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聚甲基丙烯酸乙二醇酯与绿色合成的银纳米粒子的杂交及其在生物医学中的应用。

Hybridization of green synthesized silver nanoparticles with poly(ethylene glycol) methacrylate and their biomedical applications.

机构信息

Chemistry Department, Abdul Wali Khan University Mardan, Mardan, Pakistan.

Botany Department, Abdul Wali Khan University Mardan, Mardan, Pakistan.

出版信息

PeerJ. 2022 Jan 17;10:e12540. doi: 10.7717/peerj.12540. eCollection 2022.

Abstract

In the present research, a rapid, simple and efficient green method is used for the incorporation of silver nanoparticles (AgNPs) into poly(ethylene glycol) methacrylate (PEGMA) to create biocatalysts with excellent properties for pharmaceutical purpose. In the first phase, capped AgNPs (Ca-AgNPs) were prepared using green synthetic approach and in the second phase capped AgNPs were hybridized with poly(ethylene glycol) methacrylate to form PEGMA-AgNPs. Both the virgin (naked or uncapped) and polymer-capped materials were characterized spectroscopically and their results were compared. Fourier transform infrared spectroscopy showed no new peak after the capping procedure, showing that only physical interactions takes place during capping. After PEGMA capping, the spectra of the AgNPs red shifted (from 450 nm to 520 nm) and the overall particle size of AgNPs increased. Catalytic activity of the nanoparticles and hybrid system were tested by choosing the catalytic reduction of 4-nitrophenol (4-NP) as a model reaction. Both synthesized NPs and polymer capped NPs exhibits catalytic activity for the reduction of 4-NP to 4-aminophenol. The polymer hybrid exhibits remarkable antiproliferative, antioxidant, cytotoxic, antidiabetic and antileishmanial activities.

摘要

在本研究中,采用了一种快速、简单、高效的绿色方法,将银纳米粒子 (AgNPs) 掺入聚乙二醇甲基丙烯酸酯 (PEGMA) 中,以创造具有出色药物性能的生物催化剂。在第一阶段,使用绿色合成方法制备了被壳层覆盖的银纳米粒子 (Ca-AgNPs),在第二阶段,将被壳层覆盖的银纳米粒子与聚乙二醇甲基丙烯酸酯进行杂交,形成 PEGMA-AgNPs。对原始(裸露或未被壳层覆盖的)和聚合物覆盖的材料进行了光谱学特征分析,并对其结果进行了比较。傅里叶变换红外光谱显示,在壳层覆盖过程后没有出现新的峰,表明仅发生物理相互作用。在 PEGMA 覆盖后,AgNPs 的光谱发生红移(从 450nm 到 520nm),并且 AgNPs 的整体粒径增大。通过选择催化还原 4-硝基苯酚(4-NP)作为模型反应来测试纳米粒子和混合体系的催化活性。合成的纳米粒子和聚合物覆盖的纳米粒子都表现出对 4-NP 还原为 4-氨基酚的催化活性。聚合物杂交体表现出显著的抗增殖、抗氧化、细胞毒性、抗糖尿病和抗利什曼原虫活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf4/8772450/ba1c66d34434/peerj-10-12540-g001.jpg

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