Heart disease reversal a big "No No"

I dare you: Ask your doctor whether coronary heart disease can be reversed.

My prediction is that the answer will be a flat "NO." Or, something like "rarely, in extraordinary cases," kind of like spontaneous cure of cancer.

There are indeed discussions that have developed over the years in the conventional scientific and medical literature about reversal of heart disease, like Dean Ornish's Lifestyle Heart Trial, the REVERSAL Trial of atorvastatin (Lipitor) and the ASTEROID Trial of rosuvastatin (Crestor). Reversal of atherosclerotic plaque in these trials tends to be small in scale and sporadic.

Of course, the medical literature is swamped with studies that have nothing to do with reversal, like what stent is best, what platelet-inhibiting intravenous drug is best, when should angioplasty or stents be used and when, do implantable defibrillators save lives, improvements in coronary bypass techniques, etc. There are tens of thousands of these studies for every study that focuses on the question of atherosclerotic plaque reversal.

The concept of reversal of heart disease has simply not gained a foothold in the lexicon nor in the thinking of practicing physicians. Heart disease is a relentlessly, unavoidably, and helplessly progressive disease in their way of thinking. Perhaps we can reduce the likelihood of cardiovascular events like heart attack and death with statin drugs and beta blockers. But reverse heart disease ? In your dreams!

We need to change this mentality. Heart disease is a reversible phenomenon. Atherosclerosis in other territories like the carotid arteries is also a reversible pheneomenon. Rather than throwing medicines and (ineffective) diets at you (like the ridiculous American Heart Association program), what if your doctor set out from the start not just to reduce events, but to purposefully reduce your heart's plaque? While it might not succeed in everyone, it would certainly change the focus dramatically.

After all, isn't this the theme followed in cancer treatment? If you had a tumor, isn't cure the goal? Would we accept an oncologist's advice to simply reduce the likelihood of death from cancer but ignore the idea of ridding yourself completely of the disease? I don't think so.

Then why accept "event reduction" as a goal in heart disease? We shouldn't have to. Heart disease reversal--elimination--should be the goal.

Demystification

Once upon a time, remember how medical information was mysterious, hospitals were places where frightening, inscrutable things happened, diseases were strange maladies that struck without reason, and obtaining information about health was like hunting for buried treasure? The full extent of many peoples' understanding of health came through relatively anemic sources like Readers' Digest. (Remember "I am Joe's Colon"?)

Compare this to what we have now. If I wanted to obtain information about ankylosing spondylitis (a rare genetic disease of the spine), a Google search yields 1.46 million citations. Not all the information, of course, is helpful or relevant, but there's certain to be a bounty of information that far exceeds what you could have uncovered 40 years ago.




Suppose you enter the search phrase "antithrombin III" into your Google search. Citations: over 900,000. (The number of search citations, in fact, exceeds the number of Americans with a deficiency of this blood clotting protein!)

The same is true with heart disease. There was a time, not more than 30-40 years ago, when information about the heart and heart disease was hard to come by. The most you would find were superficial discussions about heart attacks, what chest pain means, descriptions of bypass surgery. Ask your doctor, you'd likely receive a brief, cursory response about how you probably shouldn't worry it.

Even during medical school in the 1980s, I remember struggling to get answers to my questions from faculty during medical school and medical training. It was as if providing too much information would eliminate the advantage superiors wielded over trainees.

The same selfish sentiment, the "I know something you don't know" mentality reminiscent of a schoolboy's "naa na na naa naa!" unfortunately persists. But it is rapidly disintegrating. Soon it will join the junk heap of medical mis-information accumulated over the years (a big pile, to be sure). The internet and, I'll admit (grudgingly), the media, have been responsible for demystifying the formerly mysterious and indecipherable world of health.

You now have, at a moment's disposal, access to an extraordinary array and breadth of health information that was inconceivable just a few years ago.

Times are changing. Doctors no longer hold the monopoly over health information. The public--YOU--are rapidly becoming the arbiters of health, the informed consumers of a soon-to-be retail product called health care, and the increasingly savvy judges of what should join the mainstream path of health. It is all part of this wave of change that I've been advocating: the emerging concept of self-empowerment in healthcare.

Added to the junk heap of health-mistakes-of-years-past will be medical protectionism over health information, heart procedures, drug industry excesses, nutritional mis-information, among others. The demystification of health information will open the floodgates of individual insight into health. It delivers control over your own health destiny straight into your own lap.

Everything has omega-3

Walking the supermarket aisles, you may have lately noticed that numerous new products are appearing sporting "omega-3s" on the label.

Some products simply contain alpha-linolenic acid, a tiny amount of which is converted to the biologically active omega-3s, EPA and DHA. Natural Ovens' Brainy Bagel, for instance, carries a claim of "620 omega-3."



I find this confusing and misleading, since people will often interpret such a claim to mean that it contains 620 of EPA and DHA, similar to two capsules of standard fish oil (1000 mg capsules). Of course, it does NOT. I find this especially troublesome when people will actually stop or reduce their fish oil, since they've been misled into thinking that products like this bread contain active omega-3 fatty acids that yield all the benefits of the "real stuff."


Other products actually contain the omega-3, DHA, though usually in small quantities. Breyer's Smart with DHA is an example, with 32 mg DHA per container.


I find products with actual DHA (from algae) a more credible claim. However, the Center for Science in the Public Interest (CSPI) has looked at the actual contents of DHA in some of these products and found some discrepancies, including amounts of DHA less than the labeled amount and claims of omega-3 wihtout specifying DHA vs. linolenic acid. (It's probably linolenic acid, if it's not specified.)

All in all, the addition of DHA to food products is a nice way to boost your intake of this healthy omega-3. However, keep in mind that these are processed, often highly processed, foods and you will likely pay a premium for the little boost. For now, stick to fish oil, the real thing.

For a brief summary of the CSPI report and a link to the Nutrition Action Newsletter, see Omega-3 Madness: Fish Oil or Snake Oil.

Are cardiologists the enemy?

I'm sitting at dinner with two colleagues. One is a cardiology colleague, another an internist who, in addition to practicing general internal medicine, also takes heart disease prevention very seriously. He has, in fact, participated in the Track Your Plaque program and dropped his heart scan score substantially.

"Why don't we see you in the cath lab much?" my cardiology colleague asked me. He was puzzled, since he knew my background in cath lab work from years before, spending day and night doing procedure after procedure. He spends virtually all his days there.

"Well, my patients simply don't have events any more. Heart attacks and angina among people in my program are just about non-existent. They don't have symptoms and they don't have to go to the hospital. I can't remember the last time that I was woken up in the middle of the night for an urgent procedure for one of my patients."

The internist across the table smiled and expressed his agreement. "That's the same thing I'm seeing: No heart attacks, very few if any referrals to cardiologists for procedures. I remember when it was a several times a week thing. Now, almost never. "

Looking at my cardiology colleague, I saw the usual cardiologist reaction: Eyes searching left and right and behind us for something more interesting. Certainly, talking about a virtual cure for coronary heart disease was just too damn dull.

Such is the attitude of 98% of my colleagues: If it doesn't generate a revenue-producing procedure, why bother? Prevention is for general practitioners, the line of thinking goes. "And anyway, I'm too busy doing procedures! I don't ahve time to talk about prevention and health!" Of course, the poor general practitioner is already overloaded with caring for arthritis, flu, diabetes and all the new drugs for diabetes, headaches, vaccinations, diarrhea, and . . .oh, yes, heart disease prevention.

Are cardiologists the enemy? No, of course they are are not. But they often act like they are. Talking to cardiologists is like going to the car dealer with your checkbook out, pen in hand. The salesman gets to write the check himself and you just sign it. Talk to a cardiologist and more often than not you will end up with a heart procedure--whether or not you need it.

Unfortunately--tragically--they often forget what they are supposed to be doing: Taking care of a disease by preventing it. Putting in a defibrillator is not preventing a disease. Putting in three stents, laser angioplasty, and thrombectomy are not ways of preventing a disease.

I'm thankful for my internist friend who sees the light. Coronary heart disease is a an easily measurable, quantifiable, preventable, and REVERSIBLE process for many, if not most, people when provided the right tools. But don't ask your neighborhood cardiologists to give you those tools.

Are CETP inhibitors kaput?

Was torcetrapib’s crash and burn fatal for this class of drug?

At the 2007 American Heart Association meetings in Orlando, Florida, Dr. Philip Barter of Sydney, Australia, presented an update of the ILLUMINATE drug trial for the once-promising drug, torcetrapib, the billion-dollar bet that Pfizer made on its first entry into the new drug class.

You may recall that the crash and burn of Pfizer’s torcetrapib in December 2006 made headlines and prompted enormous disappointment for many patients and doctors who had hoped for a new drug choice to raise HDL cholesterol. Pfizer executives (heads flew!) and investors were also disappointed, anticipating release of a drug that might have become the number one biggest selling drug in the world—ever, surpassing even Lipitor's® $13 billion annual sales.

Torcetrapib is the first among the “cholesteryl-ester transfer protein inhibitors,” or CETP-inhibitors, drugs that block the exchange of cholesterol and triglycerides between HDL and VLDL particles and prevent formation of the unwanted small LDL particles. Preliminary efforts suggested that effects were positively enormous.

However, the 15,000-participant trial was abruptly terminated after 550 days when an excess of deaths were identified among the group taking the experimental drug: 59 deaths in control group; 93 deaths in the torcetrapib group.

In addition, cardiovascular events were 24% greater in the torcetrapib group, numbering 373 compared to 464 in the no-torcetrapib group, including a substantially greater number of heart attacks and hospitalizations. Another surprise came in the way of cause of death among some of the torcetrapib patients, with an excess of deaths due to cancers (twice as many in the torcetrapib group), strokes, and infections.

Why the divergence: enormous improvements in cholesterol values, yet increase in adverse effects including more heart attack? Deeper digging by the principal investigators uncovered unexpected distortions of electrolytes like sodium and potassium. They then re-analyzed blood samples from participants on both sides of the trial and discovered that participants taking torcetrapib experienced significant rise in the blood pressure hormone, aldosterone. This, they surmised, also likely accounted for the 4 mmHg average rise in blood pressure among those taking the experimental drug. (This is the same pathway blocked by blood pressure drugs like ACE inhibitors lisinopril and enalapril, ARBs like losartan.)

Simultaneously (what a coincidence!) with the torcetrapib data, investigators at competing drug manufacturer, Merck, reported encouraging data with their version of CETP inhibitor, anacetrapib. In a phase II FDA trial of 589 patients, anacetrapib reduced LDL-C levels by up to 40% and increased HDL-C up to 139%.


Spokesman Daniel Bloomfield, M.D., of Merck Research Laboratories reported that "The favorable lipid effects seen in this study with multiple doses of anacetrapib were significant, and confirm the continued evaluation of the clinical benefits of CETP inhibitors in the treatment of dyslipidemia." Quick to distinguish this drug from torcetrapib’s track record of dangerous effects on blood pressure, he added that "the decreased LDL-C concentrations, increased HDL-C concentrations and no demonstrable increase in blood pressure seen with anacetrapib are particularly encouraging results of this study."

However, the data reported only an 8 week expereince. Given the experience with torcetrapib, longer term data will obviously be required to assess safety. After Pfizer spent over $1 billion and sacrificed lives to obtain this experience, Merck will need to tread carefully.

It will clearly be many years before we have a confident answer on whether the CETP-inhibitor class of drugs will be a safe choice for correction of cholesterol abnormalities, especially low HDL. Are we helpless until then?

Though CETP inhibitors offer the potential for a one-stop opportunity to raise HDL substantially, there are still many strategies available to raise HDL.

Strategies that raise HDL and are available today include:
• Weight loss—to your ideal weight. A very effective strategy.
• Reduction in processed carbohydrates—like breads, pasta, cookies, pretzels, etc. Note that very low-fat diets reduce HDL. Often a huge effect.
• Fish oil—A small effect, more dramatic when triglycerides are high.
• Niacin—Vitamin B3, the best we have at present. Doses of 500-1500 mg per day raise HDL 20–50%; work with your doctor if you are contemplating niacin. We use this agent everyday and have had great success; good hydration is key to minimize the annoying “hot-flush” effect.
• Dark chocolate—40 grams, or about 2 inches square, a delicious way to squeeze out a little rise in HDL.
• Alcoholic beverages—Red wines are almost certainly the preferred route, rich in flavonoids.
• Exercise—HDL-raising effects vary, but can sometimes be as much as 10–20 mg.
• Other drugs—Though not commonly used for this effect, drugs like pioglitazone (for diabetes and pre-diabetes); fibrates (Tricor® or fenofibrate; Lopid® or gemfibrozil); and Pletal® or cilostazol are occasionally prescribed.
• Vitamin D—You won’t find validation of this effect in any scientific study, but our emerging experience in our heart disease reversal program is suggesting that this neglected nutrient can exert powerful HDL-raising effects. In fact, supplementing vitamin D has made my life much easier.


And, last I checked, none of these HDL-raising strategies are ever fatal.

Roto Rooter for plaque




Joe, a machinist, was frightened and frustrated.

With a heart scan score of 1644 at age 61, his eyes bulged when I advised him that, if preventive efforts weren't instituted right away, his risk for heart attack was a high as 25% per year. Joe had "passed" a stress test, thus suggesting that, while coronary plaque was present--oodles of it, in fact--coronary blood flow was normal. Thus, there would be no benefit to inserting three stents, say, or a bypass operation.


(Illustration courtesy Wikipedia)

"I don't get it, doc. Why can't you just take it out? You know, like Roto-Rooter it out? Or give me something to dissolve it!"

Of course, if there were such a thing, I'd give it to him. But, of course, there is not. It doesn't mean that there haven't been efforts in this direction over the years. Among the various attempts made to "Roto-Rooter" atherosclerotic plaque have included:

Coronary endarterectomy
This is a drastic procedure rarely performed anymore but enjoyed some popularity in the 1980s and 1990s. Coronary endarterectomy was performed during coronary bypass surgery, but few thoracic surgeons performed it. Milwaukee's Dr. Dudley Johnson was the foremost practitioner of this procedure (retired a few years ago after his own bypass operation) with a mortality in excess of 25%. A very dangerous procedure, indeed. The technical hurdle, beyond the tedium and length of time required to remove plaque that had a tendency to fragment, was blood clot formation after tissue was exposed upon plaque removal. I saw many lengthy hospital stays and deaths following this procedure.

Coronary atherectomy
This is an angioplasty-type procedure that has gone through several variations over the years.

In the early 1990s, transluminal extraction atherectomy (TEC) was a technique involving low-rpm drill bits with a suction apparatus that was used to clear soft debris, usually from large coronary arteries or, more commonly, bypass grafts. Then came direction atherectomy, in which a steel housing contained a sharp drill bit that captured atherosclerotic plaque in an aperture along the housing length and stuffed it into a nosecone, retrieved once the device was removed.

Then came high-speed rotational atherectomy in which a diamond-tipped drill bit rotated up to 200,000 rpm and essentially pulverized plaque to flow downstream and, presumably, eventually captured by the liver for disposal. Rotational atherectomy is still in use on occasion. Laser angioplasty, usually using the excimer wavelength, vaporizes plaque. I did plenty of all of these back in the early and mid-1990s.

While all atherectomy procedures sound clever, they are all plagued by the same problem: vigorous return of plaque. Remove plaque, it grows back. There are few instances today in which atherectomy is still performed.

Chelation
This involves a metal-binding, or "chelating," agent like EDTA normally used in conventional practice for lead poisoning. Usually administered IV, some have also advocated oral use. People who use chelation also tend to believe in faith healing and other practices based on faith, not science. There is an international trial that is nearing completion that should provide the final word on whether there is any role to intravenous chelation.

There are numerous other oral treatments that claim a Roto-Rooter-like effect. Nattokinase, for example--an outright, unadulterated, and unqualified scam.

Unfortunately, the helpless, ignorant, and gullible are many. When frightened by the specter of heart disease, there are plenty of people who will willingly pay for the hope provided by clever ads, fast-talking salespeople, and unscrupulous practitioners.

So, Joe, there is no Roto-Rooter for coronary atherosclerotic plaque, at least one that is safe, doesn't involve a life-threatening effort, provides results that endure beyond a few months, and truly works.

The Track Your Plaque program may not be easy. There are obvious common hurdles to adhering to these concepts: obtaining lipoprotein testing, getting intelligent interepretation of the results, persuading your doctor to measure vitamin D blood levels, battling the onslaught of prevailing food propaganda that confuses and misleads. The Track Your Plaque program also requires time, at least a year.

But it's the best program there is. Do you know of anything better?

"Beware nutritional supplements"



In our effort to expand the reach for the nationwide conversation on heart disease reversal, I'd like to welcome the newest contributor to the Track Your Plaque family, a new Member blogger, Heart Cipher.

We first came to appreciate the insights of Heart Cipher on our Member Forum. His curiousity and ability to cut through the bull--- have won over our hearts and minds. I think you will appreciate his unique perspective as someone who has experienced first hand the inadequacies of the present procedure-focused, drug-obsessed standard of medical care that dominates, yet has the intelligence and worldliness to recognize that there are better ways.

Read his post about meeting a new cardiologist for the first time and the reaction he receives when he describes the Track Your Plaque program here.

http://www.heartcipher.com/

The rules of reversal


For the last few years, most practicing physicians have followed a rough blueprint for cholesterol management provided by the Adult Treatment Panel-III “consensus” guidelines, or ATP-III, a lengthy document last released in 2001, updated in 2004.

For instance, ATP-III suggests reducing LDL cholesterol to 100 mg/dl or less for those deemed to be at high risk for future heart disease, arbitrarily defined as a risk of 20% over a 10-year period. It also suggests that a desirable triglyceride level is no more than 150 mg/dl. The ATP-III guidelines have been the topic of discussion in thousands of medical meetings, editorials, and reports. They have served as the basis for many dinners at nice restaurants, weeks in Vegas or Honolulu, many, many lunches catered by pharmaceutical representatives. For most internists, family doctors, cardiologists, and lipid clinics, ATP-III is the Bible for cholesterol management.

AT-III has also become the de facto standard that could conceivably held up as the prevailing "standard of care" in a court of law in cases of presumed negligence to treat cholesterol values. “Doctor, would you agree that the consensus guidelines issued by the National Institutes of Health and endorsed by the American Heart Association state that LDL cholesterol should be reduced to 100? You do? Then why was Mr. Jones’ LDL not addressed according to these guidelines?”

Who was on the ATP-III panel and on what scientific evidence were the guidelines based? Several problems:

1) Of the 9 physician members of the panel, 8 had ties to industry, some of them quite intimate.

2) The studies upon which the guidelines were based and figure prominently, such as the Heart Protection Study, PROVE IT, and 4S, were all funded by the pharmaceutical industry. Of course, it would be unreasonable to expect anyone other than the pharmaceutical industry to fund drug studies. But prominently neglected or understated in the guidelines are all the other insights and treatments for coronary atherosclerotic risk available that were NOT funded by industry.

Of course, there’s money to be made in reducing LDL cholesterol. Lots of it--$23 billion last year alone, in fact. Just keeping that fact in mind makes the ATP-III guidelines make far better sense.

ATP-III is really not a blueprint for heart disease prevention. It is a blueprint--by industry, for industry--on how and when to treat LDL cholesterol.


But what if ATP-III had been a map for navigating coronary plaque reversal instead? What if it were not obsessed with just reducing LDL cholesterol, but was focused on providing the corner internist, family doctor, or cardiologist a roadmap for navigating the highways and byways of reversal?

That would be interesting. Mainstream reversal. Imagine that.

Among the difficulties is that the path to reversal is not lined with deep pockets. Treat LDL and who gains? That's easy. Reverse heart disease and who gains? Beyond LDL reduction, very few (beyond you and me, of course).

That’s why the call for a new Age of Self-Empowerment in healthcare is necessary now more than ever. In my view, in the foreseeable future, we will not have an ATP-III-like blueprint for heart disease control or reversal, nor will we witness a boom of nationwide appreciation that coronary atherosclerosis is a reversible process.

It’s time to take the control back and put it in our own hands. Don't expect the American Heart Association to do it. Don't expect the pharmaceutical industry to do it. If there's anyone who's going to do it, it's YOU.

Incurable wheataholics

Greg slumped back in his chair.

"I'm sorry, doc. I feel like the world's biggest schlump!"

He was referring to the fact that he had gone wheat-free for two months--eliminated all breads, bagels, donuts, pasta, breakfast cereals, crackers, pretzels--and promptly lost 30 lbs. He felt great, discovered new levels of energy he thought he'd lost long ago.

Then some friends convinced him to have some cheeseburgers at a fast food restaurant.

"After that, it was downhill. I couldn't get enough. My wife made chile and I had to have four slices of bread with it. Then I'd have two more. I just couldn't stop."

Now, having regained the 30 lbs in the space of another two months, Greg was expressing his disgust.

And it's not the first time. Greg has struggled with his wheat-alholism for as long as I've known him. I've tried motivating him by showing him the flagrant lipoprotein patterns that his wheat habit and excess weight caused: markedly elevated LDL particle number, severe small LDL, low HDL, high triglycerides, high C-reactive protein, high blood sugar, high blood pressure. Greg has received a total of 7 stents over the past 5 years. His next stop is the operating room for a bypass if he can't bring his patterns and impulses under control.

But for some reason, Greg seems to always return to the wheat trough, gorging on breads, pretzels, cake, often in great quantities.

I'm not entirely sure what to do with someone with Greg's severe degree of wheat-aholism. I view wheat-aholism as similar to alcoholism. For some, it can be as addictive.

The only strategy that I know can work is to make a clean break and drop wheat products altogether. Just as an alcoholic cannot just satisfy him/herself with a drink or two a day, so a wheataholic can't be satified with just a couple of wheat crackers. It inevitably leads to the avalanche of wheat indulgences.

Perhaps we should form a new group: Wheataholics Anonymous. "Hi. My name is Greg and I'm a wheataholic."

The battle for asymptomatic disease

The heart disease revenue pie is shrinking. So is the "serving size" being shared by competing hospitals.

In other words, as more hospitals open heart programs, there is more competition for the same heart patient. Throw into the mix the drop in "acute" presentations of disease, probably due to the now widespread prescribing of statin drugs. When I first started cardiology practice 15 years ago, for instance, days and nights spent taking care of heart attacks coming through the emergency room was a common event. It still happens, but far less frequently. (I don't mean to suggest that the actual prevalence of coronary heart disease has decreased, just the acute, catastrophic version of it.)

Throw into this mix the results of the COURAGE Trial that has put a damper on the value of stents and angioplasty vs. "optimal" medical therapy in people with stable anginal symptoms, since there was little advantage of procedures. Though it has not stopped the practice, it has reduced the enthusiasm for procedures. Though data are hard to come by, I've heard talk of 10% or greater drops in total procedural volume over the past year.

It's not uncommon for hospitals to have overbuilt heart facilities in anticipation of continued growth of this--until recently--growth industry called heart disease. However, factors are converging that may provide a new profit opportunity for hospitals.

One such opportunity is CT coronary angiography. The usual scenario: Man or woman without symptoms is persuaded somehow--an ad, primary care physician, next door neighbor with a scary event, Dr. Mehmet Oz gushing about this sexy new technology on yet another Oprah episode--to undergo a CT coronary angiogram. A "severe" blockage is found, despite the lack of symptoms, and voila! A stent patient or bypass patient is created out of nothing! Do this repeatedly and systematically, and a hospital can regain its former high-procedural volume glory.

Heart scans, though I believe deeply in them and they are the basis for the Track Your Plaque prevention and reversal program, can also be used and abused this way. Asymptomatic person has a score 150. Concerned, they go to their physician who orders a nuclear stress test. An "inferior perfusion defect" is seen, presumably representing poor flow through the right coronary artery (but often just means that the diaphragm overlaps the heart muscle and yields this apparition, a "false positive" or misleading result). "But--wink--we've got to find out if there's a severe blockage, don't we? You don't want to end up in an early grave!"

Thus, the battle for new patients with asymptomatic disease is getting underway in earnest. The scramble for cardiologists to learn how to use CT coronary angiograms is proceeding at breakneck speed, with new training courses being offered nationwide several times and places every month. CT coronary angiography is a useful test, but it is also subject to enormous abuse. It also provides the ticket for the unscrupulous physician and the revenue-hungry hospital eager to expand its patient volume.

Many people believe that this cannot happen commonly in 2007, given scrutiny of practices, litigiousness, and the expectation of a moral sense in medicine. However, I've witnessed such incidents several times this month alone. If you need graphic proof of just how far this can go before action is taken, read Coronary, Stephen Klaidman's chilling tale of a cardiologist and cardiothoracic surgeon in small-town northern California who built an enormous heart center based on fabricated heart disease diagnoses. You'll also find their story in Shannon Brownlee's recently released Overtreated: Why Too Much Medicine Is Making Us Sicker and Poorer.





Of course, the Track Your Plaque program is meant principally for people without symptoms, also. But we are advocating that asymptomatic disease is a reason for prevention, not procedures. There's a difference.

By the way, the two practitioners who engineered the escapade detailed in these books, cardiologist Chae Hyun Moon and cardiac surgeon Fidel Realyvasquez, walked away with a monetary fine and suspension of their California medical licenses. It is likely that many people died because of their abusive practices, but the state struggled to make a sufficiently persuasive case for reasons that I still don't understand.

The Framingham Crap Shoot

The Framingham risk score is a risk-assessment tool that has become the basis for heart disease prediction used by practicing physicians.

The Framingham system determines that:

· 35% of the adult population in the U.S., or 70 million, is deemed “low-risk.” Low-risk is defined as the absence of standard risk factors for heart disease; low-risk persons have no more than a 1-in-20 chance (5%) of dying from heart disease in the next 10 years. Physicians are advised by the American Heart Association (AHA) and its experts that no specific effort at risk reduction is necessary.

· 25%, or approximately 50 million, U.S. adults are deemed “high-risk,” based on the presence of 2 or more risk factors. High-risk persons experience a 20%-30% likelihood of heart attack in the next 10 years. People at high-risk are candidates for preventive efforts according to the guidelines set by the Adult Treatment Panel-III (Expert Panel on Detection, Evaluation, and Treatment of High Blood Cholesterol in Adults; ATP-III) for cholesterol-reducing statin drug treatment and for “lifestyle-modifying” advice.

· The remaining 40% of the adult population, or 80 million people, are judged “intermediate-risk,” with the likelihood of heart attack between 5-20% over the next 10 years. This group should receive preventive advice and might be considered for statin drug treatment.


Let’s do some arithmetic. By the above scheme, the low-risk population will experience 3,500,000 heart attacks over the next decade, or 350,000 heart attacks per year.

The intermediate-risk population (without preventive treatment) will experience 8,000,000 heart attacks over the 10-year time period, or 800,000 per year.

The high-risk population, the group most likely to receive standard advice on diet, exercise, and be prescribed statin cholesterol drugs, will have their risk reduced by 35% by preventive efforts over the 10-year period. This means that heart attacks over 10 years will be reduced from 12,500,000 to 8,125,000 by standard prevention efforts, or reduced to 812,500 heart attacks per year.

These numbers are no secret. They are well known facts that have simply come to be accepted by the medical community. In other words, the standard approach to heart attack prediction makes the fact that two million people will succumb to cardiovascular events in the next year no mystery. This exercise in prediction is coldly accurate when applied to a large population.

The problem is that this approach cannot reliably distinguish which individuals will have a heart attack from those who will not.

From 100 people chosen at random, for instance, the numbers game played above will not confidently identify who among those 100 will have a heart attack, who will not, who will develop anginal chest pains and end up with stents or bypass surgery, or who will die. We just know that some of them will. Some people at high risk will have a heart attack, some people at intermediate risk will have a heart attack, some people at low risk will have a heart attack.

For any specific individual (like you or me), it’s a crap shoot.

That's why precise individual measurement of cardiovascular risk is required for real risk assessment, not applying broad statistical observations and forcing them to conform to the unique life of a specific individual, particularly risk calculators with as few risk parameters as the Framingham risk score.

At what score should a heart catheterization be performed?

That's easy: NONE.

(Although I've addressed this previously, the question has come up again many times and I thought it'd be worth repeating.)

In other words, no heart scan score--100, 500, 1000, 5000--should lead automatically to procedures in someone who underwent a heart scan but has no symptoms.

This question is a common point of confusion.

In other words, is there a specific cut-off that automatically triggers a need for catheterization?

In my view, there is no such score. We can't say, for instance, that everybody with a score above 1000 should have a catheterization. It is true that the higher your score, the greater the likelihood of a plaque blocking flow. A score of 1000 carries an approximately 25-30% likelihood of reduced blood flow sufficient to consider a stent or bypass. This can nearly always be settled with a stress test. Recall that, despite their pitfalls for uncovering hidden heart disease in the first place, stress tests are useful as gauges of coronary blood flow.

But even a score of 1000 carries a 70-75% likelihood that a procedure will not be necessary. This is too high to justify doing heart catheterizations willy-nilly.

Unfortunately, some of my colleagues will say that any heart scan score justifies a heart cath. I believe this is absolutely, unquestionably, and inexcusably wrong. More often than not, this attitude is borne out of ignorance, laziness, or a desire for profit.

Does every lump or bump justify surgery, radiation, and chemotherapy on the chance it could represent cancer? Of course not. There is indeed a time and place for these things, but judgment is involved.

In my view, no heart scan score should automatically prompt a major heart procedure like heart catheterization in a person without symptoms. If a stress test is normal, signifying normal coronary flow (and there are no other abnormal phenomena, such as abnormal left ventricular function), then there is no defensible rationale for heart procedures. Heart procedures like stents and bypass cannot prevent heart attacks in future; they can only restore flow when flow is poor, or stop the heart attack that is about to occur.

However, EVERY heart scan score above zero is a reason to engage in a program of prevention.

"It's genetic"

At 53, Sam had been through the wringer with heart disease. After his first heart attack at age 50, he'd undergone four heart catheterizations, 5 stents, and, most recently, a bypass operation. He came to us to see if there was a better solution.

After hearing Sam's story, I asked,"Did your doctors suggest to you why you had heart disease?"

"Well, they said it was genetic, since my father went through the same thing in his early 50s, though he died after his second heart attack at age 54. They said it was bad luck and nothing could be done about it."

Though Sam's case is more dramatic than most, I hear this argument every day: Risk for heart disease is genetic.

It's true: There are indeed multiple reasons for inheriting causes for coronary heart disease, genes that heighten inflammatory responses, oxidative responses, modify lipoprotein particles, increase blood pressure, etc. There has even been some excitement over developing chromosomal markers for heightened risk.

That's all well and fine, but what can we do about it today?

In practical life, many inherited genetic patterns can be expressed in ways that you and I can identify--and correct. They are not chromosomal markers, but end products of genetic patterns. (Although there are indeed identifiable chromosomal markers, they have not yet led to meaningful treatments to my knowledge.)

These readily identifiable patterns include:

--Lipoprotein(a)--Clearly genetically transmitted, passed from mother or father to each child with a 50% likelihood, then you onto your children if you have it.

--Small LDL--Although small LDL is amplified by high-carbohydrate diets and obesity, it can also occur in slender people who do not indulge in carbohydrates --i.e., a genetic tendency. Or, it can be a combination of poor lifestyle magnifying the genetic tendency for small LDL.

--Low HDL--Particularly the extremes of low HDL below 30 mg/dl. (Although, interestingly, I am seeing more of these people, though not all, respond to vitamin D replacement. Perhaps an important subgroup of low HDL people are really Vitamin D Receptor (VDR) variants.)

--ApoE--Two variants are relevant: ApoE2 and ApoE4. In my experience, it's the E2 that carries far greater significance, though the data are somewhat scanty. ApoE4 people are more sensitive to the fats in their diet (greater rises in LDL with fats; thus, some people advocate a tighter saturated fat restriction with this pattern, though I am not convinced that is the best solution), while ApoE2 people are exceptionally sensitive to carbohydrates, develop extravagant increases in triglycerides, and are very diabetes-prone with even the most minimal weight gain. If two "doses" of the E2 gene are present (homozygotic), then the tendencies are very exagerrated. E4 people are also subject to greater likelihood of Alzheimer's, though it is not a certain risk in a specific individual.

--Postprandial disorders--We use the fasting intermediate-density lipoprotein (IDL) as an easy, obtainable index of the ability to clear after-eating byproducts of meals from the blood. Increased IDL has been related to increased coronary, carotid, and aortic aneurysmal disease.

--Hypertriglyceridemia-i.e., increases in triglycerides, While not all forms of high triglycerides confer risk for atherosclerosis, many do, particularly if associated with IDL, small LDL, increased LDL particle number and/or apoB.


There are more, but you get the point. There are clear-cut genetically-transmitted reasons for greater risk for cardiovascular disease. Some, like lipoprotein(a), yield very high risk. Others, like increased triglycerides, yield mixed levels of risk.

Importantly, all of these patterns--ALL--are identifiable and are treatable. Treatment may not always be the easiest thing, but they are treatable nonetheless. While lipoprotein(a), for instance, is the most difficult pattern to correct in the above list, I remind everyone that our current "record holder" for reversal of plaque and heart scan scores--63% reduction--has lipoprotein(a) that we corrected.

If you've been told that your risk for cardiovascular disease or coronary plaque is "genetic" and thereby uncorrectable and hopeless, run the other direction as fast as you can. Get another opinion from someone willing to take the modest effort to tell you precisely why.

Tim Russert Revisited

A Heart Scan Blog reader brought this piece by Dr. MacDougall to my attention.

Dr. MacDougall created a fictitious posthumous conversation between himself and the late Tim Russert. MacDougall paints a picture of a hardworking, hard-living man who adhered to an overindulgent lifestyle of excessive eating. He concludes that a vegetarian, low-fat diet would have saved his life.

Beyond being disrespectful, I would differ with Dr. MacDougall’s assessment. In fact, I’ve heard an interview with Mr. Russert’s primary care physician in which the doctor claimed that Mr. Russert had been counseled on the need for a low-fat diet and, in fact, adhered to it quite seriously. Far from being an overindulgent, overeating gourmand, he followed the dictates of conventional dietary wisdom according to the American Heart Association. The low-fat diet articulated by Dr. MacDougall is simply a little more strict than that followed by Mr. Russert.

What exactly could Mr. Russert have done to prolong his life? Several basic strategies:

--Added fish oil. This simple strategy alone would have reduced the likelihood of dying suddenly by almost half.

--Eliminated wheat and cornstarch—Mr. Russert developed diabetes in the last few years of his life. By definition, diabetes is an inability to handle sugars and sugar-equivalents. Wheat and cornstarch yield immediate and substantial surges in blood sugar greater than table sugar; elimination causes weight to plummet, blood sugar to drop, and diabetes (at least in its early phases) can be eliminated in many people, particularly those beginning with substantial excess weight.

Just those two strategies alone would more than likely have avoided the tragic death that brought Mr. Russert’s wonderful life and career to an abrupt end.

Of course, he could have even taken his heart health program even further, as we do in the Track Your Plaque program. While the conversation has focused on how to avoid tragic events like sudden cardiac death, why not take it a step farther and ask, "How can coronary plaque be measured, tracked, and reversed?"

In that vein, Mr. Rusert could have restored vitamin D to normal levels; identified all hidden sources of heart disease using lipoprotein testing (though he had small LDL without a doubt, given his generous waist size, HDL of 36 mg/dl and high triglycerides); considered niacin. Simple, yet literally lifesaving efforts, that make reversal much more likely.

Those simple steps, in fact, would have tipped the scales heavily in Mr. Russert’s favor, making a heart attack and/or sudden death from heart disease exceptionally unlikely.

Water: Bottled vs. tap

The Fanatic Cook has a great post discussing the findings of the Environmental Working Group (EWG) on the quality of bottled water.

The full text of the study from the EWG can be viewed here.

They report that "the bottled water industry promotes an image of purity, but comprehensive testing by the Environmental Working Group (EWG) reveals a surprising array of chemical contaminants in every bottled water brand analyzed" . . . After analyzing 10 brands, they conclude that "tests strongly indicate that the purity of bottled water cannot be trusted. Given the industry's refusal to make available data to support their claims of superiority, consumer confidence in the purity of bottled water is simply not justified."

"EWG's study has revealed that bottled water can contain complex mixtures of industrial chemicals never tested for safety, and may be no cleaner than tap water. Given some bottled water company's failure to adhere to the industry's own purity standards, Americans cannot take the quality of bottled water for granted. Indeed, test results like those presented in this study may give many Americans reason enough to reconsider their habit of purchasing bottled water and turn back to the tap."


For these reasons, as well as environmental reasons (plastic bottles filling up dumpsites), I think it is becoming clearer and clearer that bottled water is something we should only use in a pinch, not habitually.

Can CRP be reduced?

The JUPITER study has sparked a lot of discussion about c-reactive protein, or CRP.

If we follow the line of reasoning that prompted this study, reducing CRP may correlate with reduction of cardiovascular events. Thus, in the JUPITER study, Crestor 20 mg per day reduced cardiovascular events by nearly half.

From a CRP perspective, starting values were 4.2 mg/dl in the Crestor group of the trial, 4.3 mg/dl in the placebo group. After 24 months, CRP in the Crestor group was 2.2 mg/dl, 3.5 mg/dl in the placebo group, representing a 37% reduction.

Now, in our Track Your Plaque program--an experience that has yielded the virtual ELIMINATION of cardiovascular events--we aim for a CRP level of 1.0 mg/dl or less, ideally 0.5 mg/dl or less. The majority of people achieve these ambitious levels. In fact, it is a rare person who does not.

How do we achieve dramatic reductions in CRP? We use:

--Weight loss through elimination of wheat and cornstarch--This yields impressive reductions.

--Vitamin D--I have no doubt whatsoever of vitamin D's capacity to exert potent anti-inflammatory effects. I am not entirely sure why this happens (enhanced sensitivity to insulin, reduced expression of tissue inflammatory proteins like matrix metalloproteinase and others, etc.), but the effect is profound.

--Elimination of junk foods--like candies, cookies, pretzels, rice cakes, potato chips, etc.

--Exercise--Amplifies the benefits of diet on CRP reduction.

--Not allowing saturated fats to dominate--Yes, yes, I know. The demonization of saturated fat conversation has been largely replaced by the Taubesian saturated fat has not been confidently linked to heart disease conversation. But controlled feeding studies, in which a single component of diet is manipulated (e.g., saturated vs. monounsaturated vs. polyunsaturated fat) have clearly shown that saturated fats do activate several factors in the inflammatory response.

--Fish oil--Though I am a firm believer in the huge benefits of omega-3 fatty acid supplementation/restoration, the anti-inflammatory effect is modest from a CRP perspective. However, there are anti-inflammatory benefits beyond that of simple CRP (via normalization of eicosanoid metabolism and other pathways).

--Weight loss--A BIG effect. Weight loss drops CRP like a stone. The CRP-reducing effect is especially large if achieved via carbohydrate reduction.

Of course, this is much more complicated than taking a pill. But it is effective to achieve health benefits outside of cardiovascular risk, is enormously useful as part of a weight loss effort, and doesn't cost $1400 per year like Crestor.

In short, if CRP reduction is the goal, it certainly does not have to involve Crestor.

CRP and Jupiter

What is C-reactive protein (CRP)?

It is a blood-borne protein that originates in the liver and serves as an index of the body's inflammatory state. It is triggered by yet another inflammatory signal molecule, interleukin-6.

What triggers this cascade of inflammatory markers? Any inflammatory stimulus, such as being overweight, lack of exercise, vitamin D deficiency, viral illness no matter how trivial, any inflammatory disease like arthritis, small LDL, high triglycerides, poor diet rich in processed foods, resistance to insulin, any injury, incipient diabetes, hidden cancer, lack of education (no kidding), etc.

In other words, many, many conditions, from trivial to serious, trigger increased inflammatory markers like CRP.

A recent analysis (Genetically elevated C-reactive protein and ischemic vascular disease of persons with genetically elevated levels of CRP) suggests that CRP does not, by itself, cause atherosclerotic disease. CRP is therefore simply a marker for conditions that heighten inflammatory responses.

The AstraZeneca people sponsored the enormous JUPITER study of the statin drug, Crestor, that has been causing a stir, mostly glowing pronouncements of how the world would be a better place if everyone took Crestor.

In JUPITER, nealry 18,000 people (men 50 years and over, women 60 years and over) took 20 mg per day Crestor for two years. Participants all had starting LDL cholesterols in the "normal" range of no higher than 130 mg/dl and elevated CRP of 2 mg/dl or greater.

Crestor treatment resulted in 44% reduction in nonfatal heart attack, nonfatal stroke, hospitalization for unstable angina, revascularization (bypass surgery, stents) and death from cardiovascular causes. The reduction in nonfatal heart attack was most marked at 55%.

Admittedly, these are impressive results. Benefits held true for both males and females. At the very least, JUPITER should put to rest some of the fringe arguments that statins do not reduce cardiovascular events. They do. There is no sense in arguing against that. While we might argue about the value of statins in various subsets of people, there is no doubt that they do indeed exert a significant effect.

However, contrary to the hype and broad pronouncements of my colleagues, my concerns are:

1) Rather than shotgun the inflammatory response with a statin drug regardless of cause, doesn't it make more sense to ask why a specific individual has an increased CRP in the first place? For instance, if the answer is vitamin D deficiency, doesn't correction of the deficiency make more sense? (Vitamin D by itself reduces CRP around 60%--more than statin drugs.) Not to mention you obtain all the extraordinary benefits of vitamin D restoration, such as reduced cancer risk, increased bone density, relief from winter "blues," rise in HDL, etc. How about junk foods, obesity, and unrelated inflammatory conditions? Would we therefore indirectly be treating obesity with Crestor?

2) Crestor 20 mg per day, contrary to the study and to many statin studies, will not be tolerated for long by the majority. Muscles aches are not common--they are inevitable, sometimes incapacitating. While JUPITER showed 15% of both treatment and placebo groups experienced muscle effects--no different--this is wildly contrary to real life.

3) While there was a 55% reduction in the number of heart attacks, there continued to be a substantial number of heart attacks in the Crestor treatment arm. Clearly, reduction of CRP with Crestor, while helpful, is not a cure.

I view studies like JUPITER as simply an interesting piece of semi-scientific evidence, tainted to an unknown degree by commercial interests (including those of Dr. Paul Ridker, one of the principal investigators). It is not a mandate to use Crestor carte blanche in people with elevations of CRP.

My interpretation of these data in a practical sense is that Crestor 20 mg per day as sole therapy is useful in a disinterested, non-compliant patient who is unwilling to make substantial changes in lifestyle and nutrition. Helpful? Yes, but hardly an invitation for the world to take Crestor.

I believe that doesn't include any of the readers of this blog.

Nutritional approaches: Large vs. small LDL














It is now a rare person who does not have at least some proportion of their LDL cholesterol as small particles. I estimate that, of the people who come to the office or report their data on the Track Your Plaque website, 90% have at least 40-50% small LDL particles. Some people have 100% small LDL particles. The sample NMR lipoprotein report shows the result for someone with a severe small LDL pattern (the tallest red bar labeled 1354 nmol/L, compared to the 74 nmol/L of the tiny red bar of large LDL.)

The nutritional approach for small vs. large LDL differs. Small LDL particles are most sensitive to carbohydrate intake; large LDL particles are more sensitive to saturated fats.

The conventional "heart healthy" diet that restricts saturated fat reduces large LDL but exerts no effect on small LDL. Thus, a diet that is restricted in saturated fat and weighed more heavily with "healthy whole grains" triggers small LDL particles. Followers of the conversations here recognize that small LDL particles are flagrant triggers for coronary plaque; they have, in fact, become the number one most common cause for heart disease in the U.S.

When you have lipoproteins tested, you can therefore gauge the likely result obtained when specific dietary changes are made. Follow the low saturated fat advice, large LDL will drop modestly, but small LDL skyrockets.













(Image courtesy Liposcience, Inc.)


Eliminate sugars, wheat, and cornstarch and you will see small LDL plummet (along with total LDL).

As an aside, my personal observation is that the "need" for statin cholesterol drugs can be reduced dramatically by paying attention to this important LDL size distinction.

Factory hospitals

Twenty years ago, the American farming industry experienced a dilemma: How to grow more soybeans, corn, or wheat from a limited amount of farmland, raise more cattle and hogs in a shorter period of time, fatter and ready for slaughter within months rather than years?













(Image courtesy Wikipedia)

The solution: Synthetically fertilize farmland for greater crop yield; “factory farms” for livestock in which chickens or pigs are crammed into tiny cages that leave no room to turn, cattle packed tightly into manure-filled paddocks. As author Michael Pollan put it in his candid look at American health and eating, The Omnivore’s Dilemma:


To visit a modern Concentrated Animal Feeding Operation (CAFO) is to enter a world that for all its technological sophistication is still designed on seventeenth-century Cartesian principles: Animals are treated as machines—“production units”—incapable of feeling pain. Since no thinking person can possibly believe this anymore, industrial animal agriculture depends on a suspension of disbelief on the part of the people who operate it and a willingness to avert one’s eyes on the part of everyone else. . .


Pollan goes on to argue that the cultural distance inserted between the brutal factory farm existence of livestock and your dinner table permits this to continue:


“. . .the life of the pig has moved out of view; when’s the last time you saw a pig in person? Meat comes from the grocery store, where it is cut and packaged to look as little like parts of animals as possible. The disappearance of animals from our lives has opened a space in which there’s no reality check on the sentiment or the brutality . . .”


The same disconnect has occurred in healthcare for the heart. The emotional distance thrust between the hospital-employed primary care physician, the procedure-driven cardiologist, the crammed-into-a-niche electrophysiologist (heart rhythm specialist) or cardiothoracic surgeon whose principal concerns are procedures—with an eye always towards litigation risk—mimics factory farms that now litter the landscape of the Midwest. The hospitals and doctors who deliver the process see us less as human beings and more as the next profit opportunity.

The “factory hospital” has allowed the subjugation of humans into the service of procedural volume, all in the name of fattening revenues. Never mind that people are not (usually) killed outright but subjected to a succession of life-disrupting procedures over many years. But whether livestock in a factory farm or humans in a factory hospital, the net result to the people controlling the process is identical: increased profits.

The system doesn’t grow to meet market demand, but to grow profits. The myth that allows this growth is perpetuated by the participants who stand to gain from that growth.

See hospitals for what they are: businesses. Despite most hospitals retaining "Saint" in their name, there is no longer anything saintly or charitable about these commercial operations. They are ever bit as profit-seeking as GE, Enron, or Mobil.

Medicare and The Law of Unintended Consequences

This post carries on the line of conversation begun in The Origins of Heart Catheterization: Part I and Part II.



While Dr. Sones labored in the relative obscurity of his catheterization laboratory, the American public was experiencing a crisis in healthcare availability, particularly among the over-65 age group. The population of elderly in the U.S. was growing rapidly. Between 1950 and 1963, their ranks grew from 12 million to 17.5 million. The cost of hospital care was also increasing 6.7% annually, several times the rate of increase in the cost of living of the time. From 1950 to the day of Dr. Sones’ discovery, the average cost for a day in the hospital jumped from $29 to $40. As a result, private health insurance carriers were forced to increase rates, driving premiums higher and farther out of reach for many. Half of all elderly were uninsured. Many feared that, while the sophistication of medical services advanced, healthcare was becoming increasingly unavailable to many, perhaps most, Americans.

The pivotal contribution that ignited wide dissemination of healthcare technology didn’t come from a physician, nor someone in healthcare. It was spurred by a nearly-forgotten bureaucrat. Without the behind-the-scenes laboring of this one man, the present healthcare system might be quite different.

It was largely the work of Nelson H. Cruikshank, an ordained Methodist minister with a Master of Divinity degree and veteran of battling for rights of the elderly and poor deprived of health care. For 10 years, Cruikshank served as director of the AFL-CIO's Social Security Department and had been instrumental in getting the Social Security Disability act passed. Working on the side of organized labor but maintaining the public demeanor of a church pastor, Cruikshank gained a reputation as a fighter for the working man, one who didn’t back down from a political brawl. In an interview regarding the question of corporate-retained earnings for capital investment, he blasted the practice, calling it "taxation by corporation without representation. Through prices paid for consumer goods, buyers are providing capital for industries over which they have no control and from which they receive no dividends” (Time Magazine, Dec. 20, 1948).

For years, Cruikshank lobbied tirelessly on behalf of American unions to bring the new national healthcare bill, known as Medicare, to a vote on the floor of Congress. Numerous efforts at a national program had languished for a decade before Medicare was drafted, and the Medicare legislation remained bottlenecked for years in committees. Cruikshank’s relentless and forceful persuasion was instrumental in finally bringing the bill to a vote. Among the most vocal opponents Cruikshank parried was the American Medical Association (AMA), terrified that the new program would lead to loss of control over healthcare delivery and reimbursement. The AMA labeled Medicare "the most deadly challenge ever faced by the medical profession."

Cruikshank proved how tough he was when he faced off with Dr Morris Fishbein, then president of the AMA, in a radio debate. Oscar R. Ewing, attorney and Democratic political organizer under the Truman administration, offered these reminiscences of the debate:

“Dr. Fishbein described the horrible confusion that existed in the [government-run] British Health Service that had recently been established in Britain. He told of the utter confusion that he found existed when he was in England a few weeks previously; that there were long queues in every doctor's office, that doctors were overburdened with paper work; that a mother who wanted an extra allowance of milk for her sick child had to get a doctor's prescription for it and then go to the Health Department for permission to buy the milk. Dr. Fishbein painted a picture of complete confusion.

“After Dr. Fishbein had described all these horrible details he found existing when in England a few weeks earlier, Mr. Cruikshank pulled out this particular diary [published in a nationally-syndicated column called “Dr. Fishbein's Diary” ] of Dr. Fishbein in which he described his last visit to London. He had arrived in London Friday morning and that afternoon had gone out to spend the weekend with Lord and Lady so-and-so at their country place; that he'd come back to London Monday morning, had stopped by the Health Department to pick up some papers, and had gone on to catch the noon plane for Paris. So the questioner then asked, "Well, is your appraisal of the British Health Service based on those few hours in London?" The question was a stinger and pretty much discredited Dr. Fishbein.”


(Interview by Mr. J.R. Fuchs, April 29, 1969; Harry S. Truman Library Archives)



Cruikshank went on to point out that Dr. Fishbein had indeed never visited the offices of British general practitioners and had spent his brief stay in the company of British aristocracy, attending the Olympics, then making the rounds of Parisian night clubs. Fishbein stumbled through the remainder of the interview, trying unsuccessfully to cover up his gaff. Dr. Fishbein was forced out of his post as AMA president by his peers shortly following the humiliating episode.

Largely due to the years of behind-the-scenes maneuvering by Mr. Cruikshank, on July 30, 1965, President Lyndon Johnson signed the Social Security Amendment that enacted the Medicare program. The legislation that survived into law included Medicare Part A, the portion of the program providing payment for hospital-based diagnostic and treatment services, and Medicare Part B, allowing payment for office-based services and outpatient diagnostic tests.

Finally, after decades of political battles, a national healthcare bill had been passed. Although benefits were restricted to only those eligible for Social Security benefits, it represented a start, a first step toward greater access to healthcare for the broader American public.

At first, the full implications of the Medicare program were not apparent. But as healthcare technology advanced, including that sparked by Sones’ innovation in coronary imaging, Medicare, much as engineered in large part by Nelson Cruikshank, proved a bonanza of payment for heart procedures. Medicare also set the pace for the payment for procedures by non-government, private health insurance.

Thus the stage was set. Thanks to Medicare, over the next 40 years cardiovascular healthcare services, yielding generous revenue for practitioners and hospitals, exploded on the scene, much to the surprise of many, including the AMA. When then president of the American College of Cardiology, Dr. Charles Fisch, was asked how the passage of Medicare affected cardiology, he replied, “It made cardiologists rich, as simple as that” (American Cardiology: The History of a Specialty and Its College, W. Bruce Fye, MD). Indeed, from its introduction in 1965 to 1980, Medicare payments for health claims ballooned 10-fold from $9.6 billion to $105.7 billion, a substantial portion of which went to pay for cardiology claims.

Little did Nelson Cruikshank, ministerial defender of the working man, anticipate that the Medicare he helped engineer would prove to be the catalyst for explosive growth of the modern cardiovascular healthcare system. Ironically, the program of healthcare-for-all that Cruikshank envisioned has, over the last 40 years, soured into a self-serving system that has been corrupted by the profit motive.

In too many instances, it’s a system that uses the working man as its victim, rather than its beneficiary.