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Advances in polymer‐based cell encapsulation and its applications in tissue repair

机译:聚合物基细胞封装及其在组织修复中的应用进展

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摘要

Abstract Cell microencapsulation is a more widely accepted area of biological encapsulation. In most cases, it involves fixing cells in polymer scaffolds or semi‐permeable hydrogel capsules, providing the environment for protecting cells, allowing the exchange of nutrients and oxygen, and protecting cells against the attack of the host immune system by preventing the entry of antibodies and cytotoxic immune cells. Hydrogel encapsulation provides a three‐dimensional (3D) environment similar to that experienced in vivo, so it can maintain normal cellular functions to produce tissues similar to those in vivo. Embedded cells can be genetically modified to release specific therapeutic products directly at the target site, thereby eliminating the side effects of systemic treatments. Cellular microcarriers need to meet many extremely high standards regarding their biocompatibility, cytocompatibility, immunoseparation capacity, transport, mechanical, and chemical properties. In this article, we discuss the biopolymer gels used in tissue engineering applications and the brief introduction of cell encapsulation for therapeutic protein production. Also, we review polymer biomaterials and methods for preparing cell microcarriers for biomedical applications. At the same time, in order to improve the application performance of cell microcarriers in vivo, we also summarize the main limitations and improvement strategies of cell encapsulation. Finally, the main applications of polymer cell microcarriers in regenerative medicine are summarized.
机译:摘要 细胞微胶囊化是生物胶囊化中一个被广泛接受的领域。在大多数情况下,它涉及将细胞固定在聚合物支架或半透水凝胶胶囊中,为保护细胞提供环境,允许营养和氧气的交换,并通过防止抗体和细胞毒性免疫细胞的进入来保护细胞免受宿主免疫系统的攻击。水凝胶封装提供了一个类似于体内体验的三维(3D)环境,因此它可以维持正常的细胞功能,以产生与体内相似的组织。嵌入的细胞可以进行基因改造,直接在靶位点释放特定的治疗产品,从而消除全身治疗的副作用。细胞微载体需要满足许多关于其生物相容性、细胞相容性、免疫分离能力、运输、机械和化学性质的极高标准。在本文中,我们将讨论用于组织工程应用的生物聚合物凝胶,并简要介绍用于治疗性蛋白质生产的细胞封装。此外,我们还综述了用于生物医学应用的聚合物生物材料和制备细胞微载体的方法。同时,为了提高细胞微载体在体内的应用性能,我们还总结了细胞包封的主要局限性和改进策略。最后,总结了聚合物细胞微载体在再生医学中的主要应用。

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