Cartilage-Bone Interface Features, Scaffold and Cell Options for Regeneration

E. Bayrak, Burak Ozcan, C. Erisken
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引用次数: 1

Abstract

Tissues with different material and biological properties are connected to one another through interfaces, which can be generally categorized as soft-to-soft tissue interfaces (muscle-tendon, etc.), softto-hard tissue interfaces (cartilage-bone, tendon-bone, etc.) and hardto-hard tissue interfaces (dentin-enamel, etc.). Since these interfaces merge biological materials, i.e., tissues, having distinct composition, structure and function, they possess complexities associated with their hierarchical structures, and when injured their healing/regeneration pathways follow more intricate phenomena compared to single tissues making up the interfaces. Findings reveal that injuries related to tissues connected in series occur mostly at the interfaces due to the mismatch between material properties of individual tissues. Therefore, interface tissue engineering has recently attracted significant attention from academia to be able to understand the mechanism of cell-materials interactions relevant to interfaces. This paper reviews the structure, composition and function of cartilage-bone interface in conjunction with the scaffold and cell options for its regeneration.
软骨-骨界面特征,支架和细胞再生选择
不同材料和生物特性的组织通过界面相互连接,一般可分为软-软组织界面(肌肉-肌腱等)、软硬组织界面(软骨-骨、肌腱-骨等)和硬-硬组织界面(牙本质-牙釉质等)。由于这些界面融合了具有不同组成、结构和功能的生物材料,即组织,因此它们具有与其层次结构相关的复杂性,并且与构成界面的单个组织相比,当它们受伤时,其愈合/再生途径遵循更复杂的现象。研究结果表明,由于单个组织的材料特性不匹配,串联组织的损伤主要发生在界面处。因此,界面组织工程最近引起了学术界的极大关注,因为它能够理解与界面相关的细胞-材料相互作用的机制。本文综述了软骨-骨界面的结构、组成和功能,结合支架和再生细胞的选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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