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TiO纳米颗粒的有机分子表面修饰及其生物学应用。

Surface modification of TiO nanoparticles with organic molecules and their biological applications.

作者信息

Hajareh Haghighi Farid, Mercurio Martina, Cerra Sara, Salamone Tommaso Alberto, Bianymotlagh Roya, Palocci Cleofe, Romano Spica Vincenzo, Fratoddi Ilaria

机构信息

Department of Chemistry, Sapienza University of Rome, Piazzale Aldo Moro 5, 00185, Rome, Italy.

Research Center for Applied Sciences to the Safeguard of Environment and Cultural Heritage (CIABC), Sapienza University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

J Mater Chem B. 2023 Mar 15;11(11):2334-2366. doi: 10.1039/d2tb02576k.

Abstract

In recent years, titanium(IV) dioxide nanoparticles (TiONPs) have shown promising potential in various biological applications such as antimicrobials, drug delivery, photodynamic therapy, biosensors, and tissue engineering. For employing TiONPs in these fields, their nanosurface must be coated or conjugated with organic and/or inorganic agents. This modification can improve their stability, photochemical properties, biocompatibility, and even surface area for further conjugation with other molecules such as drugs, targeting molecules, polymers, This review describes the organic-based modification of TiONPs and their potential applications in the mentioned biological fields. In the first part of this review, around 75 recent publications (2017-2022) are mentioned on the common TiONP modifiers including organosilanes, polymers, small molecules, and hydrogels, which improve the photochemical features of TiONPs. In the second part of this review, we presented 149 recent papers (2020-2022) about the use of modified TiONPs in biological applications, in which specific bioactive modifiers are introduced in this part with their advantages. In this review, the following information is presented: (1) the common organic modifiers for TiONPs, (2) biologically important modifiers and their benefits, and (3) recent publications on biological studies on the modified TiONPs with their achievements. This review shows the paramount significance of the organic-based modification of TiONPs to enhance their biological effectiveness, paving the way toward the development of advanced TiO-based nanomaterials in nanomedicine.

摘要

近年来,二氧化钛纳米颗粒(TiONPs)在抗菌、药物递送、光动力疗法、生物传感器和组织工程等各种生物应用中显示出了广阔的潜力。为了在这些领域应用TiONPs,其纳米表面必须用有机和/或无机试剂进行包覆或共轭。这种修饰可以提高它们的稳定性、光化学性质、生物相容性,甚至增加表面积以便进一步与其他分子如药物、靶向分子、聚合物进行共轭。本综述描述了基于有机的TiONPs修饰及其在上述生物领域的潜在应用。在本综述的第一部分,提到了约75篇近期(2017 - 2022年)关于常见TiONP修饰剂的出版物,这些修饰剂包括有机硅烷、聚合物、小分子和水凝胶,它们改善了TiONPs的光化学特性。在本综述的第二部分,我们展示了149篇近期(2020 - 2022年)关于修饰后的TiONPs在生物应用中的论文,在这部分介绍了特定的生物活性修饰剂及其优点。在本综述中,呈现了以下信息:(1)TiONPs的常见有机修饰剂,(2)具有生物学重要性的修饰剂及其益处,以及(3)关于修饰后的TiONPs生物学研究的近期出版物及其成果。本综述表明基于有机的TiONPs修饰对于提高其生物学有效性具有至关重要的意义,为纳米医学中先进的TiO基纳米材料的开发铺平了道路。

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