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Nanoparticle protein corona evolution: from biological impact to biomarker discovery

机译:纳米蛋白质电晕演变:从生物标志物发现生物的影响

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Nanoparticles exposed to biological fluids such as blood, quickly interact with their surrounding milieu resulting in a biological coating that results in large part as a function of the physicochemical properties of the nanomaterial. The large nanoparticle surface area-to-volume ratio further augments binding of biological molecules and the resulting biomolecular or protein corona, once thought of as problematic biofouling, is now viewed as a rich source of biological information that can guide the development of nanomedicines. This review gives an overview of the utility of the protein corona in proteomic profiling and discusses how a better understanding of nano-bio interactions can accelerate the clinical translation of nanomedicines and facilitate the identification of disease-specific biomarkers. With the FDA requirement of the protein corona analysis of nanoparticles in place, it is envisaged that analyzing the protein corona of nanoparticles on a case-by-case basis can provide highly valuable nano-bio interface information that can aid and improve their clinical translation.
机译:纳米粒子暴露在生物体液等血,迅速与周围的交互环境导致的生物涂层结果在很大程度上的函数物理化学性质的纳米材料。大的纳米颗粒表面area-to-volume比例进一步增加绑定的生物和由此产生的生物分子或分子蛋白质电晕,一旦认为是有问题的生物淤积,现在被视为的丰富来源生物信息,可以指导纳米药物的发展。蛋白质电晕的实用程序的概述在蛋白质组学分析和探讨如何更好可以理解nano-bio交互加速的临床翻译纳米药物和便于识别针对疾病的生物标记物。电晕的蛋白质分析的要求纳米粒子,这是设想分析纳米粒子的蛋白质电晕根据具体情况可以提供非常有价值nano-bio可以援助和接口信息提高临床翻译。

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