Functionalizing Gold Nanostars with Ninhydrin as Vehicle Molecule for Biomedical Applications

Swati Mishra
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Abstract

In recent years, there has been an explosion in Gold NanoParticle (GNP) research, with a rapid increase in publications in diverse fields, including imaging, bioengineering, and molecular biology. GNPs exhibit unique physicochemical properties, including surface plasmon resonance (SPR) and bind amine and thiol groups, allowing surface modification and use in biomedical applications. Nanoparticle functionalization is the subject of intense research, with rapid progress being made towards developing biocompatible, multi-functional particles. In the present study, the photochemical method has been done to functionalize various-shaped GNPs like nanostars by the molecules like ninhydrin. Ninhydrin is bactericidal, virucidal, fungicidal, antigen-antibody reactive, and used in fingerprint technology in forensics. The GNPs functionalized with ninhydrin efficiently will bind to the amino acids on the target protein, which is of eminent importance during the pandemic, especially where long-term treatments of COVID-19 bring many side effects of the drugs. The photochemical method is adopted as it provides low thermal load, selective reactivity, selective activation, and controlled radiation in time, space, and energy. © 2022, Avestia Publishing. All rights reserved.
以茚三酮为载体分子功能化金纳米星的生物医学应用
近年来,金纳米粒子(GNP)的研究呈爆炸式增长,包括成像、生物工程和分子生物学在内的各个领域的出版物迅速增加。GNPs表现出独特的物理化学性质,包括表面等离子体共振(SPR)和结合胺和巯基,允许表面修饰和生物医学应用。纳米粒子功能化是目前研究的热点,在开发生物相容性、多功能粒子方面进展迅速。本研究采用光化学方法,利用茚三酮等分子功能化了各种形状的GNPs,如纳米星。茚三酮具有杀菌、杀病毒、杀真菌、抗原抗体活性,并用于法医指纹技术。被茚三酮有效功能化的GNPs将与目标蛋白上的氨基酸结合,这在大流行期间尤为重要,特别是在COVID-19的长期治疗带来许多药物副作用的情况下。采用光化学方法,具有低热负荷、选择性反应性、选择性活化、时间、空间、能量可控辐射等特点。©2022,Avestia Publishing。版权所有。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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