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Highly Flexible Platform for Tuning Surface Properties of Silica Nanoparticles and Monitoring Their Biological Interaction

机译:高度灵活的平台,用于调节二氧化硅纳米粒子的表面性质并监测其生物相互作用

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摘要

The following work presents a simple, reliable and scalable seeding-growth methodology to prepare silica nanoparticles (SiO2 NPs) (20, 30, 50 and 80 nm) directly in aqueous phase, both as plain- as well as fluorescent-labeled silica. The amount of fluorescent label per particle remained constant regardless of size, which facilitates measurements in terms of number-based concentrations. SiO2 NPs in dispersion were functionalized with an epoxysilane, thus providing a flexible platform for the covalent linkage of wide variety of molecules under mild experimental conditions. This approach was validated with ethylenediamine, two different amino acids and three akylamines to generate a variety of surface modifications. Accurate characterization of particle size, size distributions, morphology and surface chemistry is provided, both for as-synthesized particles and after incubation in cell culture medium. The impact of physicochemical properties of SiO2 NPs was investigated with human alveolar basal epithelial cells (A549) such as the effect in cytotoxicity, cell internalization and membrane interaction.
机译:以下工作提出了一种简单,可靠且可扩展的种子生长方法,可直接在水相中制备二氧化硅纳米颗粒(SiO2 NPs)(20、30、50和80 nm),包括普通和荧光标记的二氧化硅。每个颗粒的荧光标记物数量保持不变,而与大小无关,这有利于基于数量的浓度测量。分散体中的SiO2 NPs被环氧硅烷官能化,从而为在温和的实验条件下各种分子的共价键合提供了灵活的平台。用乙二胺,两种不同的氨基酸和三种烷基胺对这种方法进行了验证,以产生各种表面修饰。对于合成后的颗粒以及在细胞培养基中温育后,均提供了粒径,粒径分布,形态和表面化学性质的准确表征。用人肺泡基底上皮细胞(A549)研究了SiO2 NPs的理化性质的影响,例如对细胞毒性,细胞内在化和膜相互作用的影响。

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