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Nanoscaffold based stem cell regeneration therapy: recent advancement and future potential

机译:基于纳米支架的干细胞再生疗法:最新进展和未来潜力

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Importance of the field: Over the past years, extensive research has been directed towards tissue engineering using conventional scaffolds. In-depth studies in this field have led to the realization that in vivo cells interact with the extracellular matrix, composed of nanofibers at sub-micron scale, which not only provides the mechanical support to the cells but also plays a key role in regulation of cellular behavior. This has led to the development of nanofibrous scaffold (NFS) technology which in combination with stem cells is emerging as an important tool in the development of tissue engineering and regenerative medicine.Areas covered in this review: This review summarizes the three methods of nanofibrous scaffold preparation and provides a state-of-the-art update on the recent advancement in the use of nanoscaffolds in stem cell regeneration therapy.What the reader will gain: The review gives the reader an insight on nanoscaffold based therapy methods, such as how these scaffolds can potentially be designed and used in successful development of stem cell based therapies. Take home message: NFS technology when coupled with stem cells and exploited in the right way has a strong potential of being used in stem cell based regenerative medicine.
机译:领域的重要性:在过去的几年中,广泛的研究已经针对使用常规支架的组织工程。在该领域的深入研究已导致人们认识到,体内细胞与亚微米级纳米纤维组成的细胞外基质相互作用,这不仅为细胞提供了机械支持,而且在调节细胞中起着关键作用。细胞行为。这导致了纳米纤维支架(NFS)技术的发展,该技术与干细胞的结合正在成为组织工程和再生医学发展的重要工具。本综述涵盖的领域:本综述总结了纳米纤维支架的三种方法纳米支架在干细胞再生治疗中的最新应用的最新进展。读者将学到什么:本综述使读者对基于纳米支架的治疗方法有深刻的了解,例如支架可以潜在地设计并用于成功开发基于干细胞的疗法。带回家的信息:NFS技术与干细胞结合并以正确的方式加以利用,在基于干细胞的再生医学中具有强大的潜力。

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