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Synthesis of salt-stable fluorescent nanoparticles (quantum dots) by polyextremophile halophilic bacteria

机译:多嗜盐嗜盐菌合成盐稳定的荧光纳米粒子(量子点)

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摘要

Here we report the biological synthesis of CdS fluorescent nanoparticles (Quantum Dots, QDs) by polyextremophile halophilic bacteria isolated from Atacama Salt Flat (Chile), Uyuni Salt Flat (Bolivia) and the Dead Sea (Israel). In particular, a Halobacillus sp. DS2, a strain presenting high resistance to NaCl (3–22%), acidic pH (1–4) and cadmium (CdCl2 MIC: 1,375 mM) was used for QDs biosynthesis studies. Halobacillus sp. synthesize CdS QDs in presence of high NaCl concentrations in a process related with their capacity to generate S2− in these conditions. Biosynthesized QDs were purified, characterized and their stability at different NaCl concentrations determined. Hexagonal nanoparticles with highly defined structures (hexagonal phase), monodisperse size distribution (2–5 nm) and composed by CdS, NaCl and cysteine were determined by TEM, EDX, HRXPS and FTIR. In addition, QDs biosynthesized by Halobacillus sp. DS2 displayed increased tolerance to NaCl when compared to QDs produced chemically or biosynthesized by non-halophilic bacteria. This is the first report of biological synthesis of salt-stable QDs and confirms the potential of using extremophile microorganisms to produce novel nanoparticles. Obtained results constitute a new alternative to improve QDs properties, and as consequence, to increase their industrial and biomedical applications.
机译:在这里,我们报告了从阿塔卡马盐滩(智利),乌尤尼盐滩(玻利维亚)和死海(以色列)分离的多极端嗜盐细菌对CdS荧光纳米粒子(量子点,量子点)的生物合成。特别是Halobacillus sp.。 DS2是一种对NaCl(3–22%),酸性pH(1-4)和镉(CdCl2 MIC:1,375 mM)具有高抗性的菌株,用于QDs的生物合成研究。嗜盐杆菌在高NaCl浓度下合成CdS QD的过程与其在这些条件下产生S 2-的能力有关。纯化,表征生物合成的QD,并确定其在不同NaCl浓度下的稳定性。通过TEM,EDX,HRXPS和FTIR测定了具有高清晰度结构(六方相),单分散尺寸分布(2–5 nm),由CdS,NaCl和半胱氨酸组成的六边形纳米颗粒。另外,由Halobacillus sp。生物合成的QD。与通过非嗜盐细菌化学或生物合成的QD相比,DS2对NaCl的耐受性增强。这是对盐稳定量子点进行生物合成的第一份报告,并证实了使用嗜极端微生物生产新型纳米粒子的潜力。获得的结果构成了改善量子点特性并因此增加其工业和生物医学应用的新选择。

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