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手性无机纳米材料在生物中的应用。

Chiral inorganic nanomaterials for biological applications.

机构信息

International Joint Research Center for Photo-responsive Molecules and Materials, School of Chemical and Material Engineering, Jiangnan University, Wuxi, Jiangsu, 214122, People's Republic of China.

State Key Lab of Food Science and Technology, International Joint Research Laboratory for Biointerface and Biodetection, School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, 214122, People's Republic of China.

出版信息

Nanoscale. 2023 Feb 9;15(6):2541-2552. doi: 10.1039/d2nr05689e.

Abstract

Chiral nanomaterials in biology play indispensable roles in maintaining numerous physiological processes, such as signaling, site-specific catalysis, transport, protection, and synthesis. Like natural chiral nanomaterials, chiral inorganic nanomaterials can also be established with similar size, charge, surface properties, and morphology. However, chiral inorganic nanomaterials usually exhibit extraordinary properties that are different from those of organic materials, such as high -factor values, broad distribution range, and symmetrical mirror configurations. Because of these unique characteristics, there is great potential for application in the fields of biosensing, drug delivery, early diagnosis, bio-imaging, and disease therapy. Related research is summarized and discussed in this review to showcase the bio-functions and bio-applications of chiral inorganic nanomaterials, including the construction methods, classification and properties, and biological applications of chiral inorganic nanomaterials. Moreover, the deficiencies in existing studies are noted, and future development is prospected. This review will provide helpful guidance for constructing chiral inorganic nanomaterials with specific bio-functions for problem solving in living systems.

摘要

手性纳米材料在生物学中发挥着不可缺少的作用,例如信号转导、特异性催化、运输、保护和合成等。与天然手性纳米材料一样,手性无机纳米材料也可以通过类似的尺寸、电荷、表面性质和形态来构建。然而,手性无机纳米材料通常表现出与有机材料不同的非凡性质,例如高因子值、广泛的分布范围和对称的镜像结构。由于这些独特的特性,在手敏传感、药物输送、早期诊断、生物成像和疾病治疗等领域具有巨大的应用潜力。本综述总结和讨论了相关研究,展示了手性无机纳米材料的生物功能和生物应用,包括手性无机纳米材料的构建方法、分类和性质以及生物应用。此外,还指出了现有研究的不足之处,并对未来的发展进行了展望。本综述将为构建具有特定生物功能的手性无机纳米材料提供有益的指导,以解决生物体系中的问题。

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