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Detachment of ligands from nanoparticle surface under flow and endothelial cell contact: Assessment using microfluidic devices

机译:在流动和内皮细胞接触下从纳米颗粒表面分离配体:使用微流体装置进行评估

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摘要

Surface modification of nanoparticles is a well‐established methodology to alter their properties to enhance circulation half‐life. While literature studies using conventional, in vitro characterization are routinely used to evaluate the biocompatibility of such modifications, relatively little attention has been paid to assess the stability of such surface modifications in physiologically relevant conditions. Here, microfluidic devices were used to study the effect of factors that adversely impact surface modifications including vascular flow and endothelial cell interactions. Camptothecin nanoparticles coated with polyethylene glycol (PEG) and/or folic acid were analyzed using linear channels and microvascular networks. Detachment of PEG was observed in cell‐free conditions and was attributed to interplay between the flow and method of PEG attachment. The flow and cells also impacted the surface charge of nanoparticles. Presence of endothelial cells further increased PEG shedding. The results demonstrate that endothelial cell contact, and vascular flow parameters modify surface ligands on nanoparticle surfaces.
机译:纳米粒子的表面改性是一种行之有效的方法,可以改变其性质以延长循环半衰期。虽然常规上使用常规的体外表征进行文献研究来评估此类修饰的生物相容性,但在生理相关条件下评估此类表面修饰的稳定性却很少受到关注。在这里,微流体装置被用来研究不利影响表面修饰的因素的作用,包括血管流量和内皮细胞相互作用。使用线性通道和微血管网络分析了涂有聚乙二醇(PEG)和/或叶酸的喜树碱纳米颗粒。在无细胞条件下观察到PEG的分离,这归因于PEG附着的流程和方法之间的相互作用。流动和细胞也影响纳米颗粒的表面电荷。内皮细胞的存在进一步增加了PEG的脱落。结果表明内皮细胞接触和血管流量参数修饰纳米粒子表面上的表面配体。

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