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Archived from the original on 31 December 2016
B12 bound to HC is not taken up by cells and thus, is biologically inactive ( via endocytosis using a specific CD320 receptor ( via CblF ( This free cytoplasmic B12 undergoes a series of intracellular transport and modifications to enable two core enzymatic reactions: 1) adenosyl-B12 acts as a co-factor for the enzyme methylmalonyl-coA mutase that catalyzes the conversion of methylmalonyl-coA to succinyl-coA, thereby enabling restoration of tricarboxylic acid (TCA) cycle intermediates and 2) methyl-B12 enables methionine synthase in the re-methylation of homocysteine to methionine using methyl-tetrahydrofolate (MTHF) as a methyl donor, thereby enabling the vital biochemical pathways of the folate cycle and methionine cycle, facilitating the downstream synthesis of important compounds like DNA and RNA (Figure 2)
Researchers exploring metabolic health and mitochondrial function often consider a range of compounds
Cationic, amphiphilic peptides that tend to welt reconstitute better in BAC water with 0.9% NaCl: SS-31, MOTS-c, the GH secretagogues (sermorelin, ipamorelin, tesamorelin, CJC-1295), and VIP and kisspeptin-10