State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.
Nanoscale. 2019 Aug 7;11(29):13678-13708. doi: 10.1039/c9nr02955a. Epub 2019 Jul 11.
Nanobiomaterials have attracted tremendous attention in the biomedical field. Especially in the past few years, a large number of low dimensional nanobiomaterials, including 0D nanostructures, 1D nanotubes and 2D nanosheets, were employed for tumor therapy due to their optically triggered tumor therapy effects and drug loading capacities. However, these low dimensional nanobiomaterials cannot support cell adhesion and possess poor tissue regeneration ability, thus they are not suitable for application in regenerative medicine. Three dimensional (3D) nanofiber scaffolds have attracted extensive attention in tissue regeneration, including bone, skin, nerve and cardiac tissues, due to their similar extracellular matrix structures. Additionally, many 3D scaffolds displayed bone and cartilage regeneration abilities. Therefore, to obtain materials with both tumor therapy and tissue regeneration abilities, it is meaningful and necessary to develop 3D nanobiomaterials with multifunctions. In this review, we systematically review the research progress of nanobiomaterials with varied dimensional structures including 0D, 1D, 2D and 3D, as well as evolutional functions from single tumor therapy to simultaneous tumor therapy and tissue regeneration. This review may pave the way for developing an interdisciplinary research of nanobiomaterials in combination of tumor therapy and regenerative medicine.
纳米生物材料在生物医学领域引起了极大的关注。特别是在过去的几年中,由于其光触发的肿瘤治疗效果和药物装载能力,大量的低维纳米生物材料,包括 0D 纳米结构、1D 纳米管和 2D 纳米片,被用于肿瘤治疗。然而,这些低维纳米生物材料不能支持细胞黏附,并且组织再生能力较差,因此不适合应用于再生医学。三维(3D)纳米纤维支架由于其类似的细胞外基质结构,在组织再生方面引起了广泛的关注,包括骨、皮肤、神经和心脏组织。此外,许多 3D 支架显示出具有骨和软骨再生能力。因此,为了获得具有肿瘤治疗和组织再生能力的材料,开发具有多功能的 3D 纳米生物材料具有重要意义和必要性。在这篇综述中,我们系统地综述了具有不同维度结构的纳米生物材料的研究进展,包括 0D、1D、2D 和 3D,以及从单一的肿瘤治疗到同时的肿瘤治疗和组织再生的进化功能。这篇综述可能为肿瘤治疗和再生医学相结合的纳米生物材料跨学科研究铺平道路。