第十章。蛋白质电晕:应用和挑战

Sruthi Ann Alex, Debolina Chakraborty, N. Chandrasekaran, A. Mukherjee
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引用次数: 0

摘要

蛋白质冠状体可以为纳米颗粒的生物医学应用带来新的意想不到的应用和缺点。例如,现在人们已经认识到,蛋白质涂层通过筛选靶向配体的活性位点,降低了表面工程纳米颗粒的靶向能力。相反,蛋白质冠状体所呈现的独特特征可以在纳米材料的设计中加以利用,而不是对抗它们的吸附。因此,在本章中,讨论了蛋白质-纳米颗粒相互作用的优缺点及其相应的生物影响。此外,提供了体外和体内蛋白质-纳米颗粒相互作用的可用数据的广泛概述。不受控制的蛋白质加冕可以为细胞毒性、降低血液循环半衰期和最小化靶向效率铺平道路。然而,全面了解和设计具有不同功能蛋白质的合适纳米材料可以允许选择性蛋白质加冕,这可以帮助定制纳米药物递送载体的治疗特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CHAPTER 10. The Protein Corona: Applications and Challenges
Protein coronas can introduce new unexpected applications and shortcomings for the biomedical application of nanoparticles. For instance, it is now well recognized that the protein coating reduces the targeting capability of surface-engineered nanoparticles by screening the active sites of the targeting ligands. On the contrary, the unique features presented by protein coronas can be exploited in the design of the nanomaterial, rather than combat their adsorption. Therefore, in this chapter, the advantages and disadvantages of protein–nanoparticle interactions with their corresponding biological impact have been discussed. In addition, a broad overview of the available data of both in vitro and in vivo protein–nanoparticle interactions is provided. Uncontrolled protein coronation can pave the way for cytotoxicity, a reduced blood circulation half-life, and minimized targeting efficiency. However, a comprehensive understanding and design of suitable nanomaterials with varied functional proteins can allow selective protein coronation, which can help to tailor their therapeutic properties for nano-drug delivery vehicles.
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