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L-瓜氨酸对 2 型糖尿病的代谢影响。

Metabolic effects of L-citrulline in type 2 diabetes.

机构信息

Endocrine Physiology Research Center, Research Institute for Endocrine Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Department of Molecular, Cellular and Biomedical Sciences, Sophie Davis School of Biomedical Education, City University of New York School of Medicine, New York, New York, USA.

出版信息

Acta Physiol (Oxf). 2023 Mar;237(3):e13937. doi: 10.1111/apha.13937. Epub 2023 Jan 25.

Abstract

The prevalence of type 2 diabetes (T2D) is increasing worldwide. Decreased nitric oxide (NO) bioavailability is involved in the pathophysiology of T2D and its complications. L-citrulline (Cit), a precursor of NO production, has been suggested as a novel therapeutic agent for T2D. Available data from human and animal studies indicate that Cit supplementation in T2D increases circulating levels of Cit and L-arginine while decreasing circulating glucose and free fatty acids and improving dyslipidemia. The underlying mechanisms for these beneficial effects of Cit include increased insulin secretion from the pancreatic β cells, increased glucose uptake by the skeletal muscle, as well as increased lipolysis and β-oxidation, and decreased glyceroneogenesis in the adipose tissue. Thus, Cit has antihyperglycemic, antidyslipidemic, and antioxidant effects and has the potential to be used as a new therapeutic agent in the management of T2D. This review summarizes available literature from human and animal studies to explore the effects of Cit on metabolic parameters in T2D. It also discusses the possible mechanisms underlying Cit-induced improved metabolic parameters in T2D.

摘要

2 型糖尿病(T2D)的患病率在全球范围内呈上升趋势。一氧化氮(NO)生物利用度降低与 T2D 及其并发症的病理生理学有关。L-瓜氨酸(Cit)是 NO 生成的前体,已被提议作为 T2D 的一种新的治疗剂。来自人体和动物研究的现有数据表明,在 T2D 中补充 Cit 可增加循环中的 Cit 和 L-精氨酸水平,同时降低循环中的葡萄糖和游离脂肪酸,并改善血脂异常。Cit 产生这些有益效果的潜在机制包括增加胰岛β细胞的胰岛素分泌、增加骨骼肌的葡萄糖摄取,以及增加脂肪组织中的脂肪分解和β氧化,同时减少甘油生成。因此,Cit 具有降血糖、抗血脂异常和抗氧化作用,有可能作为 T2D 治疗的新治疗剂。本综述总结了来自人体和动物研究的现有文献,以探讨 Cit 对 T2D 代谢参数的影响。它还讨论了 Cit 诱导 T2D 代谢参数改善的可能机制。

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