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首页> 外文期刊>Frontiers in Cellular Neuroscience >A Novel Optical Tissue Clearing Protocol for Mouse Skeletal Muscle to Visualize Endplates in Their Tissue Context
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A Novel Optical Tissue Clearing Protocol for Mouse Skeletal Muscle to Visualize Endplates in Their Tissue Context

机译:小鼠骨骼肌可视化终板在其组织上下文中的新型光学组织清除协议。

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Neuromuscular junctions (NMJs) mediate skeletal muscle contractions and play an important role in several neuromuscular disorders when their morphology and function are compromised. However, due to their small size and sparse distribution throughout the comparatively large, inherently opaque muscle tissue the analysis of NMJ morphology has been limited to teased fiber preparations, longitudinal muscle sections, and flat muscles. Consequently, whole mount analyses of NMJ morphology, numbers, their distribution, and assignment to a given muscle fiber have also been impossible to determine in muscle types that are frequently used in experimental paradigms. This impossibility is exacerbated by the lack of optical tissue clearing techniques that are compatible with clear and persistent NMJ stains. Here, we present MYOCLEAR, a novel and highly reproducible muscle tissue clearing protocol. Based on hydrogel-based tissue clearing methods, this protocol permits the labeling and detection of all NMJs in adult hindleg extensor digitorum longus muscles from wildtype and diseased mice. The method is also applicable to adult mouse diaphragm muscles and can be used for different staining agents, including toxins, lectins, antibodies, and nuclear dyes. It will be useful in understanding the distribution, morphological features, and muscle tissue context of NMJs in hindleg muscle whole mounts for biomedical and basic research.
机译:当神经肌肉接头的形态和功能受到损害时,它们会介导骨骼肌收缩,并在几种神经肌肉疾病中起重要作用。但是,由于它们的大小较小,并且在相对较大的固有不透明的肌肉组织中分布较稀疏,因此对NMJ形态的分析仅限于戏弄的纤维制品,纵向肌肉切片和扁平肌肉。因此,对于NMJ形态,数量,其分布以及对给定肌肉纤维的分配的整体分析,也无法确定实验范例中经常使用的肌肉类型。缺少与透明和持久性NMJ染色剂相容的光学组织清除技术会加剧这种可能性。在这里,我们介绍了MYOCLEAR,这是一种新颖且高度可重复的肌肉组织清除协议。基于基于水凝胶的组织清除方法,该协议允许标记和检测来自野生型和患病小鼠的成年后肢趾长指长肌中的所有NMJ。该方法还适用于成年小鼠的diaphragm肌,可用于不同的染色剂,包括毒素,凝集素,抗体和核染料。这将有助于了解后腿肌肉整个坐骑中NMJ的分布,形态特征和肌肉组织背景,以进行生物医学和基础研究。

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