Division of Systems & Engineering Management, School of Mechanical & Aerospace Engineering, Nanyang Technological University, Singapore.
Nanomedicine (Lond). 2013 Apr;8(4):591-602. doi: 10.2217/nnm.13.46.
Nanobiomaterials, a field at the interface of biomaterials and nanotechnologies, when applied to tissue engineering applications, are usually perceived to resemble the cell microenvironment components or as a material strategy to instruct cells and alter cell behaviors. Therefore, they provide a clear understanding of the relationship between nanotechnologies and resulting cellular responses. This review will cover recent advances in nanobiomaterial research for applications in tissue engineering. In particular, recent developments in nanofibrous scaffolds, nanobiomaterial composites, hydrogel systems, laser-fabricated nanostructures and cell-based bioprinting methods to produce scaffolds with nanofeatures for tissue engineering are discussed. As in native niches of cells, where nanofeatures are constantly interacting and influencing cellular behavior, new generations of scaffolds will need to have these features to enable more desirable engineered tissues. Moving forward, tissue engineering will also have to address the issues of complexity and organization in tissues and organs.
纳米生物材料是生物材料和纳米技术的交叉领域,当应用于组织工程应用时,通常被认为类似于细胞微环境成分,或者是一种指导细胞和改变细胞行为的材料策略。因此,它们提供了对纳米技术与细胞反应之间关系的清晰理解。本综述将涵盖用于组织工程应用的纳米生物材料研究的最新进展。特别是,最近在纳米纤维支架、纳米生物复合材料、水凝胶系统、激光制造的纳米结构以及基于细胞的生物打印方法方面的进展,这些方法用于生产具有纳米特征的支架以用于组织工程。就像在细胞的天然小生境中一样,纳米特征不断相互作用并影响细胞行为,新一代支架将需要具有这些特征,以实现更理想的工程组织。展望未来,组织工程还必须解决组织和器官的复杂性和组织问题。