Protocols for isolation and characterization of nanoparticle biomolecular corona complexes

IF 3.6 Q2 TOXICOLOGY
Mahmoud G. Soliman, Alberto Martinez-Serra, Marko Dobricic, Duong N. Trinh, Jack Cheeseman, Daniel I R Spencer, M. Monopoli
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引用次数: 0

Abstract

Engineered nanoparticles (NPs) pose a broad spectrum of interesting properties that make them useful for many applications. However, continuous exposure to NPs requires the need to deeply understand the outcomes when these NPs interact with different biological environments. After exposure within (to) these environments, the pristine surfaces of NPs strongly interact with the molecules from the surrounding medium, including metabolites, lipids, glycan, and proteins, forming the so-called protein corona (PC). It is well established that the NP-PC strongly influences the biological fate of various NPs types, including cellular uptake, toxicity, and biodistribution. Thus, for a proper assessment of potential hazards associated with engineered NPs, it is mandatory to study and evaluate the PC that forms around NPs. Herein, we describe protocols in detail for the isolation and characterization of NP-PC complexes and cover the following aspects: 1) isolation protocols for different nanomaterials in a range of exposing media, including magnetic isolation methods for superparamagnetic NPs, 2) NP physico-chemical characterization using advanced and standard techniques available in regular laboratories, and 3) NP- PC characterization of the protein and glycan components.
纳米粒子生物分子电晕复合物的分离和表征规程
工程纳米粒子(NPs)具有广泛的有趣特性,可用于多种应用。然而,由于需要持续接触 NPs,因此需要深入了解这些 NPs 与不同生物环境相互作用的结果。暴露在这些环境中后,NPs 的原始表面会与周围介质中的分子(包括代谢物、脂类、糖类和蛋白质)发生强烈的相互作用,形成所谓的蛋白质电晕(PC)。NP-PC 对各种类型 NPs 的生物学命运(包括细胞摄取、毒性和生物分布)有很大影响,这一点已得到公认。因此,为了正确评估与工程 NPs 相关的潜在危害,必须对 NPs 周围形成的 PC 进行研究和评估。在此,我们将详细介绍 NP-PC 复合物的分离和表征方案,包括以下几个方面:1) 不同纳米材料在一系列暴露介质中的分离规程,包括超顺磁性 NP 的磁性分离方法;2) 使用常规实验室可用的先进和标准技术进行 NP 物理化学表征;3) 蛋白质和聚糖成分的 NP- PC 表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
0
审稿时长
13 weeks
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