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Comparison of UHPLC and HPLC in Benzodiazepines Analysis of Postmortem Samples

机译:超高效液相色谱法和高效液相色谱法在苯并二氮杂卓死后样品分析中的比较

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摘要

The aim of this study was to compare system efficiency and analysis duration regarding the solvent consumption and system maintenance in high-pressure liquid chromatography (HPLC) and ultra high-pressure liquid chromatography (UHPLC).In a case–control study, standard solutions of 7 benzodiazepines (BZs) and 73 biological samples such as urine, tissue, stomach content, and bile that screened positive for BZs were analyzed by HPLC and UHPLC in laboratory of forensic toxicology during 2012 to 2013. HPLC analysis was performed using a Knauer by 100-5 C-18 column (250 mm × 4.6 mm) and Knauer photodiode array detector (PAD). UHPLC analysis was performed using Knauer PAD detector with cooling autosampler and Eurospher II 100-3 C-18 column (100 mm × 3 mm) and also 2 pumps. The mean retention time, standard deviation, flow rate, and repeatability of analytical results were compared by using 2 methods.Routine runtimes in HPLC and UHPLC took 40 and 15 minutes, respectively. Changes in mobile phase composition of the 2 methods were not required. Flow rate and solvent consumption in UHPLC decreased. Diazepam and flurazepam were detected more frequently in biological samples.In UHPLC, small particle size and short length of column cause effective separation of BZs in a very short time. Reduced flow rate, solvent consumption, and injection volume cause more efficiency and less analysis costs. Thus, in the detection of BZs, UHPLC is an accurate, sensitive, and fast method with less cost of analysis.
机译:这项研究的目的是比较高压液相色谱(HPLC)和超高压液相色谱(UHPLC)在溶剂消耗和系统维护方面的系统效率和分析持续时间。在2012年至2013年间,法医毒理学实验室通过HPLC和UHPLC对7种苯二氮卓(BZs)和73种生物学样品(如尿液,组织,胃内容物和胆汁进行BZs阳性筛查)进行了分析。HPLC分析使用Knauer by 100 -5 C-18柱(250 mm×4.6 mm)和Knauer光电二极管阵列检测器(PAD)。使用带有冷却自动进样器的Knauer PAD检测器和Eurospher II 100-3 C-18色谱柱(100毫米×3毫米)以及2个泵进行UHPLC分析。使用两种方法比较了平均保留时间,标准偏差,流速和分析结果的可重复性.HPLC和UHPLC的常规运行时间分别花费40分钟和15分钟。不需要改变这两种方法的流动相组成。 UHPLC中的流速和溶剂消耗下降。在生物样品中更经常检测到地西p和氟西m。在UHPLC中,小粒径和短柱长可在非常短的时间内有效分离BZs。降低流速,溶剂消耗和进样量可提高效率,降低分析成本。因此,在BZ的检测中,UHPLC是一种准确,灵敏且快速的方法,具有较少的分析成本。

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