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雌激素的拉曼光谱鉴别

Raman Spectroscopic Discrimination of Estrogens.

作者信息

Vedad Jayson, Mojica Elmer-Rico E, Desamero Ruel Z B

机构信息

Department of Chemistry, Institute for Macromolecular Assemblies, York College, Jamaica, New York, 11451 and PhD Programs in Chemistry and Biochemistry, The Graduate Center of The City University of New York, New York, New York, 10016.

Department of Chemistry and Physical Sciences, Pace University, One Pace Plaza, New York, New York, 10029.

出版信息

Vib Spectrosc. 2018 May;96:93-100. doi: 10.1016/j.vibspec.2018.02.011. Epub 2018 Mar 7.

Abstract

Estrogens are a group of steroid compounds found in the human body that are eventually discharged and ultimately end up in sewer effluents. Since these compounds can potentially affect the endocrine system its detection and quantification in sewer water is important. In this study, estrogens such as estrone (E1), estradiol (E2), estriol (E3), and ethynylestradiol (EE2) were discriminated and quantitated using Raman spectroscopy. Simulated Raman spectra were correlated with experimental data to identify unique marker peaks, which proved to be useful in differentiating each estrogen molecules. Among these marker peaks are Raman modes arising from hydroxyl groups of the estrogen molecules in the spectral region 3200-3700 cm. Other Raman modes unique to each of the estrogen samples were also identified, including peaks at 1722 cm for E1 and 2109 cm for EE2, which corresponds to their distinctive structures each containing a different set of functional groups. To quantify the components of estrogen mixtures, the intensities of each identifying Raman bands, at 581 cm for E1, 546 cm for E2, 762 cm for E3 and 597 cm for EE2, were compared and normalized against the intensity of a common peak at 783 cm. Quantitative analysis yielded most results within an acceptable 20% error.

摘要

雌激素是人体中发现的一类类固醇化合物,最终会被排出体外并最终进入污水排放物中。由于这些化合物可能会影响内分泌系统,因此在污水中对其进行检测和定量分析很重要。在本研究中,使用拉曼光谱法对雌酮(E1)、雌二醇(E2)、雌三醇(E3)和乙炔雌二醇(EE2)等雌激素进行了鉴别和定量分析。将模拟拉曼光谱与实验数据相关联,以识别独特的标记峰,这些峰被证明有助于区分每种雌激素分子。在这些标记峰中,有来自雌激素分子羟基的拉曼模式,位于光谱区域3200 - 3700 cm。还识别出了每个雌激素样品特有的其他拉曼模式,包括E1在1722 cm处的峰和EE2在2109 cm处的峰,这对应于它们各自独特的结构,每个结构包含不同的官能团集合。为了定量雌激素混合物的成分,比较了E1在581 cm、E2在546 cm、E3在762 cm和EE2在597 cm处每个识别拉曼带的强度,并相对于783 cm处一个共同峰的强度进行归一化。定量分析得出的大多数结果误差在可接受的20%以内。

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