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Characterizing nanoparticles in complex biological media and physiological fluids with depolarized dynamic light scattering

机译:用去极化动态光散射表征复杂生物介质和生理液中的纳米颗粒

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摘要

Light scattering is one of the few techniques available to adequately characterize suspended nanoparticles (NPs) in real time and in situ. However, when it comes to NPs in multicomponent and optically complex aqueous matrices – such as biological media and physiological fluids – light scattering suffers from lack of selectivity, as distinguishing the relevant optical signals from the irrelevant ones is very challenging. We meet this challenge by building on depolarized scattering: Unwanted signals from the matrix are completely suppressed. This approach yields information with an unprecedented signal-to-noise ratio in favour of the NPs and NP-biomolecule corona complexes, which in turn opens the frontier to scattering-based studies addressing the behaviour of NPs in complex physiological/biological fluids.
机译:光散射是可用于实时,原位充分表征悬浮纳米颗粒(NP)的少数技术之一。但是,当涉及多组分和光学复杂的水性基质(例如生物介质和生理液)中的NP时,光散射会缺乏选择性,因为区分相关的光学信号和无关的光学信号非常困难。我们通过建立去极化散射来应对这一挑战:完全抑制了来自矩阵的有害信号。这种方法产生的信噪比空前有利于NP和NP-生物分子电晕复合物的信息,这反过来为基于散射的研究打开了前沿,该研究致力于解决NP在复杂的生理/生物流体中的行为。

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