Application of sol‐gel universal sorbent coated fabric phase sorptive extraction membranes in combination with high‐performance liquid chromatography‐ultraviolet detection to monitor endocrine‐disrupting chemicals in milk and environmental water samples

IF 1.3 Q4 CHEMISTRY, ANALYTICAL
Basit Olayanju, A. Kabir, N. Manousi, K. Furton
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Abstract

Here, we deployed sol‐gel universal sorbent‐coated fabric phase sorptive extraction membranes in tandem with high‐performance liquid chromatography equipped with an ultraviolet detector (HPLC‐UV) for the analysis of 10 endocrine‐disrupting chemicals (EDCs). Due to the varying polarities of the studied compounds indicated by their octanol/water partition coefficient ‘log Kow’ (1.47–5.07), the extraction membrane was designed with different functionalities that are capable of simultaneous interaction with compounds of diverse natures including polar, non‐polar, and ionic species via sol‐gel sorbent coating technology. An isocratic mode of HPLC‐UV at 55:45% acetonitrile:water (v/v) on a reverse phase C18 Zorbax column (5 μm, 150 mm, 4.6 mm) was used for the separation and quantitation. Calibration curves were found linear between 25 and 2000 ppb for all compounds except cortisone in the range of 25–1000 ppb which provided an R2 value above 0.9940 in all cases. The intra‐day reproducibility and inter‐day reproducibility were found in the range of 1.2–12.8 and 0.2–14.1 (expressed as percent relative standard deviation), respectively. The validated method was finally deployed for the analysis of environmental water and milk samples with estradiol showing the highest concentrations among the studied compounds.
应用溶胶-凝胶通用吸附剂涂层织物相吸附萃取膜结合高效液相色谱-紫外检测法监测牛奶和环境水样中干扰内分泌的化学物质
在这里,我们将溶胶-凝胶通用吸附剂-涂层织物相吸附萃取膜与配备紫外检测器(HPLC - UV)的高效液相色谱串联起来,用于分析10种内分泌干扰化学物质(EDCs)。由于所研究的化合物的辛醇/水分配系数“log Kow”(1.47-5.07)表明其极性不同,因此通过溶胶-凝胶吸附涂层技术,设计了具有不同功能的萃取膜,能够同时与不同性质的化合物(包括极性、非极性和离子型)相互作用。色谱柱为C18 Zorbax反相柱(5 μm, 150 mm, 4.6 mm),乙腈:水(v/v)浓度为55:45,HPLC - UV等容模式进行分离定量。除了可的松在25 - 1000 ppb范围内,所有化合物的校准曲线在25 - 2000 ppb范围内均呈线性,其R2值在所有情况下均高于0.9940。日内重复性和日内重复性分别为1.2 ~ 12.8和0.2 ~ 14.1(以相对标准偏差百分比表示)。最后将验证方法应用于环境水和牛奶样品的分析,其中雌二醇的浓度在所研究的化合物中最高。
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来源期刊
SEPARATION SCIENCE PLUS
SEPARATION SCIENCE PLUS CHEMISTRY, ANALYTICAL-
CiteScore
1.90
自引率
9.10%
发文量
111
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