CHAPTER 1. Nanoparticle–Protein Corona Complex: Composition, Kinetics, Physico–Chemical Characterization, and Impact on Biomedical Applications

Juhi Shah, Sanjay Singh
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引用次数: 9

Abstract

The recent thrust towards the production of novel nanomaterials has led to a realization of the limitless potential of these materials in myriad biomedical applications. In order to achieve the desired utility, these materials are expected to be exposed to a biological milieu where they would interact with suspended proteins and possibly develop a protein corona. Therefore, it remains to be seen whether the desired physico–chemical properties of nanomaterials are intact after protein corona formation. Therefore, this chapter has been developed to provide readers with comprehensive information about the introduction of protein coronas, characterization techniques, factors affecting protein corona formation, and potential roles to achieve the desired biological applications and toxicity of the nanomaterial studied.
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第1章。纳米粒子-蛋白质电晕复合物:组成、动力学、物理化学表征和对生物医学应用的影响
最近对新型纳米材料生产的推动使人们认识到这些材料在无数生物医学应用中的无限潜力。为了达到预期的效用,这些材料预计将暴露在生物环境中,在那里它们将与悬浮蛋白相互作用,并可能产生蛋白质冠。因此,在蛋白质电晕形成后,纳米材料所期望的物理化学性质是否完整还有待观察。因此,本章旨在为读者提供有关蛋白质冠状体的介绍,表征技术,影响蛋白质冠状体形成的因素以及实现所研究纳米材料的所需生物应用和毒性的潜在作用的全面信息。
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CHAPTER 2. Biological Significance of the Nanoparticles Protein Corona CHAPTER 10. The Protein Corona: Applications and Challenges CHAPTER 9. Nanomaterial–Blood Interactions: A Biomedical Perspective CHAPTER 4. NP–Protein Corona Interaction: Characterization Methods and Analysis CHAPTER 3. Factors Affecting a Nanoparticle's Protein Corona Formation
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