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Nanoparticle colloidal stability in cell culture media and impact on cellular interactions

机译:纳米胶体在细胞培养基中的稳定性及其对细胞相互作用的影响

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摘要

Nanomaterials are finding increasing use for biomedical applications such as imaging, diagnostics, and drug delivery. While it is well understood that nanoparticle (NP) physico-chemical properties can dictate biological responses and interactions, it has been difficult to outline a unifying framework to directly link NP properties to expected in vitro and in vivo outcomes. When introduced to complex biological media containing electrolytes, proteins, lipids, etc., nanoparticles (NPs) are subjected to a range of forces which determine their behavior in this environment. One aspect of NP behavior in biological systems that is often understated or overlooked is aggregation. NP aggregation will significantly alter in vitro behavior (dosimetry, NP uptake, cytotoxicity), as well as in vivo fate (pharmacokinetics, toxicity, biodistribution). Thus, understanding the factors driving NP colloidal stability and aggregation is paramount. Furthermore, studying biological interactions with NPs at the nanoscale level requires an interdisciplinary effort with a robust understanding of multiple characterization techniques. This review examines the factors that determine NP colloidal stability, the various efforts to stabilize NP in biological media, the methods to characterize NP colloidal stability in situ, and provides a discussion regarding NP interactions with cells
机译:纳米材料正在越来越多地用于生物医学应用,例如成像,诊断和药物输送。虽然众所周知,纳米粒子(NP)的物理化学性质可以决定生物学反应和相互作用,但很难勾勒出一个统一的框架来直接将NP的性质与预期的体外和体内结果联系起来。当将纳米颗粒(NPs)引入含有电解质,蛋白质,脂质等的复杂生物介质中时,会受到一系列作用力的作用,这些作用力决定了它们在这种环境下的行为。生物系统中NP行为的一个常被低估或忽视的方面是聚集。 NP聚集将显着改变体外行为(剂量,NP吸收,细胞毒性)以及体内命运(药代动力学,毒性,生物分布)。因此,了解驱动NP胶体稳定性和聚集的因素至关重要。此外,在纳米级研究与NPs的生物相互作用需要跨学科的工作,并且对多种表征技术有深入的了解。这篇综述探讨了决定NP胶体稳定性的因素,在生物介质中稳定NP的各种努力,表征NP胶体稳定性的方法,并就NP与细胞的相互作用进行了讨论。

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