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Heterogeneity of Scaffold Biomaterials in Tissue Engineering

机译:组织工程中支架生物材料的异质性

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摘要

Tissue engineering (TE) offers a potential solution for the shortage of transplantable organs and the need for novel methods of tissue repair. Methods of TE have advanced significantly in recent years, but there are challenges to using engineered tissues and organs including but not limited to: biocompatibility, immunogenicity, biodegradation, and toxicity. Analysis of biomaterials used as scaffolds may, however, elucidate how TE can be enhanced. Ideally, biomaterials should closely mimic the characteristics of desired organ, their function and their in vivo environments. A review of biomaterials used in TE highlighted natural polymers, synthetic polymers, and decellularized organs as sources of scaffolding. Studies of discarded organs supported that decellularization offers a remedy to reducing waste of donor organs, but does not yet provide an effective solution to organ demand because it has shown varied success in vivo depending on organ complexity and physiological requirements. Review of polymer-based scaffolds revealed that a composite scaffold formed by copolymerization is more effective than single polymer scaffolds because it allows copolymers to offset disadvantages a single polymer may possess. Selection of biomaterials for use in TE is essential for transplant success. There is not, however, a singular biomaterial that is universally optimal.
机译:组织工程学(TE)为可移植器官的短缺和对新的组织修复方法的需求提供了一种潜在的解决方案。近年来,TE的方法取得了显着进步,但是使用工程化的组织和器官面临挑战,包括但不限于:生物相容性,免疫原性,生物降解性和毒性。然而,对用作支架的生物材料的分析可能阐明了如何增强TE。理想情况下,生物材料应紧密模仿所需器官的特征,其功能和体内环境。对TE中使用的生物材料的评论强调了天然聚合物,合成聚合物和脱细胞器官作为支架的来源。废弃器官的研究支持脱细胞作用可以减少供体器官的浪费,但仍不能有效地解决器官需求,因为它已根据器官的复杂性和生理要求在体内显示出各种成功。对基于聚合物的支架的审查显示,通过共聚形成的复合支架比单一聚合物支架更有效,因为它可以使共聚物抵消单一聚合物可能具有的缺点。选择用于TE的生物材料对于成功移植至关重要。但是,没有一种通用的最佳生物材料。

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