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Taurine and its analogs in neurological disorders: Focus on therapeutic potential and molecular mechanisms

机译:牛磺酸及其类似物在神经系统疾病中的作用:着眼于治疗潜力和分子机制

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摘要

Taurine is a sulfur-containing amino acid and known as semi-essential in mammals and is produced chiefly by the liver and kidney. It presents in different organs, including retina, brain, heart and placenta and demonstrates extensive physiological activities within the body. In the several disease models, it attenuates inflammation- and oxidative stress-mediated injuries. Taurine also modulates ER stress, Ca2+ homeostasis and neuronal activity at the molecular level as part of its broader roles. Different cellular processes such as energy metabolism, gene expression, osmosis and quality control of protein are regulated by taurine. In addition, taurine displays potential ameliorating effects against different neurological disorders such as neurodegenerative diseases, stroke, epilepsy and diabetic neuropathy and protects against injuries and toxicities of the nervous system. Several findings demonstrate its therapeutic role against neurodevelopmental disorders, including Angelman syndrome, Fragile X syndrome, sleep-wake disorders, neural tube defects and attention-deficit hyperactivity disorder. Considering current biopharmaceutical limitations, developing novel delivery approaches and new derivatives and precursors of taurine may be an attractive option for treating neurological disorders. Herein, we present an overview on the therapeutic potential of taurine against neurological disorders and highlight clinical studies and its molecular mechanistic roles. This article also addresses the neuropharmacological potential of taurine analogs.
机译:牛磺酸是一种含硫氨基酸,在哺乳动物中被称为半必需氨基酸,主要由肝脏和肾脏产生。它存在于不同的器官中,包括视网膜,大脑,心脏和胎盘,并在体内具有广泛的生理活性。在几种疾病模型中,它减轻了炎症和氧化应激介导的损伤。牛磺酸还可以在分子水平上调节内质网应激,Ca 2 + 稳态和神经元活动,这是其更广泛作用的一部分。牛磺酸调节能量代谢,基因表达,渗透和蛋白质质量控​​制等不同的细胞过程。另外,牛磺酸对不同的神经系统疾病如神经退行性疾病,中风,癫痫和糖尿病性神经病具有潜在的改善作用,并能防止神经系统的损伤和毒性。一些发现证明了其对神经发育障碍的治疗作用,包括安格曼综合征,脆性X综合征,睡眠觉醒障碍,神经管缺陷和注意力不足过动症。考虑到当前的生物药物局限性,开发新颖的递送方法以及新的牛磺酸衍生物和前体可能是治疗神经系统疾病的有吸引力的选择。本文中,我们概述了牛磺酸对神经系统疾病的治疗潜力,并重点介绍了临床研究及其分子机制作用。本文还探讨了牛磺酸类似物的神经药理潜力。

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