Wei Guobao, Ma Peter X
Department of Biomedical Engineering, University of Michigan.
Adv Funct Mater. 2008 Nov 24;18(22):3566-3582. doi: 10.1002/adfm.200800662.
Biomaterials play a pivotal role in regenerative medicine, which aims to regenerate and replace lost/dysfunctional tissues or organs. Biomaterials (scaffolds) serve as temporary 3D substrates to guide neo tissue formation and organization. It is often beneficial for a scaffolding material to mimic the characteristics of extracellular matrix (ECM) at the nanometer scale and to induce certain natural developmental or/and wound healing processes for tissue regeneration applications. This article reviews the fabrication and modification technologies for nanofibrous, nanocomposite, and nanostructured drug-delivering scaffolds. ECM-mimicking nanostructured biomaterials have been shown to actively regulate cellular responses including attachment, proliferation, differentiation and matrix deposition. Nano-scaled drug delivery systems can be successfully incorporated into a porous 3D scaffold to enhance the tissue regeneration capacity. In conclusion, nano-structured biomateials are a very exciting and rapidly expanding research area, and are providing new enabling technologies for regenerative medicine.
生物材料在再生医学中起着关键作用,再生医学旨在再生和替换受损/功能失调的组织或器官。生物材料(支架)作为临时的三维基质,用于引导新组织的形成和组织构建。对于支架材料而言,在纳米尺度上模拟细胞外基质(ECM)的特性,并诱导某些自然发育或/和伤口愈合过程以用于组织再生应用往往是有益的。本文综述了纳米纤维、纳米复合材料和纳米结构药物递送支架的制备和改性技术。已证明模仿ECM的纳米结构生物材料能积极调节细胞反应,包括附着、增殖、分化和基质沉积。纳米级药物递送系统可以成功地整合到多孔三维支架中,以增强组织再生能力。总之,纳米结构生物材料是一个非常令人兴奋且发展迅速的研究领域,正在为再生医学提供新的赋能技术。