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基于弱测量的传感器用于快速识别L(+)-抗坏血酸和D(-)-异抗坏血酸。

Weak measurement-based sensor for the rapid identification of L(+)-ascorbic acid and D(-)-isoascorbic acid.

作者信息

Zhong Suyi, Guan Tian, Xu Yang, Zhou Chongqi, Shi Lixuan, Guo Cuixia, Zhou Xuesi, Li Zhangyan, He Yonghong, Ji Yanhong

出版信息

Appl Opt. 2019 Nov 1;58(31):8583-8588. doi: 10.1364/AO.58.008583.

Abstract

The ability to identify L(+)-ascorbic acid from D(-)-isoascorbic acid in medicinal products is of practical interest. Based on the method of frequency domain weak measurement, a set of common optical path sensors for identification of L(+)-ascorbic acid and D(-)-isoascorbic acid is established. By quantificationally analyzing the magnitude and offset direction of the spectral central wavelength, a good identification of the concentration and the optically active forms of ascorbic acid has been achieved. The sensitivity and resolution of the sensor for optical rotation can reach 34.35 nm/° and ${5.53} \times {{10}^{ - 5}}^\circ $5.53×10 , respectively. The detection resolution for L(+)-ascorbic acid is ${2.00} \times {{10}^{ - 4}};{\rm mol}/{\rm mL}$2.00×10mol/mL, and that for D(-)-isoascorbic acid is ${2.73} \times {{10}^{ - 4}};{\rm mol}/{\rm mL}$2.73×10mol/mL. The potential of the sensor in the detection of transparent but optically inactive impurities has been verified by comparative experiments of sodium chloride solution. The sensor also has been applied to identify medicinal vitamin C tablets, which verified the feasibility of the method in optically active pharmaceutical solutions with water-insoluble, optically inactive impurities. Since the sensor has the advantages of high precision, real-time, high robustness, and being non-destructive, it has a great prospect in the field of drug detection containing chiral molecules.

摘要

在医药产品中鉴别L(+)-抗坏血酸和D(-)-异抗坏血酸的能力具有实际意义。基于频域弱测量方法,建立了一套用于鉴别L(+)-抗坏血酸和D(-)-异抗坏血酸的共光路传感器。通过定量分析光谱中心波长的大小和偏移方向,实现了对抗坏血酸浓度和旋光形式的良好鉴别。该旋光传感器的灵敏度和分辨率分别可达34.35 nm/°和5.53×10⁻⁵°。L(+)-抗坏血酸的检测分辨率为2.00×10⁻⁴ mol/mL,D(-)-异抗坏血酸的检测分辨率为2.73×10⁻⁴ mol/mL。通过氯化钠溶液的对比实验验证了该传感器在检测透明但无旋光性杂质方面的潜力。该传感器还被应用于鉴别药用维生素C片,验证了该方法在含有水不溶性、无旋光性杂质的旋光性药物溶液中的可行性。由于该传感器具有高精度、实时、高稳健性和无损的优点,在含手性分子的药物检测领域具有广阔的应用前景。

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