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Fourier Transform Infrared (FTIR) Spectroscopic Analyses of Microbiological Samples and Biogenic Selenium Nanoparticles of Microbial Origin: Sample Preparation Effects

机译:微生物样品的傅里叶变换红外(FTIR)光学样品和生物硒纳米粒子的微生物来源分析:样品制备效果

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摘要

To demonstrate the importance of sample preparation used in Fourier transform infrared (FTIR) spectroscopy of microbiological materials, bacterial biomass samples with and without grinding and after different drying periods (1.5–23 h at 45 °C), as well as biogenic selenium nanoparticles (SeNPs; without washing and after one to three washing steps) were comparatively studied by transmission FTIR spectroscopy. For preparing bacterial biomass samples, Azospirillum brasilense Sp7 and A. baldaniorum Sp245 (earlier known as A. brasilense Sp245) were used. The SeNPs were obtained using A. brasilense Sp7 incubated with selenite. Grinding of the biomass samples was shown to result in slight downshifting of the bands related to cellular poly-3-hydroxybutyrate (PHB) present in the samples in small amounts (under ~10%), reflecting its partial crystallisation. Drying for 23 h was shown to give more reproducible FTIR spectra of bacterial samples. SeNPs were shown to contain capping layers of proteins, polysaccharides and lipids. The as-prepared SeNPs contained significant amounts of carboxylated components in their bioorganic capping, which appeared to be weakly bound and were largely removed after washing. Spectroscopic characteristics and changes induced by various sample preparation steps are discussed with regard to optimising sample treatment procedures for FTIR spectroscopic analyses of microbiological specimens.
机译:为了证明用于傅里叶变换红外(FTIR)光学材料的样品制剂的重要性,微生物材料,细菌生物量样品,无需研磨和不同干燥时期(在45℃下为1.5-23h),以及生物硒纳米粒子(透明度通过透射FTIR光谱法较较浅地研究了SENPS;不洗涤和在一到三个洗涤步骤之后。用于制备细菌生物量样品,使用氮杂氮氧化钛BrasiLense SP7和A.Baldaniorum SP245(早期称为A.Barilense SP245)。使用与硒沸石一起孵育的A. BrasiLense SP7获得森塞。示出了生物质样品的研磨导致与样品中存在的细胞聚-3-羟基丁酸酯(PHB)的轻微下差异,其少量(〜10%以下),反映其部分结晶。显示干燥23小时,得到细菌样品的更可重复的FTIR光谱。已显示SENP含有封端蛋白质,多糖和脂质的封盖层。制备的SENP在其生物有机封端中含有大量的羧化成分,其似乎是弱束缚并且在洗涤后大部分除去。关于优化微生物标本的FTIR光谱分析的样品处理程序,讨论了各种样品制备步骤诱导的光谱特性和变化。

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