Facile Synthesis of PVP-Coated Silver Nanoparticles and Evaluation of Their Physicochemical, Antimicrobial and Toxic Activity

IF 2.5 Q3 CHEMISTRY, PHYSICAL
Francisco N. Souza Neto, Leonardo A. Morais, Luiz F. Gorup, Lucas S. Ribeiro, Tassia J. Martins, Thayse Y. Hosida, Patricia Francatto, Debora B. Barbosa, Emerson R. Camargo, Alberto C. B. Delbem
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Abstract

This study focuses on the synthesis of silver nanoparticles (AgNPs) at different high concentrations and investigates their physicochemical properties, antimicrobial activity, and cytotoxicity. AgNPs were synthesized using the alcohol reduction process, involving the reduction of AgNO3 and its subsequent stabilization via PVP at 80 °C for 4 h. The AgNO3/PVP molar ratio and the average molecular weight were modified in this study. Characterization analyses revealed that the synthesized AgNPs exhibited characteristic surface plasmon resonance absorption peaks at approximately 415 nm, as observed in the UV–Vis spectrum. The results presented in X-ray diffractograms confirmed the face-centered cubic structure of metallic Ag in the nanoparticles. The nanoparticles demonstrated uniform size and shape, with controllable dimensions ranging from 3 to 800 nm. Regarding antimicrobial activity, the MIC solutions exhibited higher potency against the planktonic cells of Candida albicans. The determination of inhibition halos indicated that the silver nanoparticles had an impact on the microorganisms Streptococcus mutans, Candida albicans, and Actinomyces israelii. Furthermore, lower-concentration compositions showed reduced cytotoxic effects compared to higher-concentration particles. Based on the findings, it was concluded that the AgNO3/PVP molar ratio plays a crucial role in the production of AgNPs. These synthesized nanoparticles exhibit desirable physicochemical properties and demonstrate potential antimicrobial activity and controlled cytotoxicity.
pvp包覆银纳米粒子的快速合成及其理化、抗菌和毒性活性的评价
本研究主要研究了不同高浓度银纳米颗粒(AgNPs)的合成,并对其理化性质、抗菌活性和细胞毒性进行了研究。采用醇还原法合成AgNPs,首先将AgNO3还原,然后通过PVP在80℃下稳定4 h。本研究对AgNO3/PVP的摩尔比和平均分子量进行了修改。表征分析表明,合成的AgNPs在紫外-可见光谱中表现出约415 nm的特征表面等离子体共振吸收峰。x射线衍射结果证实了纳米颗粒中金属银的面心立方结构。纳米颗粒的尺寸和形状均匀,尺寸在3 ~ 800 nm范围内可控。在抗菌活性方面,MIC溶液对白色念珠菌浮游细胞表现出更高的效力。抑制光晕的测定表明,银纳米颗粒对变形链球菌、白色念珠菌和以色列放线菌有一定的抑制作用。此外,与高浓度颗粒相比,低浓度的成分显示出更低的细胞毒性作用。综上所述,AgNO3/PVP的摩尔比对AgNPs的生成起着至关重要的作用。这些合成的纳米颗粒表现出理想的物理化学性质,并显示出潜在的抗菌活性和可控的细胞毒性。
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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