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利用酿酒酵母进行细胞内硒纳米颗粒合成的纳米生物技术方法——制备与表征。

Nanobiotechnology approach in intracellular selenium nanoparticle synthesis using Saccharomyces cerevisiae-fabrication and characterization.

机构信息

Department of Microbiology, Faculty of Basic Science, Tabriz Branch, Islamic Azad University, Tabriz, Iran.

Department of Pathobiology, Faculty of Veterinary Medicine, Tabriz Branch, Islamic Azad University, Tabriz, East Azarbaijan, Iran.

出版信息

Arch Microbiol. 2020 Jul;202(5):1203-1209. doi: 10.1007/s00203-020-01831-0. Epub 2020 Feb 20.

Abstract

Selenium nanoparticles (Se NPs) were synthesized using Saccharomyces cerevisiae yeast. Influences of different amounts of sodium selenite (5.0, 10.0, 15.0, 20.0, and 25 µg) were evaluated on growth of yeast during incubation at 32 °C, during 4 days. UV-Vis spectroscopy results have shown that synthesized Se NPs had broad emission peak (λ) in the wavelength around 350 nm which demonstrated that formation of Se NPs occurred in intracellular manner. Physico-chemical characteristics of the synthesized Se NPs using dynamic light scattering particle-size analyzer indicated that the fabricated Se NPs had particle size, polydispersity index, and zeta potential ranging from 75 to 709 nm, 0.189 to 0989, and -7.06 to -10.3 mV, respectively. Obtained results revealed that intracellular Se NPs with minimum particle size (75 nm), maximum zeta potential (-10.3 mV), and antioxidant activity (48.5%) were synthesized using minimum amount of selenium salt (5 µg). However, most uniform Se NPs were formed using maximum amount of selenium salt (25 µg). Results also indicated that by increasing amount of sodium selenite in the culture media, from 5.0 to 25 µg, antioxidant activity of the formed Se NPs decreased from 48.5 to 20.8, respectively.

摘要

使用酿酒酵母合成了硒纳米颗粒(Se NPs)。评估了不同剂量的亚硒酸钠(5.0、10.0、15.0、20.0 和 25μg)对 32°C 孵育期间酵母生长的影响,持续 4 天。紫外-可见光谱结果表明,合成的 Se NPs 在 350nm 左右的波长处具有宽发射峰(λ),表明 Se NPs 是在细胞内形成的。使用动态光散射粒度分析仪对合成的 Se NPs 的物理化学特性进行了分析,结果表明所制备的 Se NPs 的粒径、多分散指数和 zeta 电位分别在 75 到 709nm、0.189 到 0989 和-7.06 到-10.3mV 范围内。结果表明,使用最小量的硒盐(5μg)可以合成具有最小粒径(75nm)、最大 zeta 电位(-10.3mV)和最高抗氧化活性(48.5%)的细胞内 Se NPs。然而,使用最大量的硒盐(25μg)可以形成最均匀的 Se NPs。结果还表明,随着培养基中亚硒酸钠用量从 5.0μg 增加到 25μg,形成的 Se NPs 的抗氧化活性分别从 48.5%降低到 20.8%。

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