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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Nanochannel chromatography and photothermal optical diffraction: Femtoliter sample separation and label-free zeptomole detection
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Nanochannel chromatography and photothermal optical diffraction: Femtoliter sample separation and label-free zeptomole detection

机译:纳米烷基色谱和光热光学衍射:飞钻样品分离和无标记的Zeptomole检测

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Column miniaturization of liquid chromatography is a major trend in separation sciences with the advent of single-cell proteomics and metabolomics. Nanochannel chromatography is one of the promising tools for single-cell analyses because it provides ultra-small sample volume and high separation efficiency. However, non-fluorescent molecular detection in such small channels is still quite difficult due to fL-aL sample volume, which hinders further miniaturization of nanochannels. In this study, we overcame the size limitation of nanochannel chromatography by our label-free molecular detection method: photothermal optical diffraction (POD), which utilizes the photothermal effect of analytes and optical diffraction by nanochannel. The combination of the nanochannel chromatography and the POD enables 1.8 fL sample separation and label-free molecule detection in nanochannels with 800 nm width and 300 nm depth at the optimized experimental conditions. The limit of detection is 5.4 zmol (3300 molecules), approximately 50 times lower than the conventional label-free detection method. Furthermore, the theoretical plate number is calculated to be 10(5) plates/m, and the separation performance is discussed. Our label-free detection method will be widely used as a universal detector for nanochannel chromatography. (C) 2020 Elsevier B.V. All rights reserved.
机译:液相色谱柱小型化是单细胞蛋白质组学和代谢组科的分离科学的主要趋势。纳米通道色谱是单细胞分析的有希望的工具之一,因为它提供了超小的样品体积和高分离效率。然而,由于Fl-Al样品体积,这种小通道中的非荧光分子检测仍然是非常困难的,这阻碍了纳米通道的进一步小型化。在这项研究中,我们通过我们的无标签分子检测方法克服纳米烷基色谱法的尺寸限制:光热光学衍射(POD),其利用纳米通道利用分析物和光学衍射的光热效应。纳米烷基色谱和荚的组合使得在优化的实验条件下以800nm宽度和300nm深度的纳米中的纳米沟槽中的1.8次样品分离和无标记分子检测。检测限为5.4 Zmol(3300分子),比传统的无标签检测方法低约50倍。此外,理论板数计算为10(5)平板/ m,并讨论分离性能。我们的无标签检测方法将广泛用作纳米通道色谱的通用检测器。 (c)2020 Elsevier B.v.保留所有权利。

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