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支链氨基酸在肝性脑病相关的氨稳态中的作用。

Role of branched chain amino acids in cerebral ammonia homeostasis related to hepatic encephalopathy.

机构信息

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, 2 Universitetsparken, 2100 Copenhagen, Denmark.

出版信息

Metab Brain Dis. 2013 Jun;28(2):209-15. doi: 10.1007/s11011-013-9381-7. Epub 2013 Jan 31.

Abstract

Hepatic encephalopathy (HE) is associated with increased ammonia levels in plasma and brain. Different treatment strategies have been developed to ameliorate the detrimental effects of the ammonia load. One such strategy is based on the finding of a low level of the branched chain amino acids (BCAAs) in plasma of patients suffering from HE and the assumption that in particular isoleucine could be beneficial to brain energy metabolism as it is metabolized to the tricarboxylic acid cycle intermediate and precursor succinyl-CoA and acetyl-CoA, respectively. This would enable de novo synthesis of glutamine via α-ketoglutarate and glutamate and at the same time stimulate oxidative metabolism. The present mini-review summarizes the metabolic basis for this hypothesis delineating studies in the brain in vivo as well as in cultured neural cells aimed at elucidating the metabolism of the BCAAs focusing on isoleucine. The conclusion is that isoleucine appears at least partially to act in this fashion albeit its metabolism is quantitatively relatively modest. In addition, a short section on the role of the BCAAs in synaptic ammonia homeostasis is included along with some thoughts on the role of the BCAAs in other pathologies such as cancer.

摘要

肝性脑病(HE)与血浆和大脑中氨水平升高有关。已经开发出不同的治疗策略来改善氨负荷的有害影响。其中一种策略基于患有 HE 的患者血浆中支链氨基酸(BCAAs)水平低的发现,并且假设特别是异亮氨酸可以有益于脑能量代谢,因为它分别代谢为三羧酸循环中间产物和前体琥珀酰-CoA 和乙酰-CoA。这将能够通过α-酮戊二酸和谷氨酸从头合成谷氨酰胺,同时刺激氧化代谢。本综述总结了这一假设的代谢基础,阐述了体内大脑以及培养的神经细胞的研究,旨在阐明 BCAA 的代谢,重点是异亮氨酸。结论是,异亮氨酸至少部分以这种方式起作用,尽管其代谢的数量相对较小。此外,还包括关于 BCAA 在突触氨稳态中的作用的简短部分,以及关于 BCAA 在其他病理学如癌症中的作用的一些思考。

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