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用于探究神经退行性疾病中突触传递的新兴生物物理技术。

Emerging biophysical techniques for probing synaptic transmission in neurodegenerative disorders.

作者信息

Kale Mayur B, Wankhede Nitu L, Bishoyi Ashok Kumar, Ballal Suhas, Kalia Rishiv, Arya Renu, Kumar Sachin, Khalid Mohammad, Gulati Monica, Umare Mohit, Taksande Brijesh G, Upaganlawar Aman B, Umekar Milind J, Kopalli Spandana Rajendra, Fareed Mohammad, Koppula Sushruta

机构信息

Smt. Kishoritai Bhoyar College of Pharmacy, Kamptee, Nagpur, Maharashtra 441002, India.

Marwadi University Research Center, Department of Microbiology, Faculty of Science, Marwadi University, Rajkot 360003, Gujarat, India.

出版信息

Neuroscience. 2025 Jan 26;565:63-79. doi: 10.1016/j.neuroscience.2024.11.055. Epub 2024 Nov 26.

Abstract

Plethora of research has shed light on the critical role of synaptic dysfunction in various neurodegenerative disorders (NDDs), including Alzheimer's disease (AD), Parkinson's disease (PD), Amyotrophic lateral sclerosis (ALS), and Huntington's disease (HD). Synapses, the fundamental units for neural communication in the brain, are highly vulnerable to pathological conditions and are central to the progression of neurological diseases. The presynaptic terminal, a key component of synapses responsible for neurotransmitter release and synaptic communication, undergoes structural and functional alterations in these disorders. Understanding synaptic transmission abnormalities is crucial for unravelling the pathophysiological mechanisms underlying neurodegeneration. In the quest to probe synaptic transmission in NDDs, emerging biophysical techniques play a pivotal role. These advanced methods offer insights into the structural and functional changes occurring at nerve terminals in conditions like AD, PD, HD & ALS. By investigating synaptic plasticity and alterations in neurotransmitter release dynamics, researchers can uncover valuable information about disease progression and potential therapeutic targets. The review articles highlighted provide a comprehensive overview of how synaptic vulnerability and pathology are shared mechanisms across a spectrum of neurological disorders. In major neurodegenerative diseases, synaptic dysfunction is a common thread linking these conditions. The intricate molecular machinery involved in neurotransmitter release, synaptic vesicle dynamics, and presynaptic protein regulation are key areas of focus for understanding synaptic alterations in neurodegenerative diseases.

摘要

大量研究揭示了突触功能障碍在包括阿尔茨海默病(AD)、帕金森病(PD)、肌萎缩侧索硬化症(ALS)和亨廷顿舞蹈病(HD)在内的各种神经退行性疾病(NDDs)中的关键作用。突触作为大脑中神经通讯的基本单元,极易受到病理状况的影响,并且在神经疾病的进展中起着核心作用。突触前终末作为突触的关键组成部分,负责神经递质的释放和突触通讯,在这些疾病中会发生结构和功能的改变。了解突触传递异常对于阐明神经退行性变背后的病理生理机制至关重要。在探索神经退行性疾病中的突触传递过程中,新兴的生物物理技术发挥着关键作用。这些先进方法能够深入了解在AD、PD、HD和ALS等疾病状态下神经末梢发生的结构和功能变化。通过研究突触可塑性以及神经递质释放动力学的改变,研究人员能够揭示有关疾病进展和潜在治疗靶点的宝贵信息。所强调的综述文章全面概述了突触易损性和病理如何成为一系列神经疾病的共同机制。在主要的神经退行性疾病中,突触功能障碍是连接这些病症的共同因素。参与神经递质释放、突触小泡动力学和突触前蛋白调节的复杂分子机制是理解神经退行性疾病中突触改变的关键关注领域。

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