Critical developmental periods of vulnerability in dystonia

Dystonia Pub Date : 2024-03-13 DOI:10.3389/dyst.2024.12125
Simon A. Lowe
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Abstract

Dystonia is a heterogenous movement disorder characterised by involuntary muscle contractions, leading to abnormal postures and movements. Despite being the third most common movement disorder, the pathophysiological mechanisms causing dystonia are incompletely understood. Isolated dystonia is often caused by pathogenic mutations in single genes. An emerging body of evidence suggests that at least some forms of isolated dystonia have a strong developmental component, with pathogenic effects acting within discrete periods of increased vulnerability during neurodevelopment. The extent to which this is a common feature of genetically distinct forms of dystonia, and which developmental mechanisms might be disrupted during these periods, remains unclear. During critical periods of development, neuronal activity is instructive in the maturation of neuronal circuits, and inappropriate levels of activity during this period can lead to permanent defects. This review, with an intentional focus on our work, outlines evidence implicating disruptions to neuronal activity during critical developmental periods as a potential mechanism underlying inherited motor disorders in general, and dystonia in particular.
肌张力障碍易发的关键发育期
肌张力障碍是一种异质性运动障碍,其特点是肌肉不自主收缩,导致姿势和动作异常。尽管肌张力障碍是第三大最常见的运动障碍,但人们对其病理生理机制却知之甚少。孤立性肌张力障碍通常由单个基因的致病突变引起。大量新出现的证据表明,至少某些形式的孤立性肌张力障碍有很强的发育因素,致病作用在神经发育过程中易受影响的不连续时期。这在多大程度上是遗传上不同形式肌张力障碍的共同特征,以及哪些发育机制可能在这些时期受到破坏,目前仍不清楚。在发育的关键时期,神经元活动对神经元回路的成熟具有指导作用,而这一时期不适当的活动水平可能导致永久性缺陷。本综述以我们的工作为重点,概述了有证据表明在发育关键期神经元活动紊乱是遗传性运动障碍,尤其是肌张力障碍的潜在机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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