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首页> 外文期刊>Nanoscale >Maghemite nanoparticles stabilize the protein corona formed with transferrin presenting different iron-saturation levels
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Maghemite nanoparticles stabilize the protein corona formed with transferrin presenting different iron-saturation levels

机译:磁赤铁矿纳米颗粒稳定的蛋白质与转铁蛋白呈现电晕了iron-saturation水平不同

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摘要

Magnetic nanoparticles are ideal candidates for biomedical applications given their potential use in magnetic resonance imaging, magnetic hyperthermia and targeted drug delivery. Understanding protein-nanoparticle interactions in the blood stream is of major importance due to their potential risks, especially immunogenicity (i.e. the ability to induce an immune response). Here, we report on the interaction of superparamagnetic maghemite (gamma-Fe2O3) nanoparticles with human blood plasma protein transferrin presenting different iron-saturation levels: partially iron-saturated (i.e. transferrin) and iron-free transferrin (i.e. apotransferrin). The nanoparticle-protein interaction and the protein corona formation were studied using biophysical and chemical approaches based on dynamic light scattering, gel electrophoresis, circular dichroism spectroscopy and differential scanning fluorimetry. We found that iron content governs the protein corona formation and induces a strong effect on the thermal stability of the bound protein. Our results demonstrate a stabilizing effect of the nanoparticles with a change of the unfolding position of approximately 10 degrees C towards higher temperatures for transferrin. Our study may be relevant for the further development of magnetic nanoparticles as diagnostic and therapeutic tools.
机译:磁性纳米粒子是理想的候选人考虑到他们的潜在使用生物医学应用在磁共振成像中,磁高热和靶向药物输送。理解protein-nanoparticle交互血流的主要由于重要性他们的潜在风险,尤其是免疫原性(即诱导免疫应答的能力)。在这里,我们报告的交互纳米颗粒与人类血浆蛋白质转铁蛋白呈现不同iron-saturation级别:部分iron-saturated(即。转铁蛋白)和免烫转铁蛋白(即。apotransferrin)。交互和蛋白质形成电晕研究了利用生物物理和化学方法基于动态光散射,凝胶电泳、圆二色性光谱和微分扫描荧光测定法。铁含量控制蛋白质电晕形成和产生强烈的影响绑定蛋白的热稳定性。结果表明稳定的影响纳米粒子的变化展开的位置大约10摄氏度转铁蛋白较高的温度。可能相关的进一步发展磁性纳米颗粒作为诊断和治疗的工具。

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