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肌腱发育与损伤模型。

Models of tendon development and injury.

作者信息

Theodossiou Sophia K, Schiele Nathan R

机构信息

Biological Engineering, University of Idaho, 875 Perimeter Dr. MS 0904, Moscow, ID 83844, USA.

出版信息

BMC Biomed Eng. 2019;1. doi: 10.1186/s42490-019-0029-5. Epub 2019 Nov 29.

Abstract

Tendons link muscle to bone and transfer forces necessary for normal movement. Tendon injuries can be debilitating and their intrinsic healing potential is limited. These challenges have motivated the development of model systems to study the factors that regulate tendon formation and tendon injury. Recent advances in understanding of embryonic and postnatal tendon formation have inspired approaches that aimed to mimic key aspects of tendon development. Model systems have also been developed to explore factors that regulate tendon injury and healing. We highlight current model systems that explore developmentally inspired cellular, mechanical, and biochemical factors in tendon formation and tenogenic stem cell differentiation. Next, we discuss in vivo, in vitro, ex vivo, and computational models of tendon injury that examine how mechanical loading and biochemical factors contribute to tendon pathologies and healing. These tendon development and injury models show promise for identifying the factors guiding tendon formation and tendon pathologies, and will ultimately improve regenerative tissue engineering strategies and clinical outcomes.

摘要

肌腱将肌肉与骨骼相连,并传递正常运动所需的力量。肌腱损伤可能使人衰弱,其自身的愈合潜力有限。这些挑战推动了模型系统的发展,以研究调节肌腱形成和肌腱损伤的因素。对胚胎期和出生后肌腱形成的最新认识进展激发了旨在模拟肌腱发育关键方面的方法。还开发了模型系统来探索调节肌腱损伤和愈合的因素。我们重点介绍当前的模型系统,这些系统探索在肌腱形成和肌腱生成干细胞分化中受发育启发的细胞、机械和生化因素。接下来,我们讨论肌腱损伤的体内、体外、离体和计算模型,这些模型研究机械负荷和生化因素如何导致肌腱病变和愈合。这些肌腱发育和损伤模型有望识别指导肌腱形成和肌腱病变的因素,并最终改善再生组织工程策略和临床结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82aa/7422529/82f29b901c1e/42490_2019_29_Fig1_HTML.jpg

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