Corciovă Andreia, Mircea Cornelia, Fifere Adrian, Turin-Moleavin Ioana-Andreea, Roşca Irina, Macovei Irina, Ivănescu Bianca, Vlase Ana-Maria, Hăncianu Monica, Burlec Ana Flavia
Faculty of Pharmacy, "Grigore T. Popa" University of Medicine and Pharmacy, 16 University Street, 700115 Iasi, Romania.
Centre of Advanced Research in Bionanoconjugates and Biopolymers Department, "Petru Poni" Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, 700487 Iasi, Romania.
Life (Basel). 2024 Sep 23;14(9):1211. doi: 10.3390/life14091211.
In the present study, two berry extracts were used for the synthesis of silver nanoparticles (AgNPs). After the optimization of synthesis, the AgNPs were characterized using UV-Vis, FTIR, EDX, DLS, and STEM analyses. The stability in different media, phytotoxicity, as well as antimicrobial and antioxidant activities were also evaluated. The ideal synthesis conditions were represented by a 3 mM AgNO concentration, 1:9 extract:AgNO volume ratio, alkaline medium, and stirring at 40 °C for 120 min. The synthesis was confirmed by the surface plasmon resonance (SPR) peak at 403 nm, and the strong signal at 3 keV from the EDX spectra. FTIR analysis indicated that polyphenols, polysaccharides, and amino acids could be the compounds responsible for synthesis. Stability tests and the negative zeta potential values showed that phytocompounds also play a role in the stabilization and capping of AgNPs. The preliminary phytotoxicity studies on showed that both the extracts and their corresponding AgNPs had an impact on the growth of roots and shoots as well as on the microscopic structure of leaves. The synthesized AgNPs presented antimicrobial activity against , , and . Moreover, considering the results obtained in the lipoxygenase inhibition, the DPPH and hydroxyl scavenging activities, and the ferrous ion chelating assay, AgNPs exhibit promising antioxidant activity.
在本研究中,使用了两种浆果提取物来合成银纳米颗粒(AgNPs)。在优化合成条件后,通过紫外可见光谱(UV-Vis)、傅里叶变换红外光谱(FTIR)、能量色散X射线光谱(EDX)、动态光散射(DLS)和扫描透射电子显微镜(STEM)分析对AgNPs进行了表征。还评估了其在不同介质中的稳定性、植物毒性以及抗菌和抗氧化活性。理想的合成条件为硝酸银(AgNO₃)浓度3 mM、提取物与AgNO₃体积比1:9、碱性介质以及在40℃搅拌120分钟。通过403 nm处的表面等离子体共振(SPR)峰以及EDX光谱中3 keV处的强信号证实了合成。FTIR分析表明,多酚、多糖和氨基酸可能是负责合成的化合物。稳定性测试和负的zeta电位值表明,植物化合物在AgNPs的稳定和封端中也起作用。对[植物名称未给出]的初步植物毒性研究表明,提取物及其相应的AgNPs对根和芽的生长以及叶片的微观结构都有影响。合成的AgNPs对[具体微生物未给出]、[具体微生物未给出]和[具体微生物未给出]具有抗菌活性。此外,考虑到在脂氧合酶抑制、DPPH和羟基自由基清除活性以及亚铁离子螯合测定中获得的结果,AgNPs表现出有前景的抗氧化活性。