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Label‐Free Fluctuation Spectroscopy Based on Coherent Anti‐Stokes Raman Scattering from Bulk Water Molecules

机译:基于散装水分子相干反斯托克斯拉曼散射的无标记涨落光谱

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摘要

Nanoparticles (NPs) and molecules can be analyzed by inverse fluorescence correlation spectroscopy (iFCS) as they pass through an open detection volume, displacing fractions of the fluorescence‐emitting solution in which they are dissolved. iFCS does not require the NPs or molecules to be labeled. However, fluorophores in μm–mm concentrations are needed for the solution signal. Here, we instead use coherent anti‐Stokes Raman scattering (CARS) from plain water molecules as the signal from the solution. By this fully label‐free approach, termed inverse CARS‐based correlation spectroscopy (iCARS‐CS), NPs that are a few tenths of nm in diameter and at pM concentrations can be analyzed, and their absolute volumes/concentrations can be determined. Likewise, lipid vesicles can be analyzed as they diffuse/flow through the detection volume by using CARS fluctuations from the surrounding water molecules. iCARS–CS could likely offer a broadly applicable, label‐free characterization technique of, for example, NPs, small lipid exosomes, or microparticles in biomolecular diagnostics and screening, and can also utilize CARS signals from biologically relevant media other than water.
机译:纳米颗粒(NPs)和分子可以通过反向荧光相关光谱法(iFCS)进行分析,因为它们穿过一个开放的检测体积,从而置换了溶解在其中的部分荧光发射溶液。 iFCS不需要标记NP或分子。但是,溶液信号需要使用μm-mm浓度的荧光团。在这里,我们改为使用来自普通水分子的相干抗斯托克斯拉曼散射(CARS)作为溶液的信号。通过这种完全无标签的方法,称为基于逆CARS的相关光谱法(iCARS-CS),可以分析直径仅为十分之一nm且处于pM浓度的NP,并且可以确定其绝对体积/浓度。同样,可以使用来自周围水分子的CARS波动分析脂质囊泡扩散/流过检测体积的过程。 iCARS–CS可能会为生物分子诊断和筛选中的NP,小脂质外泌体或微粒提供广泛适用的,无标记的表征技术,并且还可利用除水以外的生物学相关介质的CARS信号。

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