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肌腱结合部——形态与功能

The Myotendinous Junction-Form and Function.

作者信息

Mackey Abigail L

机构信息

Institute of Sports Medicine Copenhagen, Department of Orthopaedic Surgery, Copenhagen University Hospital - Bispebjerg and Frederiksberg, 2400 Copenhagen, Denmark

Department of Clinical Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, 2400 Copenhagen, Denmark.

出版信息

Cold Spring Harb Perspect Biol. 2024 Aug 12. doi: 10.1101/cshperspect.a041500.

Abstract

A critical link in the chain of force transmission from muscle fiber cross-bridge to bone is the interface between muscle and tendon-the myotendinous junction (MTJ). To meet the challenge of connecting these two tissues, the MTJ is specialized molecularly and morphologically. Distinct transcriptional profiles are evident for the myonuclei at the myofiber tips and a population of mononuclear tendon cells at the MTJ, demonstrating support from both sides in MTJ maintenance. Paradoxically, despite this high degree of specialization, the MTJ remains susceptible to strain (rupture) injury and is often associated with failed tissue healing. Incomplete understanding of the nature of the MTJ and the elements contributing to its plasticity hinder tackling this unsolved clinical challenge. The goal of this review is to summarize key structural and molecular features of the MTJ, discuss MTJ adaptation in response to mechanical (un)loading, aging, and injury, and highlight the major unanswered questions surrounding the MTJ.

摘要

从肌纤维横桥到骨骼的力传递链中的一个关键环节是肌肉与肌腱之间的界面——肌-腱连接(MTJ)。为了应对连接这两种组织的挑战,MTJ在分子和形态上都具有特殊性。肌纤维末端的肌细胞核和MTJ处的一群单核肌腱细胞具有明显不同的转录谱,这表明在MTJ维持方面双方都提供了支持。矛盾的是,尽管MTJ具有高度的特殊性,但它仍然容易受到应变(断裂)损伤,并且常常与组织愈合失败相关。对MTJ的本质以及促成其可塑性的因素的不完全理解阻碍了应对这一未解决的临床挑战。本综述的目的是总结MTJ的关键结构和分子特征,讨论MTJ对机械(非)负荷、衰老和损伤的适应性,并突出围绕MTJ的主要未解决问题。

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