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Anthelmintic activity of silver-extract nanoparticles synthesized from the combination of silver nanoparticles and M. charantia fruit extract

机译:银纳米颗粒与苦瓜果实提取物联合合成的银提取纳米颗粒的驱虫活性

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Background Present study has been conducted to know the anthelmintic activity of polyaniline coated silver nanoparticles (AgNPs) synthesized from Momordica charantia fruit extract. Methods By reduction of AgNO3 in presence of NaBH4, silver nanoparticles were prepared. After mixing silver nanoparticles and extracts, coating was given on nanoparticles using polyaniline. Prepared nanoparticles were characterized by Visual, UV, FTIR spectroscopy, SEM techniques, and TEM analysis. Results The FTIR results implied that AgNPs were successfully synthesized and capped with bio-compounds present in the extract. The result showed that death times of worm were 35.12?±?0.5 and 59.3?±?0.3 minutes for M. charantia extract and Ag-nanoparticles individually. But when these two combined together, paralysis and death time fall drastically which were only 6.16?±?0.6 and 9.1?±?0.4 minutes respectively. Albendazole tablet was used as standard, which made worms death in 3.66?±?0.1 minutes. Conclusion Ag-Extract NPs showed strong anthelmintic activity against worm. This study has paved the way for further research to design new anthelmintic drug from the combination of M. charantia and AgNPs.
机译:背景技术进行了本研究以了解从苦瓜果实提取物合成的聚苯胺包覆的银纳米颗粒(AgNPs)的驱虫活性。方法通过在NaBH 4 存在下还原AgNO 3 制备银纳米粒子。将银纳米颗粒和提取物混合后,使用聚苯胺在纳米颗粒上进行涂层。通过视觉,紫外线,FTIR光谱,SEM技术和TEM分析对制备的纳米颗粒进行表征。结果FTIR结果表明,AgNPs已成功合成并用提取物中存在的生物化合物进行了封端。结果表明,M。charantia提取物和Ag-纳米粒子的蠕虫死亡时间分别为35.12±0.5分钟和59.3±0.3分钟。但是当两者结合在一起时,瘫痪和死亡时间急剧下降,分别仅为6.16?±?0.6和9.1?±?0.4分钟。以阿苯达唑片为标准,使蠕虫在3.66±0.1分钟内死亡。结论Ag-Extract NPs对蠕虫具有较强的驱虫活性。这项研究为进一步利用炭疽莫拉氏菌和AgNPs组合设计驱虫药铺平了道路。

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