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caloric restriction

Short Burst Aerobic from a Cellular Standpoint

February 3, 2014 by James Bogash

Ok, ok. I truly don’t mean to beat you over the head with this concept, but I’m going to anyway. I think we’re approaching exercise all wrong.

The problem is that, if I’m right, this isn’t some little tidbit that doesn’t make a difference. All of our public health recommendations need to be revamped.

Let’s face it, the standard “30 minutes of walking most days of the week” just isn’t cutting it. And yet you probably drive by several people per day who appear to be walking around the block at a leisurely pace, likely carrying that beloved plastic water bottle.

If you go to the gym, the treadmills, exercise bikes, ellipticals, rowing machines and aerobic classes are full of people logging in hours and hours of constant-stream aerobic activity.

Despite the evidence, the American Heart Association and the American Diabetic Association remain silent on the value of short-burst aerobic exercise.

This particular article is written in Medical Hypothesis, a journal containing articles written by forward-thinking scientist. Some may be way off the mark, others are later shown to be right on. Still others merely put together all the pieces from across the world of research and come to conclusions before anyone else even notices that there is a puzzle.

Dr. Cherkas and Dr. Golota begin to put the pieces together by first looking at the short-burst aerobic picture from the context of glycogen.

Glycogen is a molecule made up of multiple pieces of glucose. Most of the glycogen in our bodies is stored in either the liver or in our muscles and is used quickly for fuel when we first begin to burn calories (such as while exercising). After we eat, the hormone insulin tells our liver and muscles to take the glucose (sugar) from the meal out of the blood and store it as glycogen.

Later, the hormone glucagon is released from the pancreas, which results in a slow breakdown of the stored glycogen in the liver so that the rest of the body can have a stable source of glucose until the next meal.

Short burst aerobic activity burns through ATP (the energy currency of the cell), then creatine phosphate, then glycogen is broken down into glucose molecules for fuel. Because this leaves the cell starving for more glycogen, the next exposure to glucose (such as after a meal) is going to lead to increased uptake of sugar from the bloodstream and into these glycogen-depleted cells.

When we start to look at additional pieces of the chronic-disease management puzzle, calorie restricted diets and intermittent fasting have much the same effect on glycogen stores, again leaving your cells hungry to grab the extra glucose from the next meal.

With this in mind, you can begin to see how many of these approaches to disease management and / or longevity end up having similar effects on glycogen storage in the liver and muscles. On the flip side, without this depletion of glycogen before the next meal, if the cell is already full of glycogen, glucose taken up at this point will get stored as fat inside the cells.

More fat inside the cells leads to unhealthy cells (fatty liver, intramyocellular lipid accumulation) and higher risks of chronic diseases. Not a good thing.

Overall, I thought it was interesting to connect calorie restriction, intermittent fasting and short burst aerobic activity via glycogen use and storage.

Filed Under: Anti-Aging, Calorie Restriction, Diabetes (Type 2), Fatty Liver, Prediabetes Tagged With: caloric restriction, glycogen, intermittent fasting, longevity, short burst aerobic

Extended longevity in mice lacking insulin receptor in adipose tissue – (02-03-03)

April 1, 2013 by James Bogash

Extended longevity in mice lacking insulin receptor in adipose tissue

This study looked at mice that did not have insulin receptors in adipose cells and found an 18% increase in longevity. This strongly supports previous research in mammals that suggest caloric restriction without nutrient depletion (which would result in lowered insulin levels). With more evidence arising in regards to the harmful effects of elevated insulin I am even more firmly of the belief that refined carbs are the number one factor destroying the health of Western society.

Entrez-PubMed

Read entire article here

Filed Under: Calorie Restriction, Insulin Tagged With: adipose tissue, caloric restriction, insulin receptors

Energy Imbalance and Prostate Cancer – (11-14-02)

March 25, 2013 by James Bogash

Energy Imbalance and Prostate Cancer

This is an interesting concept with prostate cancer, and does seem to fit with other observations. This review article found associations with excess (above expenditure) caloric intake and risk of prostate cancer as well as with more advanced cases of prostate cancer. This fits with a few other concepts. First, caloric restriction w/o nutrient restriction has consistently shown life span extension in mammals, and cancer risk reduction across the board may very well be a factor in the longevity. Second, IGF-1, a hormone that has been related to risk of prostate cancer, is increased via insulin and insulin levels would generally increase with higher caloric intakes. You could add a low caloric diet to treatment for prostate cancer.

Nutrition.org — Abstracts: Platz 132 (11): 3471S –

Read entire article here

Filed Under: Calorie Restriction, Prostate Cancer Tagged With: caloric restriction, Energy Imbalance, IGF-1, prostate cancer

Caloric Restriction and Incidence of Breast Cancer – (03-22-04)

December 30, 2012 by James Bogash

Caloric Restriction and Incidence of Breast Cancer

Knowing that caloric restriction without nutrient restriction is the only “anti-aging” approach that consistently extends life span in mammals, the results of this study should not surprise anyone. However, I will not exactly advocate anorexia followed by pregnancy to lower your risk of breast cancer (which is what this study evaluated), but a whopping 76% reduction is breast cancer risk is incredible. Most likely the lowered risk is tied in with insulin signaling somewhere.

JAMA — Abstracts: Michels and Ekbom 291 (10): 1226 –

Read entire article here

Filed Under: Breast Cancer, Calorie Restriction Tagged With: anorexia, breast cancer, caloric restriction

SKIPPING MEALS RESULT IN LOSS OF LEAN BODY MASS – (12-04-06)

July 30, 2012 by James Bogash

Altered Skeletal Muscle Subsarcolemmal Mitochondrial Compartment During Catch-Up Fat After Caloric Restriction

While there will be no jaws dropping if I mention that the rates of obesity are skyrocketing and that most weight loss programs out there do not work and frequently result in rebound weight gain greater than what was lost in the first place.

The whole idea of skipping meals or dramatically cutting calories for a short period of time will result in loss of lean body mass and the body’s attempt to conserve energy. This is NOT the calorie restriction w/o nutrient restriction, which is not short term and is not the semi-starvation state this study refers to.

Read entire article here

Filed Under: Calorie Restriction, Obesity and Weight Loss Tagged With: caloric restriction, obesity and weight loss, Skeletal Muscle, weight loss

ARE OUR CALORIES KILLING US? – (07-30-07)

April 8, 2012 by James Bogash

Delay of T cell senescence by caloric restriction in aged long-lived nonhuman primates

Regular readers of updates know that I consider mitochondrial dysfunction as the root of all evil when it comes to chronic diseases. Anything we can do to protect the mitochondria will have a positive effect on health and longevity. It has been well established that calorie restriction is the ONLY intervention known to extend lifespan in mammals. This means that your 1200 calories / day comes from broccoli, not a Big Mac and super-sized fries. It is believed that one of the mechanisms that CR works is by improving the number and efficiency of the mitochondria.

This study adds to that, finding that CR in primates leads to reduced immune senescence, or shutting down of the immune system with age. A healthier immune system means persistant cancer surveilance and retained ability to fight off infectious diseases. Definitely a good thing. The research has also played around with the concept of alternate day CR as well as short term fasting coupled with aerobic exercise. Some researchers actually disagree with the concept of CR extending lifespan. Rather, they believe that increased caloric intake SHORTENS a normal lifespan… In other words, our calories are killing us.

Read entire article here

Filed Under: Calorie Restriction Tagged With: caloric restriction, cancer surveilance, chronic diseases, mitochondria, T cell

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