S-adenosylmethionine (SAMe) therapy in liver disease: A review of current evidence and clinical utility
Терапия S-аденозилметионином (SAMe) при заболеваниях печени: обзор современных доказательств и клинической применимости
2012-05-30
SCID: 54.1/hbjsp8m5
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S-adenosylmethionine (SAMe)chronic liver diseaseglutathione synthesishepatoprotective therapymethyl donor
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Abstract (AI)
S-adenosyl-L-methionine (SAMe; AdoMet) is an important, metabolically pleiotropic molecule that participates in multiple cellular reactions as the precursor for the synthesis of glutathione and principle methyl donor required for methylation of nucleic acids, phospholipids, histones, biogenic amines, and proteins. SAMe synthesis is depressed in chronic liver disease and so there has been considerable interest in the utility of SAMe to ameliorate disease severity. Despite encouraging pre-clinical data confirming that SAMe depletion can exacerbate liver injury and supporting a hepatoprotective role for SAMe therapy, to date no large, high-quality randomised clinical trials have been performed that establish clinical utility in specific disease states. Here, we offer an in-depth review of the published scientific literature relating to the physiological and pathophysiological roles of SAMe and its therapeutic use in liver disease, critically assessing implications for clinical practice and offering recommendations for further research.
Key Findings
1
No large, high-quality randomized clinical trials have established SAMe’s clinical utility for specific liver diseases.
2
Preclinical evidence indicates that SAMe depletion worsens liver injury and supports a hepatoprotective effect of SAMe therapy.
3
S-adenosyl-L-methionine (SAMe) serves as a glutathione precursor and principal methyl donor for numerous cellular molecules.
4
SAMe synthesis is reduced in chronic liver disease, prompting interest in supplementation to mitigate disease severity.
5
The review critically evaluates SAMe’s physiological, pathophysiological, and therapeutic roles and identifies priorities for further research.
Research Object
S-adenosyl-L-methionine (SAMe; AdoMet) therapy in chronic liver disease
Research Subject
The therapeutic utility and hepatoprotective effects of SAMe, including the evidence for ameliorating liver disease severity and implications for clinical practice
Publication Details
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2012-05-30
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