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Merging Worlds of Nanomaterials and Biological Environment: Factors Governing Protein Corona Formation on Nanoparticles and Its Biological Consequences

机译:纳米材料与生物环境的融合世界:控制蛋白质在纳米粒子上形成电晕的因素及其生物学后果

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摘要

Protein corona has became a prevalent subject in the field of nanomedicine owing to its diverse role in determining the efficiency, efficacy, and the ultimate biological fate of the nanomaterials used as a tool to treat and diagnose various diseases. For instance, protein corona formation on the surface of nanoparticles can modify its physicochemical properties and interfere with its intended functionalities in the biological microenvironments. As such, much emphasis should be placed in understanding these complex phenomena that occur at the bio-nano interface. The main aim of this review is to present different factors that are influencing protein-nanoparticle interaction such as physicochemical properties of nanoparticle (i.e., size and size distribution, shape, composition, surface chemistry, and coatings) and the effect of biological microenvironments. Apart from that, the effect of ignored factors at the bio-nano interface such as temperature, plasma concentration, plasma gradient effect, administration route, and cell observer were also addressed.
机译:由于蛋白质电晕在确定用作治疗和诊断各种疾病的工具的纳米材料的效率,功效和最终生物学命运方面的多种作用,因此已成为纳米医学领域的一个普遍主题。例如,纳米粒子表面上蛋白质电晕的形成会改变其物理化学性质,并干扰其在生物微环境中的预期功能。因此,应着重了解生物纳米界面处发生的这些复杂现象。本综述的主要目的是介绍影响蛋白质-纳米粒子相互作用的不同因素,例如纳米粒子的物理化学性质(即大小和大小分布,形状,组成,表面化学和涂层)以及生物微环境的影响。除此之外,还解决了生物-纳米界面上被忽略的因素的影响,例如温度,血浆浓度,血浆梯度作用,给药途径和细胞观察者。

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