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QuEChERS extraction of benzodiazepines in biological matrices

机译:QuEChERS在生物基质中提取苯并二氮杂卓

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摘要

Two common analytical chemical problems often encountered when using chromatographic techniques in drug analysis are matrix interferences and ion suppression. Common sample preparation often involves the dilution of the sample prior to injection onto an instrument, especially for liquid chromatography–mass spectrometry (LC–MS) analyses. This practice frequently does not minimize or eliminate conditions that may cause ion-suppression and therefore, suffer more from reduced method robustness. In order to achieve higher quality results and minimize possible interferences, various sample preparation techniques may be considered. Through the use of QuEChERS (“catchers”), a novel sample preparation technique used for high aqueous content samples, benzodiazepines can be extracted from biological fluids, such as blood and urine. This approach has shown increased recoveries of target compounds when using quantification by both external and internal standard. This increase in the recoveries has been attributed to a matrix enhancement and was determined through the use of the method of standard addition. While improving the overall analytical method for gas chromatography–mass spectrometry (GC–MS) analysis, it is not clear if this approach represents an overall benefit for laboratories that have both GC–MS and high performance liquid chromatography tandem mass spectrometry (HPLC–MS/MS) capability. Demonstrating evidence of variable ionization (enhancement, ion source inertness, etc.), the method of quantification should be focused on in future studies.
机译:在药物分析中使用色谱技术时经常遇到的两个常见分析化学问题是基质干扰和离子抑制。普通样品的制备通常涉及在注入仪器之前对样品进行稀释,特别是对于液相色谱-质谱(LC-MS)分析。这种做法通常不会最小化或消除可能导致离子抑制的条件,因此,方法的耐用性会降低。为了获得更高质量的结果并最大程度地减少可能的干扰,可以考虑使用各种样品制备技术。通过使用QuEChERS(“捕手”)(一种用于高含水量样品的新型样品制备技术),可以从血液和尿液等生物流体中提取苯二氮卓类。当使用外标和内标进行定量时,这种方法显示了目标化合物的回收率提高。回收率的提高归因于基质的增强,是通过使用标准添加方法确定的。在改进气相色谱-质谱(GC-MS)分析的整体分析方法的同时,尚不清楚这种方法是否对同时具有GC-MS和高效液相色谱串联质谱法(HPLC-MS)的实验室是否代表整体利益/ MS)功能。为了证明可变电离(增强,离子源惰性等)的证据,在未来的研究中应重点关注量化方法。

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