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Quantitative characterization of nanoparticle agglomeration within biological media

机译:生物介质中纳米颗粒团聚的定量表征

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Quantitative analysis of nanoparticle dispersion state within biological media is essential to understanding cellular uptake and the roles of diffusion, sedimentation, and endocytosis in determining nanoparticle dose. The dispersion of polymer-coated CdTe/ZnS quantum dots in water and cell growth medium with and without fetal bovine serum was analyzed by transmission electron microscopy (TEM) and dynamic light scattering (DLS) techniques. Characterization by TEM of samples prepared by plunge freezing the blotted solutions into liquid ethane was sensitive to the dispersion state of the quantum dots and enabled measurement of agglomerate size distributions even in the presence of serum proteins where DLS failed. In addition, TEM showed a reduced packing fraction of quantum dots per agglomerate when dispersed in biological media and serum compared to just water, highlighting the effect of interactions between the media, serum proteins, and the quantum dots. The identification of a heterogeneous distribution of quantum dots and quantum dot agglomerates in cell growth medium and serum by TEM will enable correlation with the previously reported optical metrology of in vitro cellular uptake of this quantum dot dispersion. In this paper, we present a comparative study of TEM and DLS and show that plunge-freeze TEM provides a robust assessment of nanoparticle agglomeration state.
机译:纳米颗粒在生物介质中的分散状态的定量分析对于理解细胞摄取以及扩散,沉降和内吞作用在确定纳米颗粒剂量中的作用至关重要。通过透射电子显微镜(TEM)和动态光散射(DLS)技术分析了聚合物包覆的CdTe / ZnS量子点在有或没有胎牛血清的水和细胞生长培养基中的分散性。通过将印迹溶液浸入液体乙烷中冷冻制备的样品的TEM表征对量子点的分散状态敏感,即使在存在DLS失效的血清蛋白的情况下,也能够测量团聚体尺寸分布。此外,与仅用水相比,TEM分散在生物介质和血清中时,TEM显示每个团块的量子点堆积率降低,突出了介质,血清蛋白和量子点之间相互作用的影响。通过TEM鉴定细胞生长培养基和血清中量子点和量子点附聚物的异质分布将使得能够与先前报道的该量子点分散体的体外细胞摄取的光学计量学相关。在本文中,我们对TEM和DLS进行了比较研究,结果表明,急冻TEM可以对纳米粒子的团聚状态提供可靠的评估。

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