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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >Trends and challenges of cartilage tissue engineering
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Trends and challenges of cartilage tissue engineering

机译:软骨组织工程的趋势和挑战

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摘要

Cartilage injuries may be caused by trauma, biomechanical imbalance, or degenerative changes of joint. Unfortunately, cartilage has limited capability to spontaneous repair once damaged and may lead to progressive damage and degeneration. Cartilage tissue-engineering techniques have emerged as the potential clinical strategies. An ideal tissue-engineering approach to cartilage repair should offer good integration into both the host cartilage and the subchondral bone. Cells, scaffolds, and growth factors make up the tissue engineering triad. One of the major challenges for cartilage tissue engineering is cell source and cell numbers. Due to the limitations of proliferation for mature chondrocytes, current studies have alternated to use stem cells as a potential source. In the recent years, a lot of novel biomaterials has been continuously developed and investigated in various in vitro and in vivo studies for cartilage tissue engineering. Moreover, stimulatory factors such as bioactive molecules have been explored to induce or enhance cartilage formation. Growth factors and other additives could be added into culture media in vitro, transferred into cells, or incorporated into scaffolds for in vivo delivery to promote cellular differentiation and tissue regeneration. Based on the current development of cartilage tissue engineering, there exist challenges to overcome. How to manipulate the interactions between cells, scaffold, and signals to achieve the moderation of implanted composite differentiate into moderate stem cells to differentiate into hyaline cartilage to perform the optimum physiological and biomechanical functions without negative side effects remains the target to pursue.
机译:软骨损伤可能是由于外伤,生物力学失衡或关节的退变所致。不幸的是,一旦受损,软骨具有自发修复的能力有限,并且可能导致进行性损害和变性。软骨组织工程技术已经成为潜在的临床策略。理想的组织工程软骨修复方法应能够很好地整合到宿主软骨和软骨下骨中。细胞,支架和生长因子组成了组织工程三联体。软骨组织工程的主要挑战之一是细胞来源和细胞数量。由于成熟软骨细胞增殖的局限性,当前的研究已经交替使用干细胞作为潜在来源。近年来,在用于软骨组织工程的各种体外和体内研究中,不断开发和研究了许多新颖的生物材料。此外,已经探索了诸如生物活性分子的刺激因子来诱导或增强软骨形成。可以将生长因子和其他添加剂体外添加到培养基中,转移到细胞中或掺入支架中进行体内递送,以促进细胞分化和组织再生。基于软骨组织工程的当前发展,存在需要克服的挑战。如何操纵细胞,支架和信号之间的相互作用,以实现缓和植入复合材料的能力,从而分化为中等干细胞,分化为透明软骨,以实现最佳的生理和生物力学功能,而没有负面副作用,这仍然是我们追求的目标。

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