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有机-无机杂化纳米花:已知的、未知的和未来的。

Organic-inorganic hybrid nanoflowers: The known, the unknown, and the future.

机构信息

Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tehran University of Medical Sciences, P.O. Box 14155-6451, Tehran 1417614411, Iran; Department of Drug and Food Control, Faculty of Pharmacy, Tehran University of Medical Sciences, P.O. Box 14155-6451, Tehran 1417614411, Iran.

Department of Pharmaceutical Biotechnology, Faculty of Pharmacy, Tehran University of Medical Sciences, P.O. Box 14155-6451, Tehran 1417614411, Iran.

出版信息

Adv Colloid Interface Sci. 2022 Nov;309:102780. doi: 10.1016/j.cis.2022.102780. Epub 2022 Sep 24.

Abstract

Organic-inorganic hybrid nanoflowers (HNFs) are hierarchical flower-shaped microstructures that are assembled by nanoscale petal-like nanosheets composed of both organic and inorganic constituents. Generally, inorganic parts of HNFs are transition metal phosphates and organic components are mostly enzymes and proteins; however, non-protein molecules could be also used as organic phase in some types of newly described HNFs. Recent findings indicate that they are constructed through the coordination between organic and inorganic components. HNFs are mainly used for efficient biocatalysis and highly sensitive biosensing, while they have also some other noteworthy applications such as antimicrobial agents, antigen careers, and delivery platforms for anticancer drugs. It is believed that the high surface-to-volume ratio of HNFs could tackle mass transfer limitations leading to enhance the activity of their organic constituents. The environment-friendly route of synthesis and stabilization of biomolecules upon storage are the advantages of enzyme-based HNFs. In the present review, the focuses are on designs, preparations, formation mechanisms, and remarkable applications of the conventional forms and also magnetic, multi-component, and enzyme-free HNFs. Considering the fact that HNFs are in the early stages of development, the unknown aspects and future directions of research in this field are also discussed.

摘要

有机-无机杂化纳米花(HNFs)是由纳米级花瓣状纳米片组装而成的具有层次结构的花状微结构,这些纳米片由有机和无机成分组成。通常,HNFs 的无机部分是过渡金属磷酸盐,而有机成分主要是酶和蛋白质;然而,在某些新描述的 HNFs 类型中,也可以使用非蛋白质分子作为有机相。最近的研究结果表明,它们是通过有机和无机成分之间的配位作用构建的。HNFs 主要用于高效生物催化和高灵敏度生物传感,同时它们还有一些其他值得注意的应用,如抗菌剂、抗原载体和抗癌药物的递送平台。人们认为,HNFs 的高表面积与体积比可以解决传质限制,从而提高其有机成分的活性。基于酶的 HNFs 的优点是其合成和储存过程中生物分子的环境友好型路线。在本综述中,重点介绍了传统形式以及磁性、多组分和无酶 HNFs 的设计、制备、形成机制和显著应用。考虑到 HNFs 仍处于发展的早期阶段,本文还讨论了该领域未知的方面和未来的研究方向。

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