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首页> 外文期刊>Combinatorial chemistry & high throughput screening >Biomimetic stratified scaffold design for ligament-to-bone interface tissue engineering.
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Biomimetic stratified scaffold design for ligament-to-bone interface tissue engineering.

机译:韧带到骨界面组织工程的仿生分层支架设计。

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The emphasis in the field of orthopaedic tissue engineering is on imparting biomimetic functionality to tissue engineered bone or soft tissue grafts and enabling their translation to the clinic. A significant challenge in achieving extended graft functionality is engineering the biological fixation of these grafts with each other as well as with the host environment. Biological fixation will require re-establishment of the structure-function relationship inherent at the native soft tissue-to-bone interface on these tissue engineered grafts. To this end, strategic biomimicry must be incorporated into advanced scaffold design. To facilitate integration between distinct tissue types (e.g., bone with soft tissues such as cartilage, ligament, or tendon), a stratified or multi-phasic scaffold with distinct yet continuous tissue regions is required to pre-engineer the interface between bone and soft tissues. Using the ACL-to-bone interface as a model system, this review outlines the strategies for stratified scaffold design for interface tissue engineering, focusing on identifying the relevant design parameters derived from an understanding of the structure-function relationship inherent at the soft-to-hard tissue interface. The design approach centers on first addressing the challenge of soft tissue-to-bone integration ex vivo, and then subsequently focusing on the relatively less difficult task of bone-to-bone integration in vivo. In addition, we will review stratified scaffold design aimed at exercising spatial control over heterotypic cellular interactions, which are critical for facilitating the formation and maintenance of distinct yet continuous multi-tissue regions. Finally, potential challenges and future directions in this emerging area of advanced scaffold design will be discussed.
机译:整形外科组织工程领域的重点是将仿生功能赋予组织工程化的骨或软组织移植物,并使它们能够翻译至临床。实现扩展的移植物功能性的重大挑战是设计这些移植物之间以及宿主环境之间的生物固定。生物固定将需要重新建立这些组织工程移植物上的天然软组织与骨骼界面固有的结构-功能关系。为此,必须将战略仿生方法纳入先进的支架设计中。为了促进不同组织类型(例如,具有诸如软骨,韧带或肌腱等软组织的骨)之间的整合,需要具有不同但连续的组织区域的分层或多相支架,以对骨与软组织之间的界面进行预工程设计。本文使用ACL到骨的界面作为模型系统,概述了界面组织工程分层支架设计的策略,重点是确定相关的设计参数,这些参数是从对软组织固有的结构-功能关系的理解中得出的-硬组织界面。设计方法的重点是首先解决离体软组织与骨融合的挑战,然后重点关注相对较困难的体内骨与骨融合的任务。另外,我们将审查旨在对异型细胞相互作用进行空间控制的分层支架设计,这对于促进形成和维持截然不同但连续的多组织区域至关重要。最后,将讨论在高级脚手架设计这一新兴领域中的潜在挑战和未来方向。

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