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首页> 外文期刊>Scientific reports. >Designing Ecofriendly Bionanocomposite Assembly with Improved Antimicrobial and Potent on-site Zika Virus Vector Larvicidal Activities with its Mode of Action
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Designing Ecofriendly Bionanocomposite Assembly with Improved Antimicrobial and Potent on-site Zika Virus Vector Larvicidal Activities with its Mode of Action

机译:设计具有改善的抗菌和有效现场Zika病毒载体杀幼虫活性及其作用方式的环保型Bionanocomposite组件

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摘要

Dialyzed natural polymer, fibroin, from Bombyx mori was used to synthesize biocompatible silver and gold nanoparticles in-situ in dispersion form. The films of pure fibroin (PF), fibroin-silver nanocomposite (FSNC) and fibroin-gold nanocomposite (FGNC) were fabricated by drop casting method. The characterization of the resultant dispersion and films was performed by visual color change, UV-Vis spectroscopy and atomic force microscopy. The dispersions of PF, FSNC and FGNC were tested for antibacterial activity against E. coli NCIM 2065, S. aureus NCIM 5021, K. pneumoniae NCIM 2957, P. aeruginosa ATCC 9027 and antifungal activity against A. fumigatus NCIM 902. FSNC dispersion exhibited an effective antimicrobial action against all the tested microbes as compared to FGNC dispersion. The mechanism of action for FSNC and FGNC against these microorganisms is proposed. Additionally, the larvicidal activity of the films was investigated against the larvae of Aedes aegypti. The films of FSNC exhibited 100% mortality while the films of FGNC revealed 86–98% mortality against all the larval instars and pupae of A. aegypti. The phytotoxicity study of the nanocomposite films was also carried out to confirm the reusability of water. This is first noble metal nanocomposite based report on larvicidal activity of zika virus vector.
机译:来自家蚕的透析天然聚合物丝蛋白被用于以分散体形式原位合成生物相容性银和金纳米颗粒。采用滴铸法制备了纯丝蛋白(PF),丝蛋白-银纳米复合材料(FSNC)和丝蛋白-金纳米复合材料(FGNC)的薄膜。所得的分散体和膜的表征通过视觉颜色变化,UV-Vis光谱和原子力显微镜进行。测试了PF,FSNC和FGNC分散体对大肠杆菌NCIM 2065,金黄色葡萄球菌NCIM 5021,肺炎克雷伯氏菌NCIM 2957,铜绿假单胞菌ATCC 9027的抗菌活性以及对烟曲霉NCIM 902的抗真菌活性。与FGNC分散液相比,对所有测试微生物均具有有效的抗菌作用。提出了FSNC和FGNC对这些微生物的作用机理。另外,研究了膜对埃及伊蚊幼虫的杀幼虫活性。 FSNC的膜表现出100%的死亡率,而FGNC的膜表现出针对埃及伊蚊所有幼虫和p的86-98%的死亡率。还进行了纳米复合膜的植物毒性研究,以确认水的可重复使用性。这是关于寨卡病毒载体杀幼虫活性的第一份基于贵金属纳米复合材料的报告。

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