利用极光系统对神经肌肉连接和骨骼肌功能进行定量电生理评估的优化离体方案。

IF 1 Q3 BIOLOGY
Can Cui, Zhengyuan Bao, Simon Kwoon-Ho Chow, Qianjin Wang, Senlin Chai, Zhihong Xu, Qing Jiang, Wing Hoi Cheung
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引用次数: 0

摘要

神经肌肉连接(NMJ)对肌肉功能至关重要,其功能障碍是肌肉减少症和运动神经元疾病等疾病的基础。目前评估NMJ功能的方案通常缺乏标准化的刺激参数,限制了可重复性。本研究提出了一种优化的离体方法,利用Aurora Scientific系统评估骨骼肌和NMJ功能,结合神经和肌肉的有效刺激方案,以确保一致性。关键步骤包括在低钙、高镁溶液中进行组织准备,以保持NMJ的完整性,确定最佳肌肉长度,以及顺序刺激方案,以量化神经传递失败和肠内疲劳。通过整合严格的标准化,该方法提高了可重复性和精度,为研究衰老和疾病模型中的NMJ病理生理提供了一个强大的框架。•双重刺激模式使直接肌肉和间接神经刺激分离nmj特异性功能障碍。•优化小鼠神经(5 mA, 0.8 ms脉宽)和肌肉(300 mA, 0.2 ms脉宽)的刺激参数。•通过在低钙、高镁人工脑脊液(aCSF)和合成间质液(SIF)中解剖保存NMJ的完整性。•使用标准化方程式定量分析神经传递失败和血管内疲劳。该协议用于:aging Cell (2024), DOI: 10.1111/acel.14156。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Optimized Ex Vivo Protocol for Quantitative Electrophysiological Assessment of Neuromuscular Junctions and Skeletal Muscle Function Using the Aurora System.

The neuromuscular junction (NMJ) is critical for muscle function, and its dysfunction underlies conditions such as sarcopenia and motor neuron diseases. Current protocols for assessing NMJ function often lack standardized stimulation parameters, limiting reproducibility. This study presents an optimized ex vivo method to evaluate skeletal muscle and NMJ function using the Aurora Scientific system, incorporating validated stimulation protocols for both nerve and muscle to ensure consistency. Key steps include tissue preparation in a low-calcium, high-magnesium solution to preserve NMJ integrity, determination of optimal muscle length, and sequential stimulation protocols to quantify neurotransmission failure and intratetanic fatigue. By integrating rigorous standardization, this approach enhances reproducibility and precision, providing a robust framework for investigating NMJ pathophysiology in aging and disease models. Key features • Dual stimulation modes enable direct muscle and indirect nerve stimulation to isolate NMJ-specific dysfunction. • Optimized stimulation parameters for nerve (5 mA, 0.8 ms pulse width) and muscle (300 mA, 0.2 ms pulse width) on mouse model. • Preservation of NMJ integrity through dissection in low-calcium, high-magnesium artificial cerebrospinal fluid (aCSF) and synthetic interstitial fluid (SIF). • Quantitative analysis of neurotransmission failure and intratetanic fatigue using standardized equations. This protocol is used in: Ageing Cell (2024), DOI: 10.1111/acel.14156.

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