Hu Tingting, Mei Xuan, Wang Yingjie, Weng Xisheng, Liang Ruizheng, Wei Min
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Department of Orthopaedics, Peking Union Medical College Hospital, Peking Union Medical College & Chinese Academy of Medical Sciences, Beijing 100730, China.
Sci Bull (Beijing). 2019 Nov 30;64(22):1707-1727. doi: 10.1016/j.scib.2019.09.021. Epub 2019 Sep 20.
Due to their high anisotropy and chemical functions, two-dimensional (2D) nanomaterials have attracted increasing interest and attention from various scientific fields, including functional electronics, catalysis, supercapacitors, batteries and energy materials. In the biomedical field, 2D nanomaterials have made significant contributions to the field of nanomedicine, especially in drug/gene delivery systems, multimodal imaging, biosensing, antimicrobial agents and tissue engineering. 2D nanomaterials such as graphene/graphene oxide (GO)/reduced graphene oxide (rGO), silicate clays, layered double hydroxides (LDHs), transition metal dichalcogenides (TMDs), transition metal oxides (TMOs), black phosphorus (BP), graphitic carbon nitride (g-CN), hexagonal boron nitride (h-BN), antimonene (AM), boron nanosheets (B NSs) and tin telluride nanosheets (SnTe NSs) possess excellent physical, chemical, optical and biological properties due to their uniform shapes, high surface-to-volume ratios and surface charge. In this review, we first introduce the properties, structures and synthetic strategies of different configurations of 2D nanomaterials. Recent advances and paradigms of 2D nanomaterials in a variety of biomedical applications, ranging from drug delivery, cancer treatment, bioimaging and tissue engineering to biosensing are discussed afterwards. In the final part, we foresee the development prospects and challenges of 2D nanomaterials after summarizing the research status of ultrathin 2D nanomaterials.
由于其高各向异性和化学功能,二维(2D)纳米材料已引起包括功能电子学、催化、超级电容器、电池和能源材料在内的各个科学领域越来越多的兴趣和关注。在生物医学领域,二维纳米材料对纳米医学领域做出了重大贡献,特别是在药物/基因递送系统、多模态成像、生物传感、抗菌剂和组织工程方面。二维纳米材料,如石墨烯/氧化石墨烯(GO)/还原氧化石墨烯(rGO)、硅酸盐粘土、层状双氢氧化物(LDHs)、过渡金属二硫属化物(TMDs)、过渡金属氧化物(TMOs)、黑磷(BP)、石墨相氮化碳(g-CN)、六方氮化硼(h-BN)、锑烯(AM)、硼纳米片(B NSs)和碲化锡纳米片(SnTe NSs),由于其形状均匀、高表面积与体积比和表面电荷而具有优异的物理、化学、光学和生物学性质。在本综述中,我们首先介绍不同构型二维纳米材料的性质、结构和合成策略。随后讨论二维纳米材料在从药物递送、癌症治疗、生物成像和组织工程到生物传感等各种生物医学应用中的最新进展和范例。在最后一部分,我们在总结超薄二维纳米材料的研究现状后,展望二维纳米材料的发展前景和挑战。