Columbia University, Department of Biomedical Engineering, New York, NY 10027, USA.
Annu Rev Biomed Eng. 2013;15:201-26. doi: 10.1146/annurev-bioeng-071910-124656. Epub 2013 Apr 29.
Connective tissues such as tendons or ligaments attach to bone across a multitissue interface with spatial gradients in composition, structure, and mechanical properties. These gradients minimize stress concentrations and mediate load transfer between the soft and hard tissues. Given the high incidence of tendon and ligament injuries and the lack of integrative solutions for their repair, interface regeneration remains a significant clinical challenge. This review begins with a description of the developmental processes and the resultant structure-function relationships that translate into the functional grading necessary for stress transfer between soft tissue and bone. It then discusses the interface healing response, with a focus on the influence of mechanical loading and the role of cell-cell interactions. The review continues with a description of current efforts in interface tissue engineering, highlighting key strategies for the regeneration of the soft tissue-to-bone interface, and concludes with a summary of challenges and future directions.
连接组织(如肌腱或韧带)穿过具有组成、结构和机械性能空间梯度的多组织界面附着在骨上。这些梯度最小化了应力集中,并在软组织和硬组织之间介导了负载传递。鉴于肌腱和韧带损伤的高发率以及缺乏整合解决方案来修复它们,界面再生仍然是一个重大的临床挑战。本综述首先描述了发育过程以及由此产生的结构-功能关系,这些关系转化为在软组织和骨之间传递应力所需的功能分级。然后讨论了界面愈合反应,重点关注机械加载的影响和细胞-细胞相互作用的作用。综述接着描述了界面组织工程的当前进展,强调了再生软组织-骨界面的关键策略,并总结了挑战和未来方向。