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基于量子弱测量的手性传感器对 l-半胱氨酸的氧化分析

Oxidation Analysis of l-Cysteine with a Chiral Sensor Based on Quantum Weak Measurement.

作者信息

Zhang Qihao, Chen Chaoyi, Weng Chaofan, Chen Jiali, Peng Zhikang, Lin Qiang, Li Dongmei

机构信息

Key Laboratory of Quantum Precision Measurement of Zhejiang Province, Center for Optics & Optoelectronics Research, Collaborative Innovation Center for Information Technology in Biological and Medical Physics, College of Science, Zhejiang University of Technology, Hangzhou 310023, China.

Hangzhou National Camera Testing Technology Co., Ltd., Hangzhou 310013, China.

出版信息

Anal Chem. 2024 Feb 27;96(8):3402-3408. doi: 10.1021/acs.analchem.3c04558. Epub 2024 Feb 14.

Abstract

l-Cysteine, distinguished by its possession of reactive sulfhydryl groups within its molecular structure, plays a significant role in both biological systems and the pharmaceutical industry. It stands not only as a natural component integral to the constitution of glutathione but also as the principal precursor for the synthesis of l-cystine through an oxidation reaction. This study endeavors to introduce a novel approach to l-cysteine analysis, capitalizing on its optical activity, whereby an optical rotation detection system grounded in the principles of quantum weak measurement is proffered. The optical rotation angle corresponding to the concentration of chiral solutions can be accurately ascertained through spectral analysis. In practical implementation, a chiral sensing system, boasting a sensitivity of 372 nm/rad, was meticulously constructed, leveraging the concept of weak value amplification. Then, the real-time monitoring of chemical reactions involving l-cysteine and dimethyl sulfoxide was performed. Under the specific experimental conditions outlined in this investigation, it was observed that the oxidation process culminated within approximately 12 h. The application of weak measurement-based chiral sensors holds immense potential, providing robust technical support for real-time monitoring in fields such as chiral analysis and the synthesis of chiral pharmaceutical compounds.

摘要

L-半胱氨酸因其分子结构中含有具有反应活性的巯基而独具特色,在生物系统和制药行业中均发挥着重要作用。它不仅是构成谷胱甘肽不可或缺的天然成分,还是通过氧化反应合成L-胱氨酸的主要前体。本研究致力于引入一种基于L-半胱氨酸旋光活性的新型分析方法,提出一种基于量子弱测量原理的旋光检测系统。通过光谱分析能够准确测定手性溶液浓度对应的旋光角度。在实际应用中,利用弱值放大概念精心构建了灵敏度为372 nm/rad的手性传感系统。随后,对涉及L-半胱氨酸和二甲基亚砜的化学反应进行了实时监测。在本研究设定的特定实验条件下,观察到氧化过程大约在12小时内完成。基于弱测量的手性传感器的应用具有巨大潜力,为手性分析和手性药物化合物合成等领域的实时监测提供了有力的技术支持。

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