Green synthesis of Silver nanoparticles through Calotropis gigantea leaf extracts and evaluation of antibacterial activity against Vibrio alginolyticus

Vaseeharan Baskaralingam, C. G. Sargunar, Yong-Chin Lin, Jiann-Chu Chen
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引用次数: 59

Abstract

Green synthesized silver nanoparticles by Calotropis gigantea leaf extract were used to study the inhibitory activity against pathogenic Vibrio alginolyticus, isolated from wild Artemia franciscana cysts. Silver nanoparticle synthesis was observed using UV-visible spectroscopy and the morphological characteristics were analyzed by atomic force microscope (AFM). In the present study, increasing concentrations of silver nanoparticles synthesized on LB agar plates effectively reduced the number of colonies of V. alginolyticus. A decrease in colonies (CFUs) was observed at 5 mg/mL of silver nanoparticle concentration and the complete inhibition of V. alginolyticus was observed at 20 mg/mL of silver nanoparticle concentration on LB agar plates. In vivo controlling efficiency of silver nanoparticles was tested in an A. franciscana hatching system. Effective control of V. alginolyticus in brine shrimp A. franciscana hatching units was achieved by experimental infection and treatment with silver nanoparticles. Experimental infection studies showed that V. alginolyticus infected Artemia nauplii treated with silver nanoparticles (10 mg/mL) had greater survival (>40%) than silver nanoparticles not treated with nauplii. Based on the findings of this study, it is recommended that low concentrations of green synthesized silver nanoparticles should be further investigated for other potential experimental models to control potential medical pathogens.
巨角茶叶提取物绿色合成纳米银及其对溶藻弧菌的抑菌活性评价
以巨角茶叶提取物为原料合成绿色纳米银,研究其对野生青蒿囊中致病性溶藻弧菌的抑菌活性。采用紫外可见光谱法观察银纳米颗粒的合成过程,并用原子力显微镜(AFM)分析其形貌特征。在本研究中,增加LB琼脂板上合成的银纳米颗粒浓度可以有效减少溶藻弧菌的菌落数量。在LB琼脂板上,纳米银浓度为5 mg/mL时,菌落(CFUs)减少,纳米银浓度为20 mg/mL时,对溶藻弧菌有完全抑制作用。研究了银纳米颗粒在金银花孵化系统中的体内控制效果。通过实验感染和纳米银纳米粒子处理,有效控制了franciscana卤虾孵化单元的溶藻弧菌。实验感染研究表明,纳米银颗粒(10 mg/mL)处理后的溶藻弧菌(V. alginolyticus)感染鹦鹉耳蒿(Artemia nauplii)的存活率高于未处理的纳米银颗粒(>40%)。基于本研究结果,建议进一步研究低浓度绿色合成银纳米颗粒,用于其他潜在的实验模型,以控制潜在的医学病原体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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