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糖基化:神经血管疾病的新信号范式。

Glycosylation: A new signaling paradigm for the neurovascular diseases.

机构信息

Chitkara College of Pharmacy, Chitkara University, 140401, Punjab, India.

Chitkara College of Pharmacy, Chitkara University, 140401, Punjab, India.

出版信息

Life Sci. 2024 Jan 1;336:122303. doi: 10.1016/j.lfs.2023.122303. Epub 2023 Nov 26.

Abstract

A wide range of life-threatening conditions with complicated pathogenesis involves neurovascular disorders encompassing Neurovascular unit (NVU) damage. The pathophysiology of NVU is characterized by several features including tissue hypoxia, stimulation of inflammatory and angiogenic processes, and the initiation of intricate molecular interactions, collectively leading to an elevation in blood-brain barrier permeability, atherosclerosis and ultimately, neurovascular diseases. The presence of compelling data about the significant involvement of the glycosylation in the development of diseases has sparked a discussion on whether the abnormal glycosylation may serve as a causal factor for neurovascular disorders, rather than being just recruited as a secondary player in regulating the critical events during the development processes like embryo growth and angiogenesis. An essential tool for both developing new anti-ischemic therapies and understanding the processes of ischemic brain damage is undertaking pre-clinical studies of neurovascular disorders. Together with the post-translational modification of proteins, the modulation of glycosylation and its enzymes implicates itself in several abnormal activities which are known to accelerate neuronal vasculopathy. Despite the failure of the majority of glycosylation-based preclinical and clinical studies over the past years, there is a significant probability to provide neuroprotection utilizing modern and advanced approaches to target abnormal glycosylation activity at embryonic stages as well. This article focuses on a variety of experimental evidence to postulate the interconnection between glycosylation and vascular disorders along with possible treatment options.

摘要

涉及神经血管紊乱的、有多种危及生命的复杂发病机制的病症范围广泛,包括神经血管单元(NVU)损伤。NVU 的病理生理学的特征是包括组织缺氧、炎症和血管生成过程的刺激,以及复杂的分子相互作用的启动,这些共同导致血脑屏障通透性增加、动脉粥样硬化和最终的神经血管疾病。有大量关于糖基化在疾病发展中重要作用的证据,这引发了关于异常糖基化是否可能成为神经血管紊乱的因果因素的讨论,而不仅仅是作为调节胚胎生长和血管生成等发育过程中关键事件的次要参与者被招募。开展神经血管紊乱的临床前研究是开发新的抗缺血治疗方法和理解缺血性脑损伤过程的重要工具。与蛋白质的翻译后修饰一起,糖基化及其酶的调节本身涉及到几种已知加速神经元血管病变的异常活动。尽管过去几年大多数基于糖基化的临床前和临床研究都失败了,但仍有很大的可能性利用现代和先进的方法在胚胎阶段靶向异常糖基化活性来提供神经保护。本文重点关注各种实验证据,以推测糖基化与血管紊乱之间的联系以及可能的治疗选择。

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