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High-Density Cell Systems Incorporating Polymer Microspheres as Microenvironmental Regulators in Engineered Cartilage Tissues

机译:高密度细胞系统在工程软骨组织中纳入聚合物微球作为微环境调节剂。

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摘要

To address the significant clinical need for tissue-engineered therapies for the repair and regeneration of articular cartilage, many systems have recently been developed using bioactive polymer microspheres as regulators of the chondrogenic microenvironment within high-density cell cultures. In this review, we highlight various densely cellular systems utilizing polymer microspheres as three-dimensional (3D) structural elements within developing engineered cartilage tissue, carriers for cell expansion and delivery, vehicles for spatiotemporally controlled growth factor delivery, and directors of cell behavior via regulation of cell–biomaterial interactions. The diverse systems described herein represent a shift from the more traditional tissue engineering approach of combining cells and growth factors within a biomaterial scaffold, to the design of modular systems that rely on the assembly of cells and bioactive polymer microspheres as building blocks to guide the creation of articular cartilage. Cell-based assembly of 3D microsphere-incorporated structures represents a promising avenue for the future of tissue engineering.
机译:为了满足组织工程疗法对关节软骨的修复和再生的重大临床需求,最近开发了许多系统,这些系统使用生物活性聚合物微球作为高密度细胞培养物中软骨微环境的调节剂。在这篇综述中,我们重点介绍了利用聚合物微球作为发展中的工程软骨组织中的三维(3D)结构元素,用于细胞扩增和递送的载体,用于时空控制的生长因子递送的载体以及通过调控进行细胞行为指导的各种密集细胞系统细胞-生物材料相互作用。本文所述的各种系统代表了从将生物材料支架内的细胞和生长因子结合在一起的更传统的组织工程方法的转变,到依靠细胞和生物活性聚合物微球体的组装作为指导创建的模块化系统的设计软骨。基于细胞的3D微球结合结构的组装代表了组织工程未来的广阔前景。

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