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首页> 外文期刊>Trends in Endocrinology and Metabolism: TEM >Dietary cholesterol absorption; more than just bile.
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Dietary cholesterol absorption; more than just bile.

机译:饮食中胆固醇的吸收;不只是胆汁。

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Absorption of dietary cholesterol from the intestine is an important part of cholesterol homeostasis and represents the first step that allows dietary cholesterol to exert its metabolic effects. Although the role of bile salts in the initial absorption of dietary cholesterol, by the formation of emulsions, is readily appreciated, the recognition that other molecular mechanisms might govern this process is only recently gaining momentum. Not only does the intestine regulate the amount of dietary cholesterol that enters the body; it is very selective with regard to the sterols that are allowed in. The human intestine is responsible for absorbing a significant amount of cholesterol each day. In addition to approximately 0.5 g d(-1) of dietary cholesterol, many other sterols are also present in almost equal abundance in the normal diet. Approximately 0.4 g of plant sterols, such as sitosterol, brassicasterol and avanesterol, are also present. However, the human body seems to allow only cholesterol to enterand remain in the body, with almost negligible amounts of plant sterols being retained. That specific molecular mechanisms are responsible for this behavior is supported by the identification of the genetic defect(s) in a rare disorder, beta-sitosterolemia (MIM 210250), where this process is disrupted. Such studies are now beginning to throw light on sterol absorption and excretion and elucidate the molecular mechanisms that govern these processes.
机译:从肠道吸收膳食胆固醇是胆固醇体内稳态的重要组成部分,是使膳食胆固醇发挥其代谢作用的第一步。尽管人们很容易理解胆盐在乳状液的形成过程中对胆固醇的初始吸收的作用,但人们认识到其他分子机制可能控制这一过程只是最近才开始。肠道不仅调节进入人体的饮食中胆固醇的含量,而且还调节肠道中的胆固醇。对于允许的固醇,它具有很高的选择性。人的肠道每天负责吸收大量的胆固醇。除了大约0.5 g d(-1)的饮食胆固醇外,在正常饮食中还存在许多其他固醇,它们的含量几乎相等。还存在约0.4 g的植物固醇,例如谷固醇,芸苔甾醇和avanesterol。但是,人体似乎只允许胆固醇进入体内并保留在体内,几乎没有多少植物甾醇被保留。在这种罕见的疾病(β-谷固醇血症,MIM 210250)中,遗传缺陷的鉴定支持了这种行为的特定分子机制,该过程被破坏了。现在,此类研究开始关注固醇的吸收和排泄,并阐明了控制这些过程的分子机制。

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