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基于双光子符合测量的蔗糖水解过程实时监测

Real-time monitoring of the sucrose hydrolysis process based on two-photon coincidence measurements.

作者信息

Peng Zheng, Zhou Zhiyuan, Li Tongju, Jiang Meili, Li Chenhao, Qing Tang, Yang Liu, Zhang Xiaochun

机构信息

ENNOVA Institute of Life Science and Technology, ENN Group, Langfang, Hebei 065001, China.

CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Biomed Opt Express. 2021 Sep 30;12(10):6590-6600. doi: 10.1364/BOE.432301. eCollection 2021 Oct 1.

Abstract

Real-time measurement of the biochemical reaction process has important application scenarios. Due to the chirality of a large number of life-sustaining molecules, many parameters of the reaction kinetics involving these chiral molecules, such as the reaction rate and the reagents concentrations, could be tracked by monitoring the optical activity of the substrate and/or product molecules. However, the optical activity of photosensitive biomolecules does not allow traditional laser-based real-time measurement due to the vulnerability of their biochemical properties under high-intensity light regimes. Here we introduce a real-time tracking technique of the sucrose hydrolysis reaction based on two-photon coincidence measurements. The two-photon source is generated based on a spontaneous parametric down-conversion process. During the reaction, the kinetic parameters are obtained by the real-time measurement of the change of the polarization of the photons when operating at extremely low-light regimes. Compared with single-photon counting measurements, two-photon coincidence measurements have higher signal-to-noise ratios and better robustness, which demonstrates the potential value in monitoring the photosensitive biochemical reaction processes.

摘要

实时测量生化反应过程具有重要的应用场景。由于大量维持生命的分子具有手性,涉及这些手性分子的反应动力学的许多参数,如反应速率和试剂浓度,可以通过监测底物和/或产物分子的旋光性来追踪。然而,由于光敏生物分子的生化特性在高强度光照条件下易受影响,其旋光性不允许进行传统的基于激光的实时测量。在此,我们介绍一种基于双光子符合测量的蔗糖水解反应实时跟踪技术。双光子源基于自发参量下转换过程产生。在反应过程中,通过在极低光照条件下操作时对光子偏振变化的实时测量来获得动力学参数。与单光子计数测量相比,双光子符合测量具有更高的信噪比和更好的稳健性,这证明了其在监测光敏生化反应过程中的潜在价值。

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