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Polymeric Nanofibers in Tissue Engineering

机译:组织工程中的聚合物纳米纤维

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摘要

Polymeric nanofibers can be produced using methods such as electrospinning, phase separation, and self-assembly, and the fiber composition, diameter, alignment, degradation, and mechanical properties can be tailored to the intended application. Nanofibers possess unique advantages for tissue engineering. The small diameter closely matches that of extracellular matrix fibers, and the relatively large surface area is beneficial for cell attachment and bioactive factor loading. This review will update the reader on the aspects of nanofiber fabrication and characterization important to tissue engineering, including control of porous structure, cell infiltration, and fiber degradation. Bioactive factor loading will be discussed with specific relevance to tissue engineering. Finally, applications of polymeric nanofibers in the fields of bone, cartilage, ligament and tendon, cardiovascular, and neural tissue engineering will be reviewed.
机译:可以使用诸如静电纺丝,相分离和自组装的方法来生产聚合物纳米纤维,并且可以使纤维的组成,直径,排列,降解和机械性能适合预期的应用。纳米纤维在组织工程方面具有独特的优势。小直径与细胞外基质纤维的直径紧密匹配,并且较大的表面积有利于细胞附着和生物活性因子负载。这篇综述将向读者介绍对组织工程重要的纳米纤维制造和表征方面,包括控制多孔结构,细胞浸润和纤维降解。生物活性因子负载将与组织工程特别相关。最后,将审查聚合物纳米纤维在骨骼,软骨,韧带和肌腱,心血管和神经组织工程领域的应用。

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