HMB, OR A STRONG ANTICATABOLIC TO IMPROVE HORIZONTAL ENERGY AT THE COST OF HAT FAT!
HOW HMB IS MADE AND WHY IT IS A STRONG ANTI-CATABOLIC
HMB is a compound resulting from the transformation of one of the branched chain amino acids - leucine. In most studies, HMB has a positive effect on inhibiting catabolism, stimulating the growth of lean body mass, and improving strength and endurance. The anti-metabolic effect of HMB trec results from the simple principle that muscle saturation with amino acids and their metabolites is an effective way to inhibit catabolism.
Opponents of supplements are convinced that properly balanced nutrition is able to provide everything that our body needs. Unfortunately, in the case of HMB this does not work.
WHY ARE WE NOT DELIVERING THE DESIRED QUANTITY OF HMB THROUGH NATURAL FOOD PRODUCTS?
HMB is formed from the amino acid leucine. However, the HMB synthesis pathway from leucine is not readily activated by the body. The body, guided by its own hierarchy of needs, if it undertakes catabolism of leucine, it transforms it into substrates that it can use to support aerobic cellular energy. In order to provide the body with the desired dose of HMB, which is about 3 g, we would have to take 60 g of leucine alone!
The human body is able to produce only 0, 3 - maximum 1 g HMB. Unfortunately, this is not a dose that would be able to stop catabolic weapons. If you want to experience the real effects of this compound reach for HMB trec, characterized by the maximum concentration of this anti-catabolic substance.
HMB PROTECTS BUT ALSO HELPS TO GET OUT OF UNCERTAIN FAT TISSUE
We already know that HMB trec is a strong and effective anti-catabolic. However, the role of this relationship does not end there. The dream of every exerciser is to have large muscles, but also as little fat as possible. And here we have a surprise for you. HMB, as a metabolite of amino acids, blocks the flow of glucose to fat tissue preventing the synthesis of new fat. This brings one more consequence in the context of exercise energy. If, thanks to HMB, a smaller pool of glucose travels to adipose tissue, more of it reaches the muscles, where it is used for current energy needs, glycogen regeneration.
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5902114017491