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首页> 外文期刊>Journal of cluster science >Facile Biosynthesis of Tellurium Dioxide Nanoparticles by Streptomyces cyaneus Melanin Pigment and Gamma Radiation for Repressing Some Aspergillus Pathogens and Bacterial Wound Cultures
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Facile Biosynthesis of Tellurium Dioxide Nanoparticles by Streptomyces cyaneus Melanin Pigment and Gamma Radiation for Repressing Some Aspergillus Pathogens and Bacterial Wound Cultures

机译:用链霉菌囊霉素色素和γ辐射进行二氧化碲纳米粒子的碲化酶生物合成,γ辐射压制一些曲霉菌病原体和细菌伤口培养物

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摘要

Melanin pigment was attracted significant interest as a photo-protecting natural polymer which applied in different fields like nanotechnology, food processing and biomedicine. Streptomyces cyaneus is used for melanin biosynthesis after optimizing its medium requirements. Tellurium dioxide nanoparticles (TeO2 NPs) were biosynthesized by the optimized melanin and gamma rays at room temperature. TeO2 NPs were characterized by UV-Vis., XRD, FTIR, HRTEM, DLS, EDX, and SEM mapping analysis. Antimicrobial activity of TeO2 NPs was tested against some pathogenic fungi and bacteria. The non-controlled free radicals produced from gamma rays were stopped by the natural melanin (stabilizing and capping agent). A proposed reaction mechanism for TeO2 NPs production was investigated. Data received from HRTEM and DLS analysis were calculated the average particles size of the spherical TeO(2)NPs and were found to be 75.0 nm. TeO2 NPs possesses a promising antifungal potential towards Aspergillus flavus, Aspergillus niger, and Aspergillus fumigatus (30.0, 20.0, and 19.0 mm ZOI, respectively). As well, they have antibacterial potential against Pseudomonas aeruginosa, Staphylococcus aureus and Klebsiella pneumoniae (25.0, 18.0, and 15.0 mm ZOI, respectively). Based on TeO2 NPs characteristics as an encourage antimicrobial agent, it may be conducted as active ingredients in biomedicine, food processing and packaging and cosmetics.
机译:黑色素颜料被吸引着显着利益,作为光保护天然聚合物,其在不同的田间,食品加工和生物医学等不同领域。在优化其培养基要求后,Streptomyces cyaneus用于黑色素生物合成。通过优化的黑色素和γ射线在室温下进行二氧化碲纳米颗粒(TEO2 NPS)。 TEO2 NPS的特征在于UV-Vis。,XRD,FTIR,HRTEM,DLS,EDX和SEM映射分析。对一些致病性真菌和细菌进行测试的TEO2 NP的抗菌活性。由天然黑色素(稳定和封端剂)停止从γ射线产生的非受控自由基。研究了TEO2 NPS生产的提出的反应机制。从HRTEM和DLS分析接收的数据计算了球形TEO(2)NPS的平均粒子尺寸,并被发现为75.0nm。 TEO2 NPS具有朝向曲霉(Aspergillus Flavus),曲霉和曲霉(30.0,20.0和19.0 mm Zoi)朝向Aspergillus flavus的抗真菌潜力。同样,它们具有针对假单胞菌铜绿假单胞菌,金黄色葡萄球菌和Klebsiella分别分别的抗菌潜力(分别为25.0,18.0和15.0mm Zoi)。基于TEO2 NPS特性作为促进抗微生物剂,它可以作为生物医学,食品加工和包装和化妆品的活性成分进行。

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