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首页> 外文期刊>Soft Materials >A systematic investigation on spectroscopic, conformational, and interactional properties of polypeptide/nanomaterial complex: effects of bio-based synthesized maghemite nanocomposites on human serum albumin
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A systematic investigation on spectroscopic, conformational, and interactional properties of polypeptide/nanomaterial complex: effects of bio-based synthesized maghemite nanocomposites on human serum albumin

机译:多肽/纳米材料复合物的光谱,构象和间隙性能的系统研究:生物基合成磁性纳米复合材料对人血清白蛋白的影响

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摘要

The aim of this study was to prepare novel bio-based maghemite (Fe2O3) nanocomposites as reduced graphene oxide (rGO)-doped Fe2O3 nanocomposites (Fe2O3/rGO NCs) and to investigate on their interaction with human serum albumin (HSA) as a natural polymer. Various photochemical and conformational techniques such as Fourier transform infrared spectrum, X-ray diffraction, Raman spectroscopy, scanning electron microscopes/energy-dispersive X-ray, circular dichroism, synchronous fluorescence spectroscopy, and resonance light scattering were used for characterizing the Fe2O3/rGO NCs and studying their interaction with HSA. The spectroscopic studies indicated that a complex formed between HSA and bio-based Fe2O3/rGO NCs induced structural changes on HSA. The helicity of HSA was decreased and the random coil and beta-turn in the secondary structure of HSA were enhanced. In addition, the analysis of fluorescence spectra showed that Fe2O3/rGO NCs had a strong ability to quench the intrinsic fluorescence of HSA by static quenching mechanisms. It has been claimed that the bio-based production of nanomaterials possess no remarkable un-favored effects in biomedical fields of applications. However, the obtained results of our study demonstrate the deep influence of bio-based Fe2O3/rGO NCs on HSA.
机译:本研究的目的是准备新的生物基磁石(Fe2O3)纳米复合材料作为还原的石墨烯(RGO) - 掺杂Fe2O3纳米复合材料(Fe2O3 / Rgo NC),并研究其与人血清白蛋白(HSA)的相互作用为天然聚合物。诸如傅里叶变换红外光谱,X射线衍射,拉曼光谱,扫描电子显微镜/能量分散X射线,圆形二色性,同步荧光光谱和共振光散射的各种光化学和构象技术用于表征Fe2O3 / Rgo NCS和研究他们与HSA的互动。光谱研究表明,在HSA和生物的Fe2O3 / RGO NC之间形成的复合物诱导HSA的结构变化。 HSA的肝脏降低,随机线圈和HSA二次结构中的随机线圈和β-转弯被增强。此外,荧光光谱的分析表明Fe2O3 / Rgo NCS通过静态猝灭机构终止HSA的内在荧光的能力很强。已声称,纳米材料的生物基础生产在生物医学领域没有显着的未受利益影响。然而,我们研究的获得结果证明了生物基Fe2O3 / Rgo NCS对HSA的深入影响。

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