贾坎德邦原生植物制备银纳米颗粒的合成及其抗菌机理的深入研究。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Koel Mukherjee, Namrata Bhagat, Madhubala Kumari, Arnab Roy Choudhury, Biplab Sarkar, Barnali Dasgupta Ghosh
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引用次数: 2

摘要

背景:绿色合成Ag-NPs因其生态友好性、经济性、可行性和广泛的应用前景而备受关注。本文选择贾坎德邦的本土植物Polygonum plebeium、Litsea glutinosa和Vangueria spinosus进行Ag-NP的合成和进一步的抗菌活性研究。以硝酸银溶液为前驱体,干燥的叶子提取物作为还原剂和稳定剂,进行了Ag-NPs的绿色合成。结果:肉眼观察到Ag-NP形成并伴有颜色变化,并通过紫外可见分光光度法证实,在400-450nm左右出现吸光度峰。通过DLS、FTIR、FESEM、XRD等手段对样品进行了进一步表征。通过DLS预测合成的Ag-NPs的尺寸约为45-86 nm。合成的Ag-NPs对枯草芽孢杆菌(革兰氏阳性菌)和伤寒沙门菌(革兰氏阴性菌)具有显著的抑菌活性。以枸杞提取物合成的Ag-NPs抗菌活性最好。细菌平板的抑菌带直径在芽孢杆菌为0 ~ 1.8 mm,伤寒沙门菌为0 ~ 2.2 mm。通过蛋白-蛋白相互作用研究Ag-NPs对细菌细胞不同抗氧化酶系统的影响。结论:从平民弧菌中合成的Ag-NPs具有较好的长效稳定性,可能具有较长的抗菌活性。未来,这些Ag-NPs可以应用于抗菌研究、伤口愈合、药物输送、生物传感、肿瘤/癌细胞治疗和探测器(检测太阳能)等各个领域。图示了Ag-NPs的绿色合成、表征、抗菌活性,并在最后进行了硅片研究,分析了抗菌活性的机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insight study on synthesis and antibacterial mechanism of silver nanoparticles prepared from indigenous plant source of Jharkhand.

Insight study on synthesis and antibacterial mechanism of silver nanoparticles prepared from indigenous plant source of Jharkhand.

Insight study on synthesis and antibacterial mechanism of silver nanoparticles prepared from indigenous plant source of Jharkhand.

Insight study on synthesis and antibacterial mechanism of silver nanoparticles prepared from indigenous plant source of Jharkhand.

Background: The Ag-NPs by green synthesis has a notable interest because of their eco-friendliness, economic views, feasibility, and applications in a wide range. Herein, native plants of Jharkhand (Polygonum plebeium, Litsea glutinosa, and Vangueria spinosus) were selected for the current work of Ag-NP synthesis and further antibacterial activity. Green synthesis was performed for Ag-NPs using Silver nitrate solution as precursor and the dried leaf extract performs as a reductant and stabilizer here.

Result: Visually Ag-NP formation was observed along with a colour change and confirmed by UV-visible spectrophotometry on which an absorbance peak occurs at around 400-450nm. Further characterization was done on DLS, FTIR, FESEM, and XRD. Size around 45-86 nm of synthesized Ag-NPs was predicted through DLS. The synthesized Ag-NPs exhibited significant antibacterial activity against Bacillus subtilis (Gram-positive bacteria) and Salmonella typhi (Gram-negative bacteria). The finest antibacterial activity was disclosed by the Ag-NPs synthesized by Polygonum plebeium extract. The diameter of the zone of inhibition in the bacterial plate measured was 0-1.8 mm in Bacillus and 0-2.2 mm in Salmonella typhi. Protein-Protein interaction study was performed to study the effect of Ag-NPs towards different antioxidant enzyme system of bacterial cell.

Conclusion: Present work suggest the Ag-NPs synthesized from P. plebeium were more stable for long term and might have prolonged antibacterial activity. In the future, these Ag-NPs can be applied in various fields like antimicrobial research, wound healing, drug delivery, bio-sensing, tumour/cancer cell treatment, and detector (detect solar energy). Schematic representation of Ag-NPs green synthesis, characterization, antibacterial activity and at the end, in silico study to analyse the mechanism of antibacterial activity.

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