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用于生物应用的表面功能化纳米颗粒的独特性质:功能化机制及其在应用中的重要性。

Unique Properties of Surface-Functionalized Nanoparticles for Bio-Application: Functionalization Mechanisms and Importance in Application.

作者信息

Ahmad Faheem, Salem-Bekhit Mounir M, Khan Faryad, Alshehri Sultan, Khan Amir, Ghoneim Mohammed M, Wu Hui-Fen, Taha Ehab I, Elbagory Ibrahim

机构信息

Department of Botany, Aligarh Muslim University, Aligarh 202002, India.

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Nanomaterials (Basel). 2022 Apr 13;12(8):1333. doi: 10.3390/nano12081333.

Abstract

This review tries to summarize the purpose of steadily developing surface-functionalized nanoparticles for various bio-applications and represents a fascinating and rapidly growing field of research. Due to their unique properties-such as novel optical, biodegradable, low-toxicity, biocompatibility, size, and highly catalytic features-these materials are considered superior, and it is thus vital to study these systems in a realistic and meaningful way. However, rapid aggregation, oxidation, and other problems are encountered with functionalized nanoparticles, inhibiting their subsequent utilization. Adequate surface modification of nanoparticles with organic and inorganic compounds results in improved physicochemical properties which can overcome these barriers. This review investigates and discusses the iron oxide nanoparticles, gold nanoparticles, platinum nanoparticles, silver nanoparticles, and silica-coated nanoparticles and how their unique properties after fabrication allow for their potential use in a wide range of bio-applications such as nano-based imaging, gene delivery, drug loading, and immunoassays. The different groups of nanoparticles and the advantages of surface functionalization and their applications are highlighted here. In recent years, surface-functionalized nanoparticles have become important materials for a broad range of bio-applications.

摘要

本综述试图总结稳步开发用于各种生物应用的表面功能化纳米粒子的目的,这代表了一个引人入胜且发展迅速的研究领域。由于其独特的性质,如新颖的光学性质、可生物降解性、低毒性、生物相容性、尺寸以及高催化特性,这些材料被认为具有优越性,因此以现实且有意义的方式研究这些体系至关重要。然而,功能化纳米粒子会遇到快速聚集、氧化及其他问题,这限制了它们的后续应用。用有机和无机化合物对纳米粒子进行充分的表面改性可改善其物理化学性质,从而克服这些障碍。本综述研究并讨论了氧化铁纳米粒子、金纳米粒子、铂纳米粒子、银纳米粒子和二氧化硅包覆纳米粒子,以及它们制备后的独特性质如何使其有可能应用于广泛的生物应用,如基于纳米的成像、基因传递、药物负载和免疫测定。本文重点介绍了不同类型的纳米粒子、表面功能化的优势及其应用。近年来,表面功能化纳米粒子已成为广泛生物应用中的重要材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f7a/9031869/321d0e6d5241/nanomaterials-12-01333-g001.jpg

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