Chaudhury Koel, Kumar Vishu, Kandasamy Jayaprakash, RoyChoudhury Sourav
School of Medical Science and Technology, Indian Institute of Technology, Kharagpur, West Bengal, India.
Int J Nanomedicine. 2014 Sep 1;9:4153-67. doi: 10.2147/IJN.S45332. eCollection 2014.
Nanotechnology has considerably accelerated the growth of regenerative medicine in recent years. Application of nanotechnology in regenerative medicine has revolutionized the designing of grafts and scaffolds which has resulted in new grafts/scaffold systems having significantly enhanced cellular and tissue regenerative properties. Since the cell-cell and cell-matrix interaction in biological systems takes place at the nanoscale level, the application of nanotechnology gives an edge in modifying the cellular function and/or matrix function in a more desired way to mimic the native tissue/organ. In this review, we focus on the nanotechnology-based recent advances and trends in regenerative medicine and discussed under individual organ systems including bone, cartilage, nerve, skin, teeth, myocardium, liver and eye. Recent studies that are related to the design of various types of nanostructured scaffolds and incorporation of nanomaterials into the matrices are reported. We have also documented reports where these materials and matrices have been compared for their better biocompatibility and efficacy in supporting the damaged tissue. In addition to the recent developments, future directions and possible challenges in translating the findings from bench to bedside are outlined.
近年来,纳米技术极大地推动了再生医学的发展。纳米技术在再生医学中的应用彻底改变了移植物和支架的设计,催生了具有显著增强的细胞和组织再生特性的新型移植物/支架系统。由于生物系统中的细胞-细胞和细胞-基质相互作用发生在纳米尺度水平,纳米技术的应用在以更理想的方式改变细胞功能和/或基质功能以模拟天然组织/器官方面具有优势。在本综述中,我们聚焦于基于纳米技术的再生医学最新进展和趋势,并在包括骨骼、软骨、神经、皮肤、牙齿、心肌、肝脏和眼睛在内的各个器官系统下进行了讨论。报道了与各种类型纳米结构支架的设计以及纳米材料融入基质相关的近期研究。我们还记录了将这些材料和基质在更好的生物相容性和支持受损组织的功效方面进行比较的报告。除了近期的发展,还概述了将研究成果从实验室转化到临床应用的未来方向和可能面临的挑战。