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- W1986242571 abstract "#### Summary pointsVitamin B12 is an essential cofactor that is integral to methylation processes important in reactions related to DNA and cell metabolism, thus a deficiency may lead to disruption of DNA and cell metabolism and thus have serious clinical consequences.1 Intracellular conversion of vitamin B12 to two active coenzymes, adenosylcobalamin in mitochondria and methylcobalamin in the cytoplasm, is necessary for the homeostasis of methylmalonic acid and homocysteine, respectively.2 3 Methylmalonic acid is converted into succinyl-CoA, of which vitamin B12 is a cofactor for the reaction. Homocysteine is biosynthesised from methionine then resynthesised into methionine or converted into amino acid cysteine. Vitamin B12 (also referred to as cobalamin) deficiency is relatively common, with important and variable clinical consequences. This review presents a concise summary of the most up to date evidence on how to diagnose and manage vitamin B12 deficiency.#### Sources and selection criteriaWe searched PubMed and Google Scholar using the terms “vitamin B12 deficiency” and “cobalamin deficiency”, and hand selected the most relevant and appropriate articles. We also used evidence based guidelines from the British Committee for Standards in Haematology; however, evidence, especially in the form of randomised controlled trials, is lacking.4Foods containing vitamin B12 are …" @default.
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- W1986242571 date "2014-09-04" @default.
- W1986242571 modified "2023-10-10" @default.
- W1986242571 title "Vitamin B12 deficiency" @default.
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- W1986242571 doi "https://doi.org/10.1136/bmj.g5226" @default.
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