Wang Tao, Chen Peilin, Zheng Monica, Wang Allan, Lloyd David, Leys Toby, Zheng Qiujian, Zheng Ming H
Division of Orthopaedic Surgery, Department of Surgery, Guangdong General Hospital, Guangdong Academy of Medical Sciences, Guangzhou, Guangdong, China.
Centre for Orthopaedic Translational Research, School of Biomedical Science, University of Western Australia, Nedlands, Australia.
J Orthop Res. 2018 Feb;36(2):566-575. doi: 10.1002/jor.23752. Epub 2017 Nov 2.
Tendons are the connective tissue responsible for transferring force from muscles to bones. A key factor in tendon development, maturation, repair, and degradation is its biomechanical environment. Understanding tendon mechanobiology is essential for the development of injury prevention strategies, rehabilitation protocols and potentially novel treatments in tendon injury and degeneration. Despite the simple overall loading on tendon tissue, cells within the tissue in vivo experience a much more complex mechanical environment including tension, compression and shear forces. This creates a substantial challenge in the establishment of in vitro loading models of the tendon. This article reviews multiple loading models used for the study of tendon mechanobiology and summarizes the main findings. Although impressive progress has been achieved in the functionality and mimicry of in vitro loading models, an ideal platform is yet to be developed. Multidisciplinary approaches and collaborations will be the key to unveiling the tendon mechanobiology. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:566-575, 2018.
肌腱是负责将肌肉力量传递至骨骼的结缔组织。肌腱发育、成熟、修复及退化的一个关键因素是其生物力学环境。了解肌腱机械生物学对于制定损伤预防策略、康复方案以及开发肌腱损伤与退变的潜在新疗法至关重要。尽管肌腱组织上的总体负荷较为简单,但体内该组织中的细胞会经历更为复杂的力学环境,包括拉力、压力和剪切力。这给建立肌腱的体外加载模型带来了巨大挑战。本文综述了用于研究肌腱机械生物学的多种加载模型,并总结了主要研究结果。尽管体外加载模型在功能和模拟方面已取得了令人瞩目的进展,但理想的平台仍有待开发。多学科方法与合作将是揭示肌腱机械生物学的关键。© 2017 骨科研究协会。由威利期刊公司出版。《矫形外科研究杂志》36:566 - 575, 2018。