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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Scaffolding polymeric biomaterials: Are naturally occurring biological macromolecules more appropriate for tissue engineering?
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Scaffolding polymeric biomaterials: Are naturally occurring biological macromolecules more appropriate for tissue engineering?

机译:脚手架聚合物生物材料:天然存在的生物大分子更适合组织工程?

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Nowadays, tissue and organ failures resulted from injury, aging accounts, diseases or other type of damages is one of the most important health problems with an increasing incidence worldwide. Current treatments have limitations including, low graft efficiency, shortage of donor organs, as well as immunological problems. In this context, tissue engineering (TE) was introduced as a novel and versatile approach for restoring tissue/organ function using living cells, scaffold and bioactive (macro -)molecules. Among these, scaffold as a three-dimensional (3D) support material, provide physical and chemical cues for seeding cells and has an essential role in cell missions. Among the wide verity of scaffolding materials, natural or synthetic biopolymers are the most commonly biomaterials mainly due to their unique physicochemical and biological features. In this context, naturally occurring biological macromolecules are particular of interest owing to their low immunogenicity, excellent biocompatibility and cytocompatibility, as well as antigenicity that qualified them as popular choices for scaffolding applications. In this review, we highlighted the potentials of natural and synthetic polymers as scaffolding materials. The properties, advantages, and disadvantages of both polymer types as well as the current status, challenges, and recent progresses regarding the application of them as scaffolding biomaterials are also discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:如今,由伤害,衰老账户,疾病或其他类型的损害导致组织和器官失败是全世界发病率越来越重要的健康问题之一。目前的治疗具有限制,包括低移植效率,供体器官的短缺以及免疫问题。在这种情况下,将组织工程(TE)作为一种新颖而通用的方法,用于使用活细胞,支架和生物活性(宏观)分子恢复组织/器官功能。其中,作为三维(3D)支撑材料的支架提供用于播种细胞的物理和化学提示,并且在细胞任务中具有重要作用。在脚手架材料的宽度范围内,天然或合成生物聚合物是最常见的生物材料,主要是由于其独特的物理化学和生物学特征为主。在这种情况下,由于其低免疫原性,优异的生物相容性和细胞相容性,以及符合脚手架应用的流行选择的抗原性,天然存在的生物大分子是感兴趣的。在本综述中,我们强调了天然和合成聚合物的潜力作为脚手架材料。还讨论了两种聚合物类型的性质,优点和缺点以及当前状态,挑战和最近关于将它们应用作为支架生物材料的进展。 (c)2019 Elsevier B.v.保留所有权利。

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