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用于潜在抗氧化和抗菌活性的组氨酸和苯丙氨酸功能化银纳米颗粒的生物合成

Biosynthesis of Silver Nanoparticles Functionalized with Histidine and Phenylalanine Amino Acids for Potential Antioxidant and Antibacterial Activities.

作者信息

Shumi Gemechu, Demissie Taye B, Eswaramoorthy Rajalakshmanan, Bogale Raji Feyisa, Kenasa Girmaye, Desalegn Tegene

机构信息

Department of Applied Chemistry, School of Natural Science, Adama Science and Technology University, Adama 1888, Ethiopia.

Department of Chemistry, University of Botswana, P/bag UB 00704, Gaborone, Botswana.

出版信息

ACS Omega. 2023 Jun 26;8(27):24371-24386. doi: 10.1021/acsomega.3c01910. eCollection 2023 Jul 11.

Abstract

Due to biochemically active secondary metabolites that assist in the reduction, stabilization, and capping of nanoparticles, plant-mediated nanoparticle synthesis is becoming more and more popular. This is because it allows for ecologically friendly, feasible, sustainable, and cost-effective green synthesis techniques. This study describes the biosynthesis of silver nanoparticles (AgNPs) functionalized with histidine and phenylalanine using the (locally called koseret) plant leaf extract. The functionalization with amino acids was meant to enhance the biological activities of the AgNPs. The synthesized nanoparticles were characterized using UV-Visible absorption (UV-Vis), powder X-ray diffraction (pXRD), scanning electron microscopy (SEM), energy-dispersive X-ray (EDX) spectroscopy, transmission electron microscopy (TEM), and Fourier transform infrared (FTIR) spectroscopy. The surface plasmonic resonance (SPR) peak at about 433 nm confirmed the biosynthesis of the AgNPs. FTIR spectra also revealed that the phytochemicals in the plant extract were responsible for the capping of the biogenically synthesized AgNPs. On the other hand, the TEM micrograph revealed that the morphology of AgNP-His had diameters ranging from 5 to 14 nm. The antibacterial activities of the synthesized nanoparticles against Gram-positive and Gram-negative bacteria showed a growth inhibition of 8.67 ± 1.25 and 11.00 ± 0.82 mm against and , respectively, at a concentration of 62.5 μg/mL AgNP-His. Moreover, the nanoparticle has an antioxidant activity potential of 63.76 ± 1.25% at 250 μg/mL. The results showed that the green-synthesized AgNPs possess promising antioxidant and antibacterial activities with the potential for biological applications.

摘要

由于生物化学活性次生代谢产物有助于纳米颗粒的还原、稳定和封端,植物介导的纳米颗粒合成正变得越来越流行。这是因为它允许采用生态友好、可行、可持续且具有成本效益的绿色合成技术。本研究描述了使用(当地称为koseret)植物叶提取物生物合成用组氨酸和苯丙氨酸功能化的银纳米颗粒(AgNPs)。用氨基酸进行功能化旨在增强AgNPs的生物活性。使用紫外可见吸收(UV-Vis)、粉末X射线衍射(pXRD)、扫描电子显微镜(SEM)、能量色散X射线(EDX)光谱、透射电子显微镜(TEM)和傅里叶变换红外(FTIR)光谱对合成的纳米颗粒进行了表征。约433nm处的表面等离子体共振(SPR)峰证实了AgNPs的生物合成。FTIR光谱还显示,植物提取物中的植物化学物质负责对生物合成的AgNPs进行封端。另一方面,TEM显微照片显示,AgNP-His的形态直径范围为5至14nm。合成的纳米颗粒对革兰氏阳性和革兰氏阴性细菌的抗菌活性表明,在浓度为62.5μg/mL的AgNP-His下,对和的生长抑制分别为8.67±1.25和11.00±0.82mm。此外,该纳米颗粒在250μg/mL时具有63.76±1.25%的抗氧化活性潜力。结果表明,绿色合成的AgNPs具有良好的抗氧化和抗菌活性,具有生物应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eda7/10339392/9fce2cf74aee/ao3c01910_0002.jpg

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