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首页> 外文期刊>International Journal of Nanomedicine >Nematicidal activity of silver nanoparticles from the fungus Duddingtonia flagrans
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Nematicidal activity of silver nanoparticles from the fungus Duddingtonia flagrans

机译:真菌Duddingtonia flagrans的银纳米颗粒的杀线虫活性

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Background: Helminth parasites cause morbidity and mortality in both humans and animals. Most anthelmintic drugs used in the treatment of parasitic nematode infections act on target proteins or regulate the electrical activity of neurons and muscles. In this way, it can lead to paralysis, starvation, immune attack, and expulsion of the worm. However, current anthelmintics have some limitations that include a limited spectrum of activity across species and the threat of drug resistance, which highlights the need for new drugs for human and veterinary medicine. Purpose: Present study has been conducted to determine the anthelmintic activity of silver nanoparticles (AgNPs) synthesized from the extract of nematophagous fungus, Duddingtonia flagrans , on the infecting larvae of Ancylostoma caninum (Lsub3/sub). Methods: The nanoparticles were characterized by visual, ultraviolet, Fourier-transform infrared spectroscopy, transmission electron microscopy (TEM) analysis, and X-ray diffraction. The in vitro study was based on experiments to inhibit the motility of infective larvae (L3), and the ultrastructural analysis of the nematode was performed by images obtained by TEM. Results: The XRD studies revealed the crystalline nature of the nanoparticles, and FTIR results implied that AgNPs were successfully synthesized and capped with compounds present in the extract. The results showed that the green synthesis of AgNPs exhibited nematicidal activity, being the only ones capable of penetrating the cuticle of the larvae, causing changes in the tegmentum, and consequently, the death of the nematode. Conclusion: The extract of the fungus D. flagrans is able to synthesize AgNP and these have a nematicidal action.
机译:背景:蠕虫寄生虫会导致人类和动物的发病和死亡。大多数用于治疗寄生线虫感染的驱虫药均作用于靶蛋白或调节神经元和肌肉的电活动。这样,它可能导致麻痹,饥饿,免疫攻击和驱逐蠕虫。但是,目前的驱虫药存在一些局限性,包括跨物种的活动范围有限以及对药物耐药性的威胁,这凸显了对人类和兽医学新药的需求。目的:目前的研究已经确定由线虫真菌杜氏鞭毛藻提取物合成的银纳米颗粒(AgNPs)对犬小棒状Anthylostoma caninum(L 3 )感染幼虫的驱虫活性。方法:通过目测,紫外,傅里叶变换红外光谱,透射电子显微镜(TEM)分析和X射线衍射对纳米粒子进行表征。体外研究基于抑制感染性幼虫(L3)活力的实验,而线虫的超微结构分析是通过TEM获得的图像进行的。结果:XRD研究揭示了纳米颗粒的晶体性质,FTIR结果表明成功合成了AgNPs并用提取物中存在的化合物进行了封端。结果表明,绿色合成的AgNPs表现出杀线虫活性,是唯一能够穿透幼虫表皮,引起被膜改变并因此导致线虫死亡的杀线虫活性。结论:鞭毛真菌D.flagrans的提取物能够合成AgNP,并且具有杀线虫作用。

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