Acta Pharm. 2013 Sep;63(3):295-304. doi: 10.2478/acph-2013-0024.
The idea of creating replacement for damaged or diseased tissue, which will mimic the physiological conditions and simultaneously promote regeneration by patients' own cells, has been a major challenge in the biomedicine for more than a decade. Therefore, nanofibers are a promising solution to address these challenges. These are solid polymer fibers with nanosized diameter, which show improved properties compared to the materials of larger dimensions or forms and therefore cause different biological responses. On the nanometric level, nanofibers provide a biomimetic environment, on the micrometric scale three-dimensional architecture with the desired surface properties regarding the intended application within the body, while on the macrometric scale mechanical strength and physiological acceptability. In the review, the development of nanofibers as tissue scaffolds, modern wound dressings for chronic wound therapy and drug delivery systems is highlighted. Research substantiates the effectiveness of nanofibers for enhanced tissue regeneration, but ascertains that evidences from clinical studies are currently lacking. Nevertheless, due to the development of nano- and bio-sciences, products on the market can be expected in the near future.
将受损或患病的组织替换为模仿生理条件并同时促进患者自身细胞再生的想法,是生物医学领域十年来的主要挑战。因此,纳米纤维是解决这些挑战的一种有前途的解决方案。这些是具有纳米级直径的固体聚合物纤维,与较大尺寸或形状的材料相比,它们具有改善的性能,因此会引起不同的生物学反应。在纳米尺度上,纳米纤维提供了仿生环境,在微米尺度上提供了具有所需表面特性的三维结构,以满足体内预期应用的要求,而在宏观尺度上则提供了机械强度和生理可接受性。在综述中,重点介绍了纳米纤维作为组织支架、用于慢性伤口治疗的现代伤口敷料和药物输送系统的发展。研究证实了纳米纤维在增强组织再生方面的有效性,但确定目前缺乏来自临床研究的证据。尽管如此,由于纳米和生物科学的发展,预计在不久的将来市场上会有相关产品。