Fluorescence cross-correlation spectroscopy using single wavelength laser.

Chao Xie, Chaoqing Dong, Jicun Ren
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Abstract

In this paper, we first introduced the basic principle of fluorescence cross-correlation spectroscopy (FCCS) and then established an FCCS setup using a single wavelength laser. We systematically optimized the setup, and the detection volume reached about 0.7 fL. The homebuilt setup was successfully applied for the study of the binding reaction of human immunoglobulin G with goat antihuman immunoglobulin G. Using quantum dots (745 nm emission wavelength) and Rhodamine B (580 nm emission wavelength) as labeling probes and 532 nm laser beam as an excitation source, the cross-talk effect was almost completely suppressed. The molecule numbers in a highly focused volume, the concentration, and the diffusion time and hydrodynamic radii of the reaction products can be determined by FCCS system.

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单波长激光荧光互相关光谱。
本文首先介绍了荧光相互关联光谱(FCCS)的基本原理,然后利用单波长激光建立了荧光相互关联光谱(FCCS)装置。利用量子点(发射波长为745 nm)和罗丹明B(发射波长为580 nm)作为标记探针,以532 nm激光束为激发源,系统地抑制了串扰效应,成功地将自制的装置应用于人免疫球蛋白G与山羊抗人免疫球蛋白G的结合反应研究。FCCS系统可以测定高度聚焦体积内的分子数、反应产物的浓度、扩散时间和流体动力半径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Fluorescence cross-correlation spectroscopy using single wavelength laser.
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