Alcohol: Its Metabolism and Interaction With Nutrients

酒精性肝病 氧化应激 肝硬化 CYP2E1 蛋氨酸 肝病 磷脂酰胆碱 谷胱甘肽 脂肪肝 内科学 磷脂酰乙醇胺 内分泌学 肝损伤 生物化学 化学 生物 新陈代谢 药理学 医学 磷脂 疾病 细胞色素P450 氨基酸
作者
Charles S. Lieber
出处
期刊:Annual Review of Nutrition [Annual Reviews]
卷期号:20 (1): 395-430 被引量:284
标识
DOI:10.1146/annurev.nutr.20.1.395
摘要

In the past, alcoholic liver disease was attributed exclusively to dietary deficiencies, but experimental and judicious clinical studies have now established alcohol's hepatotoxicity. Despite an adequate diet, it can contribute to the entire spectrum of liver diseases, mainly by generating oxidative stress through its microsomal metabolism via cytochrome P4502E1 (CYP2E1). It also interferes with nutrient activation, resulting in changes in nutritional requirements. This is exemplified by methionine, one of the essential amino acids for humans, which needs to be activated to S-adenosylmethionine (SAMe), a process impaired by liver disease. Thus, SAMe rather than methionine is the compound that must be supplemented in the presence of significant liver disease. In baboons, SAMe attenuated mitochondrial lesions and replenished glutathione; it also significantly reduced mortality in patients with Child A or B cirrhosis. Similarly, decreased phosphatidylethanolamine methyltransferase activity is associated with alcoholic liver disease, resulting in phosphatidylcholine depletion and serious consequences for the integrity of membranes. This can be offset by polyenylphosphatidylcholine (PPC), a mixture of polyunsaturated phosphatidylcholines comprising dilinoleoylphosphatidylcholine (DLPC), which has high bioavailability. PPC (and DLPC) opposes major toxic effects of alcohol, with down-regulation of CYP2E1 and reduction of oxidative stress, deactivation of hepatic stellate cells, and increased collagenase activity, which in baboons, results in prevention of ethanol-induced septal fibrosis and cirrhosis. Corresponding clinical trials are ongoing.
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