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Originally posted by Dr. Davis on 2018-12-28 on the Wheat Belly Blog, sourced from and currently found at: Infinite Health Blog. PCM forum Index of WB Blog articles.
High triglyceride levels are as common as muffin tops and man breasts. You will find a triglyceride level among the four values on any standard cholesterol panel. High triglycerides are either ignored by most doctors or reflexively “treated” with drugs, such as fibrates (Lopid, fenofibrate), prescription fish oil (Lovaza, Vascepa) and, of course, statins. But buried in this single triglyceride value is tremendous insight into diet, metabolic efficiencies, and cardiovascular risk, with control using natural, non-medication means easy to accomplish with absolute NO need for overpriced Big Pharma scam products.
Why are triglycerides important? Triglyceride levels of 60 mg/dl or higher will:
The higher the triglycerides, the higher the cardiovascular risk. Labs typically quote 150 mg/dl or higher as the cutoff for “normal,” but this is not true: a level of 150 mg/dl is associated with a substantial quantity of the above metabolic distortions. Only at 60 mg/dl or below do all unhealthy triglyceride-related abnormalities revert to normal or ideal.
What causes triglycerides to rise?
First of all, dietary fats are triglycerides by definition. Fat on pork or beef, olive oil, coconut oil, and butter are all triglycerides. When we consume fats and oils, there is therefore a modest and nearly immediate rise in blood triglycerides as particles called chylomicrons, large particles formed by the intestinal tract to “package” fats for digestion. Chylomicrons are cleared rapidly and efficiently by the liver over several hours. In most people, fat intake is—counterintuitively—only a minor contributor to blood triglyceride levels, a non-contributor to high fasting triglycerides.
There are two processes that are much larger determinants of both fasting and after-meal (“postprandial” or “non-fasting”) triglyceride levels:
These last two processes yield much greater rises in both fasting and postprandial triglycerides than that provided by dietary fat. These two processes explain why, for example, someone has a triglyceride level of 210 mg/dl fasting, 400 mg/dl 6 hours after eating.
Understanding these phenomena thereby lead us to practical dietary and natural methods to reduce triglycerides to a level of an ideal level of 60 mg/dl or less:
Fibrate drugs, statins, and prescription fish oil are absolutely not necessary to reduce triglycerides. This is yet another example (among many) of how the pharmaceutical industry manages to persuade gullible physicians to prescribe drugs, not to fix the cause. I managed many complex hyperlipidemias that included many people with high triglyceride levels for years with triglyceride results superior to that achieved with drugs.