your bowl of stone-ground oatmeal causes glycation of proteins left and right, from the proteins in the lens of your eyes (cataracts), to the proteins in your kidneys (proteinuria and kidney dysfunction), to skin cells (wrinkles), to cartilage (brittle cartilage followed by arthritis), to LDL particles, especially small LDL particles (atherosclerosis).

At what blood sugar level does glycation occur? It occurs even at "normal" glucose levels below 100 mg/dl (with measurable long-term cardiovascular effects as low as 83 mg/dl). In other words, some level of glycation proceeds even at blood glucose levels regarded as normal.

There's nothing we can do about the low-level of glycation that occurs at low blood sugar levels of, say, 90 mg/dl or less. However, we can indeed do a lot to not allow glycation to proceed more rapidly, as it inevitably will at blood sugar levels higher than 90 mg/dl.

How do you keep blood sugars below 90 mg/dl to prevent excessive glycation? Avoid or minimize the foods that cause such rises in blood sugar: carbohydrates.

What food increases blood sugar higher than nearly all other known foods? Wheat.

Is einkorn the answer?

People ask: "What if I would like a piece of bread or other baked product just once in a while? What is safe?"

Eli Rogosa, Director of The Heritage Wheat Conservancy, believes that a return to the wheat of our ancestors in the Fertile Crescent, circa 10,000 years ago, is the answer.

Former science teacher, now organic farmer, farm researcher, and advocate of sustainable agriculture, Eli has been reviving "heritage" crops farmed under organic conditions, some of her research USDA-funded.

In particular, Eli has been cultivating original 14-chromosome ("diploid") einkorn wheat. Although einkorn contains gluten (in lesser quantities despite the higher total protein content), the group of proteins that trigger the immune abnormalities of celiac disease and other immune phenomena, Eli tells me that she has witnessed many people with a variety of wheat intolerances, including celiac disease, tolerate foods made with einkorn wheat. (The variety of glutens in einkorn differ from the glutens of the dwarf mutant that now dominate supermarket shelves.)

Eli travels to Israel every year, returning with "heritage" seeds for wheat and other crops. She formerly worked in the Israel GenBank as Director of the Ancient Wheat Program. She has written a brochure that describes her einkorn wheat.

Eli sent me 2 lb of her einkorn grain that nutritionist, Margaret Pfeiffer, and I ground into bread. Our experience is detailed here. My subsequent blood sugar misadventure, comparing einkorn bread to conventional organic whole wheat bread is detailed here, followed by the odd neurologic effects I experienced here.

Anyone else wishing to try this little ancient wheat experiment with einkorn can also obtain either the unground grain or ground flour through Eli's website, www.growseed.org. Most recently, einkorn pasta is being retailed under the Jovial brand at Whole Foods Market.

If anyone else makes bread or any other food with Eli's einkorn wheat, please let me know:

1) Your blood sugar response (before and 1 hour after consumption)
2) Whether you experienced any evidence of wheat intolerance similar to what you experienced with conventional wheat, e.g., rash, acid reflux, gas and cramping, moodiness, asthma, etc.

But remember: Wheat effects or no, einkorn is still a grain. My belief is that humans do best with little or no grain. The einkorn experience is an effort to identify reasonable compromises so that you and I can have a piece of birthday cake once a year without getting sick.

Genetic incompatibility

Peter has lipoprotein(a), or Lp(a), a genetic pattern shared by 11% of Americans.

It means that Peter inherited a gene that codes for a protein, called apoprotein(a), that attaches to LDL particles, forming the combined particle Lp(a). It also means that his overall pattern responds well to a high-fat, high-protein, low-carbohydrate diet: The small LDL particles that accompany Lp(a) over 90% of the time are reduced, Lp(a) itself is modestly reduced, other abnormalities like high triglycerides (that facilitate Lp(a)'s adverse effects) are corrected. Small LDL particles are, by the way, part of the genetic "package" of Lp(a) in most carriers.

Peter also has another gene for Apo E4, another genetically-determined pattern shared by 19% of Americans. (Another 2% of Americans have two "doses" of Apo E4, i.e., they are homozygotes for E4.) This means that the Apo E protein, normally responsible for liver uptake and disposal of lipoproteins (especially VLDL), is defective. In people with Apo E4, the higher the fat intake, the more LDL particles accumulate. (The explanation for this effect is not entirely clear, but it may represent excessive defective Apo E-enriched VLDL that competes with LDL for liver uptake.) People with Apo E4 therefore drop LDL (and LDL particle number and apoprotein B) with reductions in fat intake.

This is a genetic rock-and-a-hard-place, or what I call a genetic incompatibility. If Peter increases fat and reduces carbohydrates to reduce Lp(a)/small LDL, then LDL measures like LDL particle number, apoprotein B, and LDL cholesterol will increase. Paradoxically, sometimes small LDL particles will even increase in some genetically predisposed people.

If Peter decreases fat and increases carbohydrates, LDL particle number, apoprotein B, and LDL cholesterol will decrease, but the proportion of small LDL will increase and Lp(a) may increase.

Thankfully, such "genetic incompatibilities" are uncommon. In my large practice, for instance, I have about 5 such people.

The message: If you witness paradoxic responses that don't make sense or follow the usual pattern, e.g., reductions in LDL particle number, apoprotein B, and small LDL with reductions in their dietary triggers (i.e., carbohydrates, especially wheat), then consider a competing genetic trait such as Apo E4.

The folly of an RDA for vitamin D

Tom is a 50-year old, 198-lb white male. At the start, his 25-hydroxy vitamin D level was 28.8 ng/ml in July. Tom supplements vitamin D, 2000 units per day, in gelcap form. Six months later in January (winter), Tom's 25-hydroxy vitamin D level: 67.4 ng/ml.

Jerry is another 50-year old white male with similar build and weight. Jerry's starting summer 25-hydroxy vitamin D level: 26.4 ng/ml. Jerry takes 12,000 units vitamin D per day, also in gelcap form. In winter, six months later, Jerry's 25-hydroxy vitamin D level: 63.2 ng/ml.

Two men, similar builds, similar body weight, both Caucasian, similar starting levels of 25-hydroxy vitamin D. Yet they have markedly different needs for vitamin D dose to achieve a similar level of 25-hydroxy vitamin D. Why?

It's unlikely to be due to variation in vitamin D supplement preparations, since I monitor vitamin D levels at least every 6 months and, even with changes in preparations, dose needs remain fairly constant.

The differences in this situation are likely genetically-determined. To my knowledge, however, the precise means by which genetic variation accounts for it has not been worked out.

This highlights the folly of specifying a one-size-fits-all Recommended Daily Allowance (RDA) for vitamin D. The variation in need can be incredible. While needs are partly determined by body size and proportion body fat (the bigger you are, the more you need), I've also seen 105 lb women require 14,000 units and 320-lb men require 1000 units to achieve the same level of 25-hydroxy vitamin D.

An RDA for everyone? Ridiculous. Vitamin D is an individual issue that must be addressed on a person-by-person basis.

Heart scan: Standard of care?

If coronary disease is easy to detect by measuring coronary calcium, shouldn't this represent the standard of care?

In other words, if you've been seeing your doctor and he/she has been monitoring cholesterol levels and, inevitably, talks about statin drugs, then you have a heart attack, unstable angina, or die--yet never knew you had heart disease--isn't this negligence?

Coronary calcium, and thereby coronary atherosclerotic plaque, are markers for the disease itself. Unlike cholesterol, high blood pressure, etc., that represent risk factors for coronary atherosclerotic plaque, coronary calcium is a measure of total plaque: "soft" elements like lipid collections, necrotic tissue, fibrous tissue, as well as "hard" elements like calcium. Because calcium occupies 20% of total atherosclerotic plaque volume, it can be used as an indirect "dipstick" for total plaque.

So why isn't an unexpected heart attack, hospitalization for unstable heart symptions, emergency bypass, etc., not regarded as potential malpractice? These are not benign events, but potentially life-threatening.

The costs of doing drug business?

Here's a telling situation.

Liz had been on prescription niacin, Niaspan, 1500 mg per day (3 x 500 mg tablets) for several years to treat her severe small LDL pattern and familial hypertriglyceridemia (triglycerides 500-1000 mg/dl). Because her health insurance had been paying for the "drug," she insisted on taking the prescription form.

A change in insurance, however, meant that the Niaspan was no longer covered. Her pharmacy wanted to charge $227 per month.

Liz came to the office in tears, worried that she was going to have to choke up $227 per month. I reminded her that, as I had told her several years ago, she could easily replace the Niaspan with over-the-counter Sloniacin or Enduracin. Both release niacin over approximately 6 hours, just like Niaspan.

Here are the prices I've seen with Sloniacin, 100 tablets of 500 mg:

Walgreens: $15.99
Walmart: $12.99
Costco: $8.99

So the most expensive source, Walgreens, would cost Liz just under $15.99 per month to take 1500 mg per day.

$15.99 versus $227.00 per month for preparations that are highly similar. Hmmmmmm.

I wonder what the $211.01 extra per month goes towards? Admittedly, Abbott Labs, the current company selling Niaspan (after Abbott acquired Kos), has invested in a few clinical trials, such as ARBITER-HALTS6. But does supporting research justify this much difference, a difference that amounts to $2532 over a year? If just 100,000 patients are prescribed Niaspan at this dose (a typical dose), this generates $253 million.

Is the cost of developing and marketing a supplement-turned-drug that great? Is this justifiable? Is it any wonder that our health insurance premiums continue to balloon?

I use Sloniacin and Enduracin almost exclusively.

Measurement

A crucial component of self-empowerment in healthcare is to be able to measure various health parameters. More and more measurement tools are entering the direct-to-consumer arena.

Quantification of various phenomena is important in managing many aspects of health. Imagine a carpenter trying to build a house without the use of a tape measure, level, or other measuring tools. In health, as in building a house, measurement, adjustment, and correction are critical.

Among the most helpful health measurement tools:

Blood glucose meters--Blood glucose meters aren't just for diabetics. They are among the most powerful weight loss tools available.

Blood pressure cuffs--There's no better way to assess blood pressure than to assess it under all the varied conditions of life: When you're tired, when you're excited, when you're upset, when you're happy, hungry, stomach full, morning, night. This is a lot better than the one isolated measure in the doctor's office.

Digital thermometers--Your first a.m. oral temperature is a great way to assess thyroid status. We aim to maintain first a.m. oral temperature around 97.3 degrees F, the normal human temperature upon arising that reflects normal thyroid function. (No, Dr. Broda Barnes fans, axillary temperatures should NOT be used due to flagrant variation from right armpit to left armpit, modifying effects of clothing and ambient temperature, etc. Oral temperature tracks internal, "core," temperature fluctuations reliably, including circadian variation, far better than axillary temperatures.)

Fingerstick blood tests--An incredible number of blood tests are now available just by performing a simple fingerstick in your kitchen or bathroom. You can get 25-hydroxy vitamin D, lipids, thyroid measures (TSH, free T3, free T4), hormones (DHEA, testosterone, estrogens). And the list is growing rapidly. Salivary tests are also growing in number for many of the same measures.

A variation on fingerstick blood tests are devices like CardioChek that allow you to do a fingerstick, but also run the test on your own device at home. (The CardioChek device tests total cholesterol, triglycerides, and HDL.)

Urine pH--You can dipstick your own urine to assess the relative acidity or alkalinity of your lifestyle. Acid pH (7 or below) suggests that diet is weighed too heavily in favor of animal products and grains. An alkaline pH (above 7) suggests plentiful vegetables and fruits, not counteracted by animal products and grains.

There are many more, including the ZEO device to monitor sleep quality, RESPeRATE for reduction of blood pressure, HeartMath to manage stress and augment the parasympathatic (relaxation) response. We've come a long way compared to the health monitoring devices of just 25-30 years ago.

Anyway, that's a partial list. Given the rapid advances in technology that allow such home tests, I anticipate a much longer list in the coming few years.

For some perspective on how far these devices have come, here's a great graphic of an early sphygmomanometer, or blood pressure gauge.


Courtesy Wellcome Library, London

I lost 37 lbs with a fingerstick

Jack needed to lose weight.

At 5 ft 7 inches, he weighed in at 273 lbs, putting his BMI at a sobering 42.8. (A BMI of 30 or above is classified as "obese.") In addition to lipoprotein(a), Jack had an extravagant quantity of small LDL (the evil "partner" of lipoprotein(a)), high triglycerides, and blood sugars in the diabetic range. With a heart scan score of 1670, Jack had little room for compromises.

Try as he might, Jack could simply not stick to the diet I urged him to follow. Three days, for instance, of avoiding wheat was promptly interrupted by his wife's tempting him with a nice BLT sandwich. This triggered his appetite, with diet spiraling downward in short order.

So I taught Jack how to check his blood sugars using a fingerstick device, what I call the most important weight loss tool available. I asked Jack to check his pre-meal blood glucose and his one-hour after-meal blood glucose and not allow the after-meal blood glucose to rise any higher than the pre-meal. For example, if blood glucose pre-meal was 115 mg/dl, after-meal blood glucose should be no higher than 115 mg/dl.

If any food or combination of foods increase blood glucose more than the pre-meal value, then eliminate the culprit food or reduce the portion size. For example, if dinner consists of baked salmon, asparagus, and mashed potatoes, and pre-meal blood glucose is 115 mg/dl, post-meal 155 mg/dl, reduce or eliminate the mashed potatoes. If slow-cooked, stone ground oatmeal causes blood glucose to increase from 115 mg/dl to 185 mg/dl (a typical response to oatmeal), then eliminate it.

Having immediate feedback on the effects of various foods finally did it for Jack: It identified foods that were triggering excessive blood sugar rises (and thereby insulin) and foods that did not.

What Jack did not do is limit or restrict calories. In fact, I asked him to eat portion sizes that left him comfortable. There was no need to reduce calories, push the plate away, etc. Just don't allow blood sugars to rise.

Six months later, Jack came back 37 lbs lighter. And he got there without calorie-counting, without regulating portion sizes, without hunger.

The two kinds of small LDL

You won't find this in any publication nor description (at least ones that I've come across) about the ubiquitous small LDL particles. It's an observation I've made having obtained thousands of advanced lipoprotein panels of the sort that break lipoproteins down by size. I've discussed this issue previously here. But small LDL is so ubiquitous, not addressed by conventional strategies like statin drugs or fat restriction (it is made worse, in fact, by reducing fat in the diet), that it is worth keeping at the top of everyone's consciousness.

(Because most of the lipoprotein analyses performed in my office are done via NMR, I will discuss in terms relevant to NMR. This does not necessarily mean that similar observations cannot be made with centrifugation, i.e, VAP from Atherotech, or gel electropheresis from Berkeley, Boston Heart Lab, Spectracell, and others).

There are two basic varieties of small LDL particles:

1) Genetically-programmed--e.g., via cholesteryl-ester transfer protein (CETP) activity
2) Acquired--via carbohydrate consumption


It means that people with acquired small LDL from carbohydrate consumption can reduce small LDL to zero with reduction of carbohydrates, especially the most small LDL-provoking foods of all: wheat, cornstarch, and sucrose.

It also means that people who have small LDL for genetically-determined reasons can only minimize, not eliminate, small LDL. By NMR, we struggle to keep small LDL in the 300-600 nmol/L range when genetically-determined. (People typically start with 1400-3000 nmol/L small LDL particles prior to diet changes and other efforts.) We can only presumptively identify genetically-determined small LDL when all the appropriate efforts have been made, including reduction in weight to ideal, yet small LDL persists.

Here is where we need better tools: when you've done everything possible, yet small LDL persists.

While we break LDL particles (NOT LDL cholesterol, the crude and misleading way of viewing atherosclerosis causation) down by size, it's really about all the undesirable characteristics that accompany small size:

--Distortion of Apo B conformation--i.e., the primary protein that directs LDL particle fate is distorted, making it less likely to be cleared by the liver but more likely to be taken up by inflammatory (macrophages) in the artery wall, creating plaque. It means that small LDL particles linger for a longer time than larger particles.

--Small LDLs are more oxidation-prone. Oxidized LDL are more avidly taken up by inflammatory macrophages.

--Small LDLs are more glycation-prone.

--Small LDLs are more adherent to structural tissues, e.g., glycosaminoglycans, that reside in the artery wall.

You and I cannot measure such phenomena, so we resort to distinguishing LDL particles by size.

The drug industry believes it may have a solution to small LDL in the form of CETP-inhibiting drugs, like anacetrapib. In the way of nutritional solutions beyond carbohydrate reduction, weight loss/exercise, niacin, vitamin D normalization, and omega-3 fatty acid supplementation, there are exciting but very preliminary data surrounding the possibility that anthocyanins may inhibit CETP activity. Having toyed with this concept for the past 6 months, I remain uncertain how meaningful the effect truly is, but it is harmless, since we obtain anthocyanins from foods colored purple or purplish, such as blackberries, blueberries, cherries, red leaf lettuce, red cabbage, etc.

I welcome any unique observations on this issue.
All posts by william-davis

Goodbye, Dr. Jarvik

HeartWire, the news service of www.theheart.org, posted the following report:

Pfizer pulls Lipitor ads featuring Dr Robert Jarvik in HeartWire

New York, NY - After a series of questions and attacks over its choice of Dr Robert Jarvik to endorse Lipitor in a series of TV commercials, Pfizer has announced that it is withdrawing the ads. As previously reported by heartwire, Jarvik invented the first artificial heart, but he is not a cardiologist, nor does he hold a medical license—factors that drew criticism from detractors and made him and Pfizer a target of a US House Committee on Energy and Commerce investigation into celebrity endorsements in direct-to-consumer advertisements.

In a January 2008 statement, committee chair Rep John D Dingell (D-MI) observed: "Dr Jarvik's appearance in the ads could influence consumers into taking the medical advice of someone who may not be licensed to practice medicine in the United States. Americans with heart disease should make medical decisions based on consultations with their doctors, not on paid advertisements during a commercial break."

Complaints about Jarvik went up a notch this month when the latest ad in the series depicted the inventor rowing a racing scull across a lake, despite the fact that Jarvik himself does not row and the commercial used a body double.


This is typical pharmaceutical industry sleight-of-hand, now you see it, now you don't, that has come to define their policies. And this is just the stuff that comes to light because of some obvious blunders. We can only begin to imagine what sorts of other shenanigans have been swept under the rug, especially adverse effects of drugs that never made it to the light of publication.

Is this just another example of how direct-to-consumer advertising has backfired? I now have patient after patient tell me that they have been so overwhelmed and fed up with TV and magazine ads for drugs that they



Other media outlets have reported that Jarvik was guaranteed $1.35 million for the ads and that Pfizer spent $258 million on Lipitor advertisements between January 2006 and September 2007.

Hammers and nails

I'm sure you've heard the old saying that,

To a man with a hammer, everything looks like a nail.


It couldn't be truer than in heart procedures (the man with the hammer) and heart disease (the nail).

What does it take in 2008 to become an interventional cardiologist trained in all the techniques of angioplasty, stenting, intracoronary ultrasound, etc.? Start with your undergraduate degree (4 years), then medical school (another 4 years), then training in internal medicine (3 years), then general cardiology taining (3 years), then an additional year in interventional cardiology. Each step along the way also involves competing for these spaces, a process that requires much time, money, and sweat.

The total time investment is 15 years after high school. Many if not most college students graduate with debt. Pile on the substantial cost of medical school. Training after medical school pays a modest salary, enough for a single person. Many trainees by then have spouses and a family, would like to buy a house, have bills to pay. (I managed to buy my first house for $69,000 in Columbus, Ohio and paid my mortgage by sleeping only every other night and moonlighting on my off nights.)

By the time the interventional cardiologist-in-training finishes his/her 15 years, they are hungry for a hefty increase in income. After such a time and money investment, I do believe that there is at least some justification for generous income for the years of work involved.

Back to our hammer and nail metaphor. Not only do we now have a man or woman with a hammer, but a really expensive hammer that required a substantial amount of effort to obtain. Now, our hapless hammer-bearer is desperate to see everything in sight as a nail.

You're seen in consultation by this fresh interventional cardiologist in practice for only a few years. Guess what he/she advises? Go straight to the catheterization laboratory, of course. Throw in the fact that insurance reimbursement is most generous for heart procedures, far more than for consulting in the office, doing a stress test, or other simpler, non-invasive tests, and the incentives are clear.

The system, you see, is set up to follow such a path. The path to the cath lab is heavily incentivized, paths in the other direction discouraged, disparaged, or just ignored.

My message: Don't get nailed.

What is abnormal?

What is abnormal?

You'd think that the answer would be easy and straightforward.

However, consider these instances of medical findings that I have witnessed fall repeatedly into the "normal" category:

Diameter of the thoracic aorta: 4.5 cm

Mild coronary plaque by heart catheterization

Carotid plaque of 30-50%


Why isn't a thoracic aorta (the big artery in your chest) of 4.5 cm normal? Because it can be expected to increase in diameter by about 2.5 mm (0.25 cm) per year. Even at its current diameter, it means that stroke risk is greater, since enlarged aortas are diseased aortas that commonly accumulate atherosclerotic plaque with potential to fragment and shower debris to the brain. It means that high blood pressure and/or cholesterol/lipoprotein abnormalities have been uncorrected for years that have allowed the aorta to enlarge.

How about "mild coronary plaque"? Followers of the Track Your Plaque program already know the answer to this one. Mild plaque does not mean mild risk. In fact, most plaques that cause heart attack are mild plaques, not severe blockages. While severe blockages can provide symptom warning and are detected by stress tests, it's the mild blockages that rupture without symptom warning and cause heart attack. So "mild coronary plaque" is no less dangerous than severe coronary plaque.

Likewise, carotid plaque of 30-50%, while it doesn't justify surgery, can grow within just a few years to a severity that allows it to fragment and shower debris to the brain, i.e., a stroke. As with the enlarged aorta, it means that multiple causes of carotid plaque are likely active, including high blood pressure and cholesterol or lipoprotein abnormalities.

Then why would any of these findings be labeled "normal"?

Simple. In the minds of many physicians, if a condition doesn't pose immediate risk, or if it doesn't qualify for surgical "correction," then it is labeled "normal" or "mild."

Thus, an aorta of 4.5 cm cannot justify surgical replacement until it achieves a diameter of 5.5 cm. It is therefore labeled "normal."

"Mild coronary plaque" does not justify insertion of stents or performance of bypass surgery. It must therefore be "normal."

Carotid plaque over 70% is surgically removed, but not 30-50%. 30-50% is therefore "normal."

The tragedy is that many "normal" or "mild" findings, if cast in the proper light, could lead to corrective strategies that could prevent danger long-term or keep surgery from becoming necessary.

The enlarged aorta, for instance, could be stopped and an aneurysm (defined as 5.5 cm or greater) could be prevented, along with dramatically reducing risk for stroke. Carotid plaque, more so than coronary plaque, is a controllable and manipulable condition that should trigger a program of prevention and reversal. Instead, it usually generates advice to have another ultrasound in a year to see if it has yet achieved severity sufficient to justify surgery.

Of course, "mild coronary plaque" is the reason for the Track Your Plaque approach, a chance to seize control over this disease years or decades before procedures are necessary and reduce danger now, not years from now.


Copyright 2008 William Davis, MD

Niacin and hydration

Many people know about niacin's curious effect of the "hot flush," a feeling of warmth that covers the chest and neck, occasionally the entire body.

However, many people are unaware of the fact that hydration can block this effect. In fact, many people who were not advised of this will come to the office describing miserable experiences with niacin--hot flushes that last for hours, intolerable itching, etc.--only to experience little or none of these effects with generous hydration.

The vast majority of the time, two 8-12 oz glasses of water when the hot flush occurs will eliminate the flush within a few minutes.

Sometimes, the hot flush will occur many hours after taking niacin. Nine times out of ten, this delayed effect is also due to poor hydration. For instance, you might be engrossed in your work and forget to keep up with fluid demands. Or, it may be warm and you've lost fluids through sweating. That's when you begin to feel the hot flush creep up on you.

The cure: Lots of water. In this situation, in which you have allowed dehydration to develop, it may require more than two big glasses. Relief from the flush may also take more time, but it still works nearly every time.

On those rare occasions when water by itself is insufficient, then an adult (325 mg), uncoated aspirin or 200 mg ibuprofen can also be used to accelerate relief.

Why go to some much bother? Well, niacin remains the best agent we have for reduction of small LDL, raising HDL (although vitamin D is proving to be a powerful competitor in this arena), and reducing lipoprotein(a). How much do statin drugs contribute to these effects? Very little, if at all.

Several drug manufacturers are also working on "antidotes" to the hot flush effect of niacin that will be packaged within the niacin tablet. Naturally, it will also boost the cost up many times higher.

In the meantime, if or when you experience the niacin hot flush, just think: Put out the "fire" with plenty of water.

Let me float an idea

I'd like to float an idea.

The Track Your Plaque program is a fee-for-membership website. We chose this method of covering our costs--website development, graphics, software coding, etc.--since we do not accept advertising. I do believe that not having any advertising on our website has kept us impartial and unbiased--we mean what we say and not because we are selling something.

But there's a downside to assessing a membership fee: It limits the number of people who are willing or able to access the information. It also limits the dissemination of these concepts, due to such phenomena as limited content exposure to internet search engines.

Actos, Avandia, and vitamin D

Up until a few years ago, if a patient showed signs of the metabolic syndrome/pre-diabetes, or early diabetes, I would often prescribe one of the drugs, Actos (pioglitazone) or Avandia (rosiglitazone), known as the thiazolidinediones, or TZD's for short. Although I do not manage diabetes, I was witnessing a flood of patients with pre-diabetic patterns that inhibited correction of lipoprotein patterns. So I saw the TZD's as a means of potentially assisting with correction of these abnormalities.

My rationale back then was that many people with metabolic syndrome struggled to raise HDL cholesterol, reduce triglycerides, reduce small LDL, reduce the inflammatory measure c-reactive protein (CRP), as well as reduce blood sugars towards the normal range. The TZD's partially corrected these phenomena.

But over the last 2 1/2 years, I haven't written a single prescription for these agents since I've added vitamin D to the regimen.

Vitamin D in my experience in the Track Your Plaque approach:

--Raises HDL--far more than the TZD's ever did.

--Reduces small LDL

--Reduces triglycerides

--Reduces c-reactive protein

--Reduces blood pressure

--Reduces blood sugar

In other words, vitamin D appears to not only reproduce many of the effects of the TZD's, but exceeds the effects. The effects are often so wonderful that I've taken many people off their TZD's.

Vitamin D, of course, also provides numerous benefits for bone health, reduction of cancer risk, and other health benefits that the TZD's simply cannot compete with. Vitamin D also lacks the quite substantial side-effects of TZD's: water retention and weight gain (around 8 lbs in the first year of treatment), possible increase in risk for heart attack (Avandia), definite increased likelihood of congestive heart failure in those prone to it.

How about cost? Actos goes for about $2 per pill (30 mg tablet). Vitamin D in the gelcap form (the only form we use) costs around $0.05 per capsule--5 cents. That's a 40-fold difference in price for what I would regard as an inferior--substantially inferior--product.

Throw into the mix a dramatic reduction or elimination of wheat products and other high-glycemic index foods, and all the phenomena of the metabolic syndrome and its associated lipoprotein patterns show even more improvement or full reversal.

In fact, with this approach we are seeing record-setting magnitudes of correction of these parameters every day. Getting HDL, for instance, into the 60 mg/dl or 70 mg/dl range has never been so easy.

What if heart scans become obsolete?

What will we do if or when CT heart scans become outdated and something better comes along?

Heart scans are, after all, our principal tool for detection and precise quantification of coronary atherosclerotic plaque. They provide the basis for the Track Your Plaque program: serial heart scans to track progression or regression of coronary plaque.

So what the heck will we do if heart scans become obsolete, if some other technology proves superior for precise lengthwise quantification of coronary plaque?

Simple: Then we will convert to that measure.

Say, for instance, that in 5 years, MRI advances to the point where it is quick and precise, despite the rapid motion of the heart that has, in past, caused this technology to stumble for plaque quantification. Instead of obtaining a heart scan score of, say, 350, instead an MRI might yield information like:

Calcium volume: 350 cubic mm
Soft plaque elements: 200 cubic mm
Fibrous tissue: 700 cubic mm

In other words, while a CT heart scan provides a calcium score that serves as a surrogate measure of total plaque volume, perhaps the next wave of technology will directly measure total plaque volume.

Don't CT coronary angiograms already measure total plaque volume?

No, they definitely do not. At present, the best they can do is visualize the non-calcific elements and suggest the diameter reduction created by plaque at a specific point. Thus, results like "50% blockage in the mid-left anterior descending." What they do not provide is a lengthwise total volume of plaque and all its elements. Perhaps some software manipulation in future will yield such information (and I think it will, though I personally have been unable to accomplish it).

So neither the Track Your Plaque program nor the Heart Scan Blog are necessarily bound to heart scans. But heart scans, in 2008, remain the number one best tool for plaque quantification that is easy, precise, available, and inexpensive. For those reasons, CT heart scans continue to serve as the basis for these programs, and not CT angiograms, MRI, or other non-quantitative technology.

Scare tactics

Does the media engage in scare tactics?

Read the headlines in local newspapers, and you'd believe that your friends and neighbors are dropping like flies, all victims of heart attacks.

I occasionally peruse the headlines run in newspapers and magazines around the U.S. by subscribing to a feed service through Google. For the phrase, "heart attack," you can get a sample of what is being said around the country about people having heart attacks.

What continues to impress me is just how far off a truly constructive and helpful message the media provides every day. Not only are they guilty of delivering a flawed message, they also favor headlines and stories that scare the heck out of people. "This could happen to you!"

Is it just the quest for headlines that grab readers' attentions? Is there some complicity with the medical systems that pay significant advertising revenues for their heart disease programs and hospitals?

I doubt such complicity exists to any substantial degree. But the fact remains: Every day across the U.S., the media does an effective job of scaring the heck out of the public--enough for you to run to your doctor or hospital to find out if you, too, could fall victim to heart disease. A stress test, perhaps heart catheterization, three stents or bypass often results.

In effect, these headlines make great hospital PR, an inducement that flushes out the patient highly motivated to pursue further costly heart testing--whether or not it's needed.

A sampling:

Stress test could help prevent sudden heart attack

DAWN ZERA Times Leader Correspondent

Bob Schultz, 67, was feeling a persistent pain in his back, which he was pretty sure was caused by working on a deck for his son’s home.

But after the deck was finished, the pain was still there.

“It was nagging, but not enough to hurt,” Schultz said.

He visited his primary care physician, thinking maybe some muscle relaxants would be prescribed. The doctor sent him to a clinic in Tunkhannock to do a complete body CAT scan, and then had Schultz do a stress test. The on-site cardiac stress testing at a Geisinger Medical Group office in Tunkhannock showed that things did not look good: Schultz had a blockage. He was scheduled for a cardiac catheterization.

It was a surprise; a heart problem had not even crossed Schultz’s mind as a possible cause of his back pain.

“I had good cholesterol, have been the same weight for years, and had excellent blood pressure,” Schultz said.

He went for the catheterization at Geisinger Wyoming Valley, and there doctors discovered Schultz’s condition was even more serious. He had three blockages – 99 percent, 95 percent and between 80 and 90 percent.

“It shocked the living daylights out of everyone. It was surreal,” Schultz said.

The catheterization turned into open heart surgery that very same day.

The surgery was on a Tuesday, and he was home by Sunday. He never even had time to fully think about having the operation. And he had never experienced the typical warning signs of a heart problem, such as chest pain or shortness of breath.

“The doctors said I had the worst alarm system they’d ever seen,” Schultz said. “They probably saved my life, with me not knowing I had a problem.”

It also made him think about his brother, who had had been in good health but suddenly died in his 40s of a suspected heart attack.

“We never had any heart problems in our family, so we never believed it. But now I think, geez, it probably was true,” Schultz said.

His experience has served as a cautionary tale for friends and family. Just this past month, a friend specifically requested a stress test for himself.

“It sets off alarms in your circle. People think ‘if it can happen to him, it could happen to me,’ ” Schultz said. “It triggered people to think about what could happen to them.”



Firefighter Saves Heart-Attack Victim on D.C. Court

ABC News

A 30-year-old man suffered a heart attack while playing basketball on a D.C. court.

That's when a Brian Long's firefighter training kicked into action. The 25-year-old D.C. firefighter's team had just finished their pick-up league game Friday evening at Lafayette Elementary School's basketball court when the man stumble to the ground.

"He ran a few feet and collapsed again so I turned him over and I looked at him his eyes rolled back and he just stopped breathing," Long said.

Long began performing chest compressions and soon he was joined by Anthony Gadson, a pharmaceutical sales representative, who learned CPR years ago and starting assisting with mouth to mouth resuscitation.

"If that were me, somebody would've done the same thing for me, so I feel like I did what I was supposed to do," Gadson explained.

While Long and Gadson worked to keep the victim's heart going, all the players and spectators, including teammate and league commissioner Bob Johnson, gathered around the lifesaving effort.

"We gathered in a circle and one of the wives of one of the players just led us in this huge prayer," said Johnson.

"It makes me feel great," Long told ABC 7/NewsChannel 8. "I am just glad that I am a D.C. Firefighter."



Free Drugs After Heart Attack Would Save Money, Lengthen Lives
More patients would take recommended medications, study says


By Ed Edelson

MONDAY, Feb. 18 (HealthDay News) -- Eliminating the cost of medications for people who have heart attacks would lead to longer lives and lower overall medical costs, new research suggests.

"These are highly effective medications that are relatively inexpensive, and the events they are designed to prevent are extremely expensive," said study author Dr. Niteesh K. Choudhry, a researcher in the division of pharmacoepidemiology and pharmacoeconomics at Brigham and Women's Hospital in Boston and an assistant professor at Harvard Medical School. His report is published in the Feb. 19 issue of Circulation.

The study covered four drugs commonly prescribed after heart attacks -- aspirin, beta blockers, ACE inhibitors or angiotensin receptor blockers (ARBs), and statins. Use of those drugs is relatively low under the current system, in which people share the cost with Medicare or other health insurance plans, Choudhry said. For example, only 46 percent of people take beta blockers after heart attacks, and only 50 percent take cholesterol-lowering statins. Less than 20 percent of heart patients used all four of the medications, according to the study.

The model set up by Choudhry and his colleagues doesn't assume a major increase in compliance with prescriptions, because "cost is just one reason why patients do not take medications," he said, adding that relying on previous studies of drug cost and use, the model assumes an increase of about 14 percent, with perhaps 64 percent of people taking the medicines if they were free.

The result would be an increase in average survival after a heart attack, from the present 8.21 quality-adjusted life years to 8.56 years. "That is small in an absolute sense, but in an aggregate sense, it is very large," Choudhry said.

And medical costs over a lifetime would go down, from the current $114,000 to $111,600, the study added.

"This study adds to a growing body of research showing how important it is to reduce or eliminate patient co-payment for drugs," said Robert M. Hayes, president of the Medicare Rights Center in New York. "Medicare should take the lead in forging the creation of drug coverage that allows patients to get the medications their doctors consider vital."

"It certainly makes sense from the medical point of view," said Dr. Richard A. Stein, a professor of medicine at New York University. "Studies have shown that giving even middle-income people free drugs improves outcome. The greatest benefit will go to people in the lower socioeconomic and immigrant population."

But the study is theoretical, Stein noted. "One would like to see some real-world trial to determine whether this works in fact, whether providing free drugs without co-payment would make a difference, he said.

Such a study has begun at Harvard, Choudhry noted. His group is working with a major health insurer, not Medicare, in a trial that assigns some people to get medications without cost, while others will get the standard co-payment.

"It will take several years for us to get answers," Choudhry said. But similar investigations are being started by other medical insurers and corporations, he added.

The idea is potentially applicable to some other chronic conditions, such as congestive heart failure and diabetes, Choudhry noted. And, if the use of recommended medications after a heart attack goes up more than predicted by the model, "the cost savings would be phenomenal," he said.

More information

To learn about how to stay on your statins, consult the National Heart, Lung, and Blood Institute.




Heart Attack Threatens Young, Old

BAKERSFIELD, Calif. -- Nearly 1.2 million men and women suffer a heart attack every year in the United States, according to the American Heart Association. However, not all of the victims are old.

Brian Connell considers himself a lucky guy. At the age of 39, he's physically active, he has a high-level job, and he is also a heart attack survivor. "I know I was overweight and obviously had some other risk factors against me," said Connell. "I wish I did more to prevent it, certainly."

Connell is doing plenty of things now. He met with a nutritionist and changed his diet. He gets regular exercise and takes medication to control his cholesterol. He also gets regular checkups.
Click here to find out more!

Cardiologist Jeffrey Popma said it's not unusual to see younger heart attack patients. "We have dozens of patients in our system every year who have been under 40 years old who have suffered a major heart attack," said Dr. Popma.

Popma said getting medical help quickly is the key to survival. Connell said that is what made all the difference for him. And when people ask him if that was his first heart attack, Connell said he is quick to tell them it was his last heart attack.

Copyright 2008 by TurnTo23.com. The Associated Press contributed to this report. All rights reserved.


The messages I take from such stories:

1) Get yourself to a hospital ASAP for any symptoms even vaguely suspicious of heart disease, because they will know what to do. You'll be doomed if you don't.

2) Hospitals and doctors are expert at saving you from the brink of disaster. The process, once you enter, is rapid and smooth and you will be eternally grateful.

3) Medicines save lives. You're going to die if you don't take medication.


As I've often said, one of the toughest battles of all in health and heart disease is sorting out fact from fiction. Unfortunately, the media continues to propagate the scare tactics that support the status quo of procedural heart care. Wittingly or unwittingly, they serve a $400 billion dollar a year gargantuan industry that remains hungry for growth.

Lost in the headlines are the messages that could have been included, like:

Heart disease detectable decades before disaster

Or:

"Heart disease preventable, reversible, and--curable?"



Copyright 2008 William Davis, MD

Which statin is best?

The statin drugs can indeed play a role in a program of coronary plaque control and regression.

However, thanks to the overwhelming marketing (and lobbying and legislative) clout of the drug manufacturing industry, they play an undeserved, oversized role. I get reminded of this whenever I'm pressed to answer the question: "Which statin drug is best?"

In trying to answer this question, we encounter several difficulties:

1) The data nearly all use statins drugs by themselves, as so-called monotherapy. Other than the standard diet--you know, the American Heart Association diet, the one that causes heart disease--it is a statin drug alone that has been studied in the dozens of major trials "validating" statin drug use. The repeated failure of statin drugs to eliminate heart disease and associated events like heart attack keeps being answered by the "lower is better" argument, i.e., if 70% of heart attacks destined to occur still take place, then reduce LDL even further. This is an absurd argument that inevitably encounters a wall of limited effects.

2) The great bulk of clinical data examining both the incidence of cardiovascular events as well as plaque progression or regression have all been sponsored by the drug's manufacturer. It has been well-documnted that, when a drug manufacturer sponsors a trial, the outcome is highly likely to be in favor of that drug. Imagine Ford sponsors a $30 million study to prove that their cars are more reliable and safer. What is the likelihood that the outcome will be in favor of the competition? Very unlikely. Such is human nature.

If we were to accept the clinical trial data at face value and ignore the above issues, then I would come to the conclusion that we should be using Crestor at a dose of 40 mg per day, since that was the regimen used in the ASTEROID Trial that achieved modest reversal of coronary atherosclerotic plaque by intravascular ultrasound.

But I do not advocate such an ASTEROID-like approach for several reasons:

1) In my experience, nobody can tolerate 40 mg of Crestor for more than few weeks, a few months at most. Show me someone who can survive and tolerate Crestor 40 mg per day and I'll show you somebody who survived a 40 foot fall off his roof--sure, it happens, but it's a fluke.

2) The notion that only one drug is necessary to regress this disease is, in my view, absurd. It ignores issues like hypertension, metabolic syndrome, inflammatory phenomena, lipoprotein(a), post-prandial (after-eating) phenomena, LDL particle size, triglycerides, etc. You mean that Crestor 40 mg per day, or other high-intensity statin monotherapy should be enough to overcome all of these patterns and provide maximal potential for coronary plaque reversal? No way.

3) Plaque reversal can occur without a statin agent. While statin drugs may provide some advantage in the reduction of LDL, much of the benefit ends there. All of the other dozens of causes of coronary atherosclerotic plaque need to be addressed.

So which statin is best? This question is evidence of the brainwashing that has seized the public and my colleagues. The question is not which statin is best. The question should be: What steps do I take to maximize my chances of reversing coronary atherosclerotic plaque?

The answer may or may not involve a statin drug, regardless of the subtle differences among them.


Copyright 2008 William Davis, MD

Lipoprotein(a)--neglected and unappreciated


Lipoprotein(a), or just Lp(a) to its close friends and neighbors, is among the most underappreciated and neglected of causes of coronary plaque. It's the Rodney Dangerfield of lipoproteins.

Lp(a) rarely gets diagnosed before people come to my office. They've often been through the ringer: doctors have thrown their hands up in frustration because of poor response to "standard" treatment (AKA statin drugs); the patient doesn't understand why they might be thin and active yet have the high blood pressure of someone 70 lbs heavier; they have heart disease despite wonderful cholesterol values.

One blood test and the answer becomes clear: They have Lp(a). It explains all these phenomena.

They why don't more physicians order this simple test? Why don't we hear more about this prevalent (1 in 5 people with coronary plaque have it) genetic pattern that accelerates risk for heart disease?

There are a number of reasons. But I believe the most powerful reason is simply that there is no big revenue-generating drug to treat it. Statins reduce LDL cholesterol to the tune of $27 billion dollars a year (2007 revenue). There's no such blockbuster for Lp(a). Of course, Niaspan represents the relatively anemic attempt to commercialize a pharmaceutical treatment for Lp(a), but side-effects and the lack of FDA trials for the Lp(a)-reducing indication have stalled its commercial success. (Efforts to block the flush with various products, by the way, may re-invigorate niacin as a pharmaceutical agent. The drug companies smell money here.)

Another reason for Lp(a)'s unpopularity: Though there are mounds of data that document--without question--that Lp(a) is an important risk for coronary disease and other forms of atherosclerotic disease, we lack treatment trials. For instance, niacin vs. placebo for 5 years, then count the number of heart attacks and deaths. We have numerous, repetitive, overlapping, redundant trials with statins adhering to this design. We have none for niacin and the treatment of Lp(a).

Niacin is also a pain in the neck for your doctor. He/she rapidly tires of the calls about the crazy and disconcerting flushing with niacin. Most are unaware that proper hydration reduces or eliminates the flush for the majority of people. It takes too much time and energy to educate people. (By the way, prescription Niaspan makes no mention of purposeful hydration. They only suggest the nonsensical "Take with a low-fat snack," i.e., snacks that actually counter the therpaeutic effects of niacin. What they should be saying is "take with a high-fat snack" like raw almonds, foods that facilatate the benefits of niacin.)

Should someone concoct a successful pharmaceutical treatment for Lp(a), it will make the news, headlines in health magazines and health sections of the newspaper will blare about how important Lp(a) is. Yet it has been there all along, frustrating people and their physicians.

In the Track Your Plaque experience, Lp(a) clearly 1) correlates with heart scan scores, 2) correlates with progression of heart scan scores without treatment, and 3) poses special challenges for treatment. Interestingly, some of our biggest failures have been with Lp(a), as well as some of our biggest successes. (Our current record holder for the largest percentage reduction in heart scan score has Lp(a).)

If you have coronary plaque, or if there is family risk of heart disease, then Lp(a), in my view, is an absolutely essential factor to test for. Yes, treatment poses challenges. But once you know who your enemy is, then you can focus your efforts on it. Not knowing whether or not you have it leaves your efforts unfocused and generally flawed.

Track Your Plaque Members, be sure to read our in-depth Special Report, Unique Treatments for Lipoprotein(a) Reduction.



Copyright 2008 William Davvis, MD