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Cell-laden hydrogels for osteochondral and cartilage tissue engineering

机译:用于骨质色神经组织组织工程的细胞 - 升水水凝胶

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摘要

Despite tremendous advances in the field of regenerative medicine, it still remains challenging to repair the osteochondral interface and full-thickness articular cartilage defects. This inefficiency largely originates from the lack of appropriate tissue-engineered artificial matrices that can replace the damaged regions and promote tissue regeneration. Hydrogels are emerging as a promising class of biomaterials for both soft and hard tissue regeneration. Many critical properties of hydrogels, such as mechanical stiffness, elasticity, water content, bioactivity, and degradation, can be rationally designed and conveniently tuned by proper selection of the material and chemistry. Particularly, advances in the development of cell-laden hydrogels have opened up new possibilities for cell therapy. In this article, we describe the problems encountered in this field and review recent progress in designing cell-hydrogel hybrid constructs for promoting the reestablishment of osteochondral/cartilage tissues. Our focus centers on the effects of hydrogel type, cell type, and growth factor delivery on achieving efficient chondrogenesis and osteogenesis. We give our perspective on developing next-generation matrices with improved physical and biological properties for osteochondral/cartilage tissue engineering. We also highlight recent advances in biomanufacturing technologies (e.g. molding, bioprinting, and assembly) for fabrication of hydrogel-based osteochondral and cartilage constructs with complex compositions and microarchitectures to mimic their native counterparts.
机译:尽管在再生医学领域具有巨大进展,但修复了骨质色界面和全厚关节软骨缺陷仍然仍然具有挑战性。这种低效率在很大程度上起源于缺乏适当的组织工程人工基质,可以取代受损区域并促进组织再生。水凝胶是作为柔软和硬组织再生的有前途的生物材料类。 Many critical properties of hydrogels, such as mechanical stiffness, elasticity, water content, bioactivity, and degradation, can be rationally designed and conveniently tuned by proper selection of the material and chemistry.特别是,细胞 - 饲养水凝胶的发展的进步已经为细胞疗法开辟了新的可能性。在本文中,我们描述了该领域遇到的问题,并回顾了设计细胞 - 水凝胶混合构建体的最新进展,以促进骨髓/软骨组织的重新建立。我们对水凝胶型,细胞类型和生长因子递送对实现有效的软骨发生和骨质发生的影响。我们在开发下一代矩阵的视角下,具有改善的骨质色素/软骨组织工程的物理和生物学性质。我们还强调了生物制造技术(例如成型,生物监测和组装)的最新进展,用于制备水凝胶基骨质色神经和软骨构建体,其具有复杂的组合物和微体系结构以模拟其天然对应物。

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