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Tailoring the Interface of Biomaterials to Design Effective Scaffolds

机译:量身定制生物材料的界面以设计有效的支架

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Tissue engineering (TE) is a multidisciplinary science, which including principles from material science, biology and medicine aims to develop biological substitutes to restore damaged tissues and organs. A major challenge in TE is the choice of suitable biomaterial to fabricate a scaffold that mimics native extracellular matrix guiding resident stem cells to regenerate the functional tissue. Ideally, the biomaterial should be tailored in order that the final scaffold would be (i) biodegradable to be gradually replaced by regenerating new tissue, (ii) mechanically similar to the tissue to regenerate, (iii) porous to allow cell growth as nutrient, oxygen and waste transport and (iv) bioactive to promote cell adhesion and differentiation. With this perspective, this review discusses the options and challenges facing biomaterial selection when a scaffold has to be designed. We highlight the possibilities in the final mold the materials should assume and the most effective techniques for its fabrication depending on the target tissue, including the alternatives to ameliorate its bioactivity. Furthermore, particular attention has been given to the influence that all these aspects have on resident cells considering the frontiers of materiobiology. In addition, a focus on chitosan as a versatile biomaterial for TE scaffold fabrication has been done, highlighting its latest advances in the literature on bone, skin, cartilage and cornea TE.
机译:组织工程学(TE)是一门多学科的科学,其中包括材料科学,生物学和医学领域的原理,旨在开发生物替代品以恢复受损的组织和器官。 TE的主要挑战是选择合适的生物材料来制造能够模仿天然细胞外基质的支架,从而引导驻留的干细胞再生功能组织。理想情况下,应该对生物材料进行定制,以使最终的支架能够(i)可生物降解,以通过再生新组织逐渐被替换;(ii)在机械上类似于要再生的组织;(iii)多孔以允许细胞作为营养物质生长,氧气和废物运输,以及(iv)具有生物活性以促进细胞粘附和分化。从这个角度出发,本综述讨论了在必须设计支架时生物材料选择所面临的选择和挑战。我们重点介绍了材料在最终模具中应具有的可能性,以及根据目标组织制造其最有效的技术,包括改善其生物活性的替代方法。此外,考虑到材料生物学的前沿,已经特别关注了所有这些方面对驻留细胞的影响。此外,已经将壳聚糖作为用于TE支架制造的通用生物材料进行了重点研究,突出了其在骨骼,皮肤,软骨和角膜TE文献中的最新进展。

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