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A Self-Assembling Process in Articular Cartilage Tissue Engineering

机译:关节软骨组织工程中的自组装过程

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摘要

Current therapies for articular cartilage defects often result in fibrocartilaginous tissue. To achieve regeneration with hyaline articular cartilage, tissue-engineering approaches employing cell-seeded scaffolds have been investigated. However, limitations of scaffolds include phenotypic alteration of cells, stress-shielding, hindrance of neotissue organization, and degradation product toxicity. This study employs a self-assembling process to produce tissue-engineered constructs over agarose in vitro without using a scaffold. Compared to past studies using various meshes and gels as scaffolding materials, the self-assembly method yielded constructs with comparable GAG and collagen content. By 12 weeks, the self-assembling process resulted in tissue-engineered constructs that were hyaline-like in appearance with histological, biochemical, and biomechanical properties approaching those of native articular cartilage. Overall, constructs contained two thirds more GAG per dry weight than calf articular cartilage. Collagen per dry weight reached more than one third the level of native tissue. IHC and gel electrophoresis showed collagen type II production and absence of collagen type I. More importantly, self-assembled constructs reached well over one third the stiffness of native tissue.
机译:当前用于关节软骨缺损的疗法通常导致纤维软骨组织。为了实现透明关节软骨的再生,已经研究了采用细胞接种支架的组织工程方法。然而,支架的局限性包括细胞的表型改变,应力屏蔽,新组织组织的障碍和降解产物毒性。这项研究采用了一种自组装过程,无需使用支架即可在体外在琼脂糖上产生组织工程化的构建体。与过去使用各种网眼和凝胶作为支架材料的研究相比,自组装方法产生的GAG和胶原蛋白含量相当。到12周时,自组装过程产生了组织工程构造,其外观类似于玻璃纤维,其组织学,生化和生物力学特性均接近天然关节软骨。总体而言,与小腿关节软骨相比,构建体每干重所含的GAG多三分之二。每干重的胶原蛋白达到天然组织水平的三分之一以上。 IHC和凝胶电泳显示II型胶原蛋白的产生,而I型胶原蛋白的缺乏。更重要的是,自组装构建体的硬度远远超过了天然组织的三分之一。

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