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顶空气相色谱-火焰离子化检测器法测定脑组织中酒精含量的方法开发与验证

Development and Validation of a Method for Alcohol Analysis in Brain Tissue by Headspace Gas Chromatography with Flame Ionization Detector.

作者信息

Chun Hao-Jung, Poklis Justin L, Poklis Alphonse, Wolf Carl E

机构信息

Department of Forensic Science, Virginia Commonwealth University, Richmond, VA 23284, USA.

Department of Pharmacology and Toxicology, Virginia Commonwealth University, Richmond, VA 23298, USA.

出版信息

J Anal Toxicol. 2016 Oct;40(8):653-658. doi: 10.1093/jat/bkw075. Epub 2016 Aug 3.

Abstract

Ethanol is the most widely used and abused drug. While blood is the preferred specimen for analysis, tissue specimens such as brain serve as alternative specimens for alcohol analysis in post-mortem cases where blood is unavailable or contaminated. A method was developed using headspace gas chromatography with flame ionization detection (HS-GC-FID) for the detection and quantification of ethanol, acetone, isopropanol, methanol and n-propanol in brain tissue specimens. Unfixed volatile-free brain tissue specimens were obtained from the Department of Pathology at Virginia Commonwealth University. Calibrators and controls were prepared from 4-fold diluted homogenates of these brain tissue specimens, and were analyzed using t-butanol as the internal standard. The chromatographic separation was performed with a Restek BAC2 column. A linear calibration was generated for all analytes (mean r > 0.9992) with the limits of detection and quantification of 100-110 mg/kg. Matrix effect from the brain tissue was determined by comparing the slopes of matrix prepared calibration curves with those of aqueous calibration curves; no significant differences were observed for ethanol, acetone, isopropanol, methanol and n-propanol. The bias and the CVs for all volatile controls were ≤10%. The method was also evaluated for carryover, selectivity, interferences, bench-top stability and freeze-thaw stability. The HS-GC-FID method was determined to be reliable and robust for the analysis of ethanol, acetone, isopropanol, methanol and n-propanol concentrations in brain tissue, effectively expanding the specimen options for post-mortem alcohol analysis.

摘要

乙醇是使用最广泛且滥用最严重的药物。虽然血液是分析的首选样本,但在无法获取血液或血液被污染的尸检案例中,诸如大脑等组织样本可作为酒精分析的替代样本。开发了一种采用顶空气相色谱 - 火焰离子化检测法(HS - GC - FID)来检测和定量脑组织样本中乙醇、丙酮、异丙醇、甲醇和正丙醇的方法。未固定的无挥发性脑组织样本取自弗吉尼亚联邦大学病理学系。校准物和对照品由这些脑组织样本4倍稀释的匀浆制备而成,并以叔丁醇作为内标进行分析。色谱分离使用Restek BAC2柱进行。所有分析物均生成线性校准曲线(平均r > 0.9992),检测限和定量限为100 - 110 mg/kg。通过比较基质制备的校准曲线与水性校准曲线的斜率来确定脑组织的基质效应;乙醇、丙酮、异丙醇、甲醇和正丙醇未观察到显著差异。所有挥发性对照品的偏差和变异系数均≤10%。还对该方法的残留、选择性、干扰、台式稳定性和冻融稳定性进行了评估。HS - GC - FID方法被确定为可靠且稳健,可用于分析脑组织中乙醇、丙酮、异丙醇、甲醇和正丙醇的浓度,有效地扩展了尸检酒精分析的样本选择范围。

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