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Betaine Transport in Kidney and Liver: Use of Betaine in Liver Injury

机译:甜菜碱在肾脏和肝脏中的运输:甜菜碱在肝脏损伤中的使用

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Betaine, also known as trimethylglycine, is an important human nutrient obtained from a variety of foods and also can be synthesized from choline. Betaine is much more abundant in kidney and liver compared to other mammalian organs. The principal role of betaine in the kidney is osmoprotection in cells of the medulla and it enters these cells via the betaine/γ-aminobutyric acid (GABA) transporter protein (BGT1), which is upregulated by hyperosmotic stress. This process has been studied in great detail. In liver, the main role of betaine is a methyl donor in the methionine cycle. However, recent studies showed that BGT1 is much more abundant in liver compared to kidney medulla. Despite this, the role of BGT1 in liver has received little attention. Entry of betaine into liver cells is a necessary first step for its action at the cellular level. Increased interest in betaine has developed because of a number of therapeutic uses. These include treatment of nonalcoholic fatty liver and hyperhomocysteinemia, a risk factor for atherosclerotic disease. Several important questions need to be addressed to better understand the potential of betaine as a therapeutic agent for other liver diseases, such as alcohol-induced injury. Heavy alcohol consumption is the most common cause for liver-related deaths and altered liver metabolism may contribute to hepatic, vascular, coronary, and cerebral diseases.
机译:甜菜碱,也称为三甲基甘氨酸,是一种重要的人类营养素,可从多种食物中获得,也可以由胆碱合成。与其他哺乳动物器官相比,甜菜碱在肾脏和肝脏中的含量要高得多。甜菜碱在肾脏中的主要作用是在髓质细胞中进行渗透保护,它通过甜菜碱/γ-氨基丁酸(GABA)转运蛋白(BGT1)进入这些细胞,该蛋白被高渗应激上调。已经对该过程进行了详细的研究。在肝脏中,甜菜碱的主要作用是蛋氨酸循环中的甲基供体。但是,最近的研究表明,与肾脏髓质相比,BGT1在肝脏中的含量更高。尽管如此,BGT1在肝脏中的作用却很少受到关注。甜菜碱进入肝细胞是其在细胞水平上起作用的必要的第一步。由于许多治疗用途,对甜菜碱的兴趣增加。这些措施包括非酒精性脂肪肝和高同型半胱氨酸血症(动脉粥样硬化疾病的危险因素)的治疗。为了更好地了解甜菜碱作为其他肝脏疾病(如酒精引起的损伤)的治疗剂的潜力,需要解决几个重要问题。大量饮酒是导致肝脏相关死亡的最常见原因,肝脏代谢改变可能会导致肝,血管,冠状动脉和脑部疾病。

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