Department of Biomedical Engineering, Lund University, Box 118, 22100 Lund,
Eur Cell Mater. 2021 Nov 2;42:375-391. doi: 10.22203/eCM.v042a23.
Ruptures to tendons are common and costly, and no clinical consensus exists on the appropriate treatment and rehabilitation regimen to promote their healing as well as full recovery of functionality. Although mechanobiology is known to play an important role in tendon regeneration, the understanding of how mechano-regulated processes affect tendon healing needs further clarification. Many small-animal studies, particularly in rats and mice, have characterized the progression of healing in terms of geometrical, structural, compositional, mechanical, and cellular properties. Some of the properties are also studied under different mechanical loading regimens. The focus of this review is to summarize and generalize the information in the literature regarding spatial and temporal differentiation of tendon properties during rodent tendon healing following full-tendon transection, as well as how this is affected by altered in vivo loading regimens.
肌腱撕裂很常见,也很昂贵,目前尚无临床共识认为哪种治疗和康复方案最合适,既能促进愈合,又能完全恢复其功能。尽管生物力学在肌腱再生中起着重要作用,但对于机械调节过程如何影响肌腱愈合,还需要进一步澄清。许多小动物研究,特别是在大鼠和小鼠中,已经从几何形状、结构、组成、机械和细胞特性等方面对愈合过程进行了描述。一些特性也在不同的机械加载方案下进行了研究。本篇综述的重点是总结和概括文献中有关在全肌腱横断后,啮齿动物肌腱愈合过程中肌腱特性的时空分化,以及体内不同加载方案如何影响这种分化的信息。