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使用毛细管柱气相色谱法同时检测和定量血清中的二甘醇、乙二醇及有毒醇类。

Simultaneous detection and quantitation of diethylene glycol, ethylene glycol, and the toxic alcohols in serum using capillary column gas chromatography.

作者信息

Williams R H, Shah S M, Maggiore J A, Erickson T B

机构信息

Department of Pathology, University of Illinois at Chicago Medical Center, 60612, USA.

出版信息

J Anal Toxicol. 2000 Oct;24(7):621-6. doi: 10.1093/jat/24.7.621.

Abstract

Determination of toxic glycols and alcohols in an emergency setting requires a rapid yet accurate and reliable method. To simultaneously determine diethylene glycol (DEG) along with ethylene glycol, methanol, isopropanol, acetone, and ethanol, we modified a previously developed gas chromatographic (GC) method. The system used a Hewlett-Packard 6890 GC with EPC, a Gooseneck splitless liner, and an Rtx-200 capillary column (30 m x 0.53-mm i.d., 3 mm). After serum samples were deproteinized using ultrafiltration (Millipore Ultrafree-MC), 1 mL of the protein-free filtrate was manually injected into the GC. Internal standards for alcohols (and acetone) and glycols were n-propanol and 1,3-butanediol, respectively. All compounds eluted within 3.5 min (linear temperature gradient from 40 to 260 degrees C); total run time was 6.5 min. Limit of detection and linear range for all compounds were 1 or 2.5 mg/dL and 0-500 mg/dL, respectively. In addition, there was no interference from propionic acid, propylene glycol, and 2,3-butanediol. The modifications in the equipment and temperature program allowed increased resolution and thus, detection and reliable quantitation of DEG and other common toxic glycols and alcohols of clinical interest.

摘要

在紧急情况下测定有毒二醇和醇类需要一种快速、准确且可靠的方法。为了同时测定二甘醇(DEG)以及乙二醇、甲醇、异丙醇、丙酮和乙醇,我们改进了之前开发的气相色谱(GC)方法。该系统使用配备电子压力控制(EPC)的惠普6890气相色谱仪、鹅颈不分流进样衬管和Rtx - 200毛细管柱(30 m×0.53 mm内径,3 mm)。血清样本经超滤(密理博Ultrafree - MC)脱蛋白后,将1 mL无蛋白滤液手动注入气相色谱仪。醇类(和丙酮)以及二醇的内标分别为正丙醇和1,3 - 丁二醇。所有化合物在3.5分钟内洗脱完毕(线性温度梯度为40至260摄氏度);总运行时间为6.5分钟。所有化合物的检测限和线性范围分别为1或2.5 mg/dL以及0 - 500 mg/dL。此外,丙酸、丙二醇和2,3 - 丁二醇无干扰。设备和温度程序的改进提高了分辨率,从而能够检测并可靠定量DEG以及其他临床上感兴趣的常见有毒二醇和醇类。

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