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Biospectroscopy of Nanodiamond-Induced Alterations in Conformation of Intra- and Extracellular Proteins: A Nanoscale IR Study

机译:纳米金刚石诱导的细胞内和细胞外蛋白构象变化的生物光谱学:纳米红外研究

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The toxicity of nanomaterials raises major concerns because of the impact that nanomaterials may have on health, which remains poorly understood. We need to explore the fate of individual nanoparticles in cells at nano and molecular levels to establish their safety. Conformational changes in secondary protein structures are one of the main indicators of impaired biological function, and hence, the ability to identify these changes at a nanoscale level offers unique insights into the nanotoxicity of materials. Here, we used nanoscale infrared spectroscopy and demonstrated for the first time that nano diamond-induced alterations in both extra- and intracellular secondary protein structures lead to the formation of antiparallel beta-sheet, beta-turns, intermolecular beta-sheet, and aggregation of proteins. These conformational changes of the protein structure may result in the loss of functionality of proteins and in turn lead to adverse effects.
机译:纳米材料的毒性引起了人们的极大关注,因为纳米材料可能对健康产生影响,对此人们仍然知之甚少。我们需要在纳米和分子水平上探索细胞中各个纳米颗粒的命运,以建立其安全性。二级蛋白质结构的构象变化是生物学功能受损的主要指标之一,因此,在纳米级识别这些变化的能力提供了对材料纳米毒性的独特见解。在这里,我们使用了纳米级红外光谱,并首次证明了纳米金刚石诱导的细胞外和细胞内二级蛋白质结构的改变导致反平行β-折叠,β-转角,分子间β-折叠和聚集的形成。蛋白质。蛋白质结构的这些构象变化可能导致蛋白质功能丧失,进而导致不利影响。

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