Department of Trauma and Orthopaedics, Peking University People's Hospital, Beijing 100044, China.
Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.
Theranostics. 2019 Jan 24;9(3):734-746. doi: 10.7150/thno.28729. eCollection 2019.
Motor endplates (MEPs) are the important interfaces between peripheral nerves and muscle fibers. Investigation of the spatial distribution of MEPs could help us better understand neuromuscular functional activities and improve the diagnosis and therapy of related diseases. Fluorescent α-bungarotoxin was injected to label the motor endplates in whole-mount skeletal muscles, and tissue optical clearing combined with light-sheet microscopy was used to investigate the spatial distribution of MEPs and in-muscle nerve branches in different skeletal muscles in wild-type and transgenic fluorescent mice. Electrophysiology was used to determine the relationship between the spatial distribution of MEPs and muscle function. The exact three-dimensional distribution of MEPs in whole skeletal muscles was first obtained. We found that the MEPs in the muscle were distributed in an organized pattern of lamella clusters, with no MEPs outside the lamella zone. Each MEP lamella was innervated by one independent in-muscle nerve branch and mediated an independent muscle subgroup contraction. Additionally, the MEPs changed along the lamella clusters after denervation and regained the initial pattern after reinnervation. The integrity and spatial distribution of MEPs could reflect the functional state of muscles. The signal absence of a certain MEP lamella could suggest a problem in certain part of the muscle. The MEP lamella clusters might be the basis of neuromuscular function, and the spatial distribution of MEPs could serve as a testbed for evaluating the functional status of muscle and the therapeutic targeting map related to MEPs.
运动终板(Meps)是外周神经和肌肉纤维之间的重要接口。研究 Meps 的空间分布可以帮助我们更好地了解神经肌肉的功能活动,并改善相关疾病的诊断和治疗。荧光α-银环蛇毒素被注入到整个骨骼肌中,以标记运动终板,组织光学透明化结合光片显微镜用于研究野生型和转基因荧光小鼠不同骨骼肌中 Meps 和肌内神经分支的空间分布。电生理学用于确定 Meps 的空间分布与肌肉功能之间的关系。首次获得了整个骨骼肌中 Meps 的精确三维分布。我们发现肌肉中的 Meps 呈层状簇的有序模式分布,层状区外没有 Meps。每个 Mep 层由一个独立的肌内神经分支支配,并介导一个独立的肌肉亚群收缩。此外,去神经后 Meps 在层状簇中发生改变,重新神经支配后恢复初始模式。Meps 的完整性和空间分布可以反映肌肉的功能状态。特定 Mep 层的信号缺失可能表明肌肉的某些部位存在问题。Mep 层状簇可能是神经肌肉功能的基础,Meps 的空间分布可以作为评估肌肉功能状态和与 Meps 相关的治疗靶向图的试验台。