Synthesis of silver nanoparticles from pure and combined extracts of Satureja bachtiarica Bung. and Satureja hortensis L. effective on some microbial strains causing digestive diseases.

IF 4.5 0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Parastoo Alipour Samani, Mansureh Ghavam
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Abstract

The biological method, which is also called green synthesis, is a safe, cheap and environmentally friendly method. The present study was designed for the first time with the aim of synthesizing silver nanoparticles from pure and mixed extracts of Satureja bachtiarica Bung. and Satureja hortensis L. The extraction of plants was done by boiling water and the synthesis of silver nanoparticles was investigated by UV-VIS, XRD, FTIR and FESEM tests. Antibacterial effect of synthesized silver nanoparticles and extracts was evaluated by diffusion method in agar and determination of the minimum inhibitory concentration and bactericidal concentrations (MIC and MBC). The examination of the UV test confirmed the spectrum of 393-422 nm related to surface plasmon resonance absorption. XRD test determined the silver particle size of S. bachtiarica + S. hortensis more than two species S. bachtiarica and S. hortensis and 14.4 nm. FTIR spectroscopy identified OH, CH, C =C, CH3, CH, C-O groups. The results of FESEM showed that the shape of the particles is mostly quasi-cubic or prism-like.. Energy dispersive X-ray spectroscopy (EDX) also showed an absorption peak of silver at 3 keV. The strongest inhibitory activities related to synthetic silver nanoparticles from S. bachtiarica extract against Gram-negative bacteria Escherichia coli (~ 10 mm) and silver nanoparticles synthesized from combined extract of S. bachtiarica + S. hortensis against Gram-negative bacteria Shigella dysenteriae (~ 9 mm), which matched the control antibiotics rifampin. Therefore, it seems that the pure extract of S. bachtiarica or the combination with the extract of S. hortensis is a natural potential for the synthesis of silver nanoparticles with significant antibacterial activity, which can be a possible substitute for antibiotics against some strains. However, much research needs to be done in the future to confirm this for clinical applications.

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银纳米粒子的合成与纯化。对一些引起消化系统疾病的微生物菌株有效。
生物法,又称绿色合成,是一种安全、廉价、环保的方法。本研究首次设计了以纯种和混合提取物为原料合成银纳米粒子的方法。采用沸水法提取植物,并采用UV-VIS、XRD、FTIR和FESEM等测试手段对银纳米颗粒的合成进行了研究。采用琼脂扩散法测定合成银纳米粒子及其提取物的抑菌效果,并测定其最低抑菌浓度(MIC)和杀菌浓度(MBC)。紫外测试证实了393-422 nm的光谱与表面等离子体共振吸收有关。XRD测试测定了S. bachtiarica + S的银粒度。花楸属两种以上,分别为bachtiarica和S. hortensa,共14.4 nm。FTIR光谱鉴定出OH、CH、C =C、CH3、CH、C- o基团。FESEM结果表明,颗粒的形状多为准立方或棱柱状。能量色散x射线光谱(EDX)也显示了银在3 keV处的吸收峰。对革兰氏阴性大肠杆菌(~ 10 mm)的抑菌活性最强的是杆菌胞杆菌提取物合成的银纳米粒子和杆菌胞杆菌+ S联合提取物合成的银纳米粒子。对革兰氏阴性志贺氏痢疾菌(~ 9 mm)的抑制作用与对照抗生素利福平相匹配。由此看来,单纯的巴氏杆菌提取物或与霍氏杆菌提取物的组合具有天然的合成银纳米粒子的潜力,具有显著的抗菌活性,可能成为某些菌株的抗生素替代品。然而,未来还需要做大量的研究来证实这一临床应用。
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