转录因子莫霍克调节肌腱/韧带发育:叙述回顾。

IF 1.4 4区 医学 Q2 MEDICINE, GENERAL & INTERNAL
Heng Yang, Chan Li, Qian Ding, Tai-Lai Li, Wei Tang, Hong-Jin Sui
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引用次数: 0

摘要

由于老化或过载引起的肌腱和韧带损伤是临床上常见的运动系统损伤,常导致运动受限和疼痛。这些疾病由于再生能力差,很难部分治愈。莫霍克(Mkx)是一种转录因子,已被证实对肌腱/韧带发育至关重要。Mkx基因敲除动物表现出不同程度的肌腱缺陷,多个基因表现出不同水平的表达。间充质干细胞和肌腱干/祖细胞在Mkx过表达或缺乏、有或没有机械力刺激的情况下进行了研究。为了进一步研究肌腱和韧带损伤修复的潜在机制并开发治疗方法,有必要深入研究调节肌腱/韧带发育的分子网络。研究设计为叙述性回顾。对PubMed数据库进行检索,对Mkx进行全面的文献综述。共纳入119项研究。最近的研究报道了Mkx及其相关基因在肌腱/韧带发育过程中的重要性。此外,许多文章也从治疗方面提供了与mkx相关的损伤后组织修复。Mkx在肌腱/韧带发育和病理过程中起重要作用。将Mkx、Mkx相关分子相互作用网络与间充质干细胞或肌腱干/祖细胞以及三维培养系统相结合,可能为制定治疗急慢性肌腱/韧带疾病的新策略提供新思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcription factor Mohawk regulates tendon/ligament development: A narrative review.

Tendon and ligament injuries due to aging or overload are common clinical injuries of the locomotor system, often resulting in limited motion and pain. These diseases are difficult to partially cure because of their poor regeneration ability. Mohawk (Mkx) is a transcription factor that has been verified as critical to tendon/ligament development. Mkx knockout animals exhibit varying degrees of tendon defects, with multiple genes exhibiting different levels of expression. Mesenchymal stem cells and tendon stem/progenitor cells have been studied under circumstances of Mkx overexpression or deficiency, with or without mechanoforce stimulation. To further investigate the underlying mechanisms of tendon and ligament injury repair and develop therapeutic approaches, it is necessary to dig deeper into the molecular networks regulating tendon/ligament development. The study design is a narrative review. A search of the PubMed database was performed to conduct a comprehensive literature review on Mkx. A total of 119 studies were included. Recent studies have reported the importance of Mkx and its related genes on tendon/ligament developmental processes. In addition, numerous articles have also provided therapeutic aspects to Mkx-related tissue repair after injuries. Mkx plays an important role in tendon/ligament development, as well as the pathological processes. The combination of Mkx, Mkx-related molecular interaction networks with mesenchymal stem cells or tendon stem/progenitor cells, and 3-dimensioned cultural systems may offer a new thought for developing new strategies for acute and chronic tendon/ligament diseases.

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来源期刊
Medicine
Medicine 医学-医学:内科
CiteScore
2.80
自引率
0.00%
发文量
4342
审稿时长
>12 weeks
期刊介绍: Medicine is now a fully open access journal, providing authors with a distinctive new service offering continuous publication of original research across a broad spectrum of medical scientific disciplines and sub-specialties. As an open access title, Medicine will continue to provide authors with an established, trusted platform for the publication of their work. To ensure the ongoing quality of Medicine’s content, the peer-review process will only accept content that is scientifically, technically and ethically sound, and in compliance with standard reporting guidelines.
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