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Investigation of interaction between biogenic selenium nanoparticles and human serum albumin using microwave plasma optical emission spectrometry operating in a single-particle mode

机译:用单粒子模式操作微波等离子体光学发射光谱法对生物硒纳米粒子和人血清白蛋白相互作用的研究

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Characterization of selenium nanoparticles and selenium nanoparticle-human serum albumin conjugates prepared in nanopowder form, their elemental composition, and particle size distribution were investigated with a microwave plasma optical emission spectrometry operating in a single-particle mode. This new analytical technique was used for the first time to examine the molecular interaction between selenium nanoparticles and human serum albumin regarding potential biomedical applications of selenium nanoparticles. Nanopowder sample was introduced to a helium plasma by pneumatic nebulization based on fluidized bed approach and measured with a time resolution of 20 ms. Both selenium nanoparticles and selenium nanoparticle-human serum albumin conjugates were characterized by observation of synchronous signals from different particle components. Plots of the time correlation between Se and C signals for all particles in selenium nanoparticles and selenium nanoparticle-human serum albumin conjugates samples differed from each other in degree of correlation and synchronicity of recorded signals. The interaction between selenium nanoparticles and human serum albumin was confirmed using Bradford assay. For selenium nanoparticles synthesized using yeast cells, the percentage of bound protein was only of 4%, whereas for selenium nanoparticles synthesized using yeast extract as a stabilizing agent it was 16%.
机译:用纳米摩尔形式制备的硒纳米粒子和硒纳米粒子 - 人血清白蛋白缀合物的表征在单粒子模式下操作的微波等离子体光学发射光谱法研究了它们的元素组合物和粒度分布。第一次使用这种新的分析技术来检查硒纳米粒子和人血清白蛋白的分子相互作用关于硒纳米粒子的潜在生物医学应用。通过基于流化床方法的气动雾化将纳米粉末样品引入氦血浆中,并用20ms的时间分辨率测量。通过观察来自不同颗粒组分的同步信号,表征硒纳米粒子和硒纳米粒子 - 人血清白蛋白缀合物。硒纳米粒子中所有颗粒的Se和C信号之间的时间相关性的曲线图在记录信号的相关程度和同步性的相关程度上彼此不同。使用Bradford测定确认硒纳米粒子和人血清白蛋白之间的相互作用。对于使用酵母细胞合成的硒纳米粒子,结合蛋白的百分比仅为4%,而使用酵母提取物合成的硒纳米颗粒作为稳定剂,其为16%。

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