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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >On-line desorption of dried blood spot: A novel approach for the direct LC/MS analysis of micro-whole blood samples.
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On-line desorption of dried blood spot: A novel approach for the direct LC/MS analysis of micro-whole blood samples.

机译:在线解吸干血斑:一种用于直接LC / MS分析微量全血样品的新颖方法。

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The aim of this work is to present a new concept, called on-line desorption of dried blood spots (on-line DBS), allowing the direct analysis of a dried blood spot coupled to liquid chromatography mass spectrometry device (LC/MS). The system is based on an inox cell which can receive a blood sample (10 microL) previously spotted on a filter paper. The cell is then integrated into LC/MS system where the analytes are desorbed out of the paper towards a column switching system ensuring the purification and separation of the compounds before their detection on a single quadrupole MS coupled to atmospheric pressure chemical ionisation (APCI) source. The described procedure implies that no pretreatment is necessary in spite the analysis is based on whole blood sample. To ensure the applicability of the concept, saquinavir, imipramine, and verapamil were chosen. Despite the use of a small sampling volume and a single quadrupole detector, on-line DBS allowed the analyses of these three compounds over their therapeutic concentrations from 50 to 500 ng/mL for imipramine and verapamil and from 100 to 1000 ng/mL for saquinavir. Moreover, the method showed good repeatability with relative standard deviation (RSD) lower than 15% based on two levels of concentration (low and high). Function responses were found to be linear over the therapeutic concentration for each compound and were used to determine the concentrations of real patient samples for saquinavir. Comparison of the founded values with those of a validated method used routinely in a reference laboratory showed a good correlation between the two methods. Moreover, good selectivity was observed ensuring that no endogenous or chemical components interfered with the quantitation of the analytes. This work demonstrates the feasibility and applicability of the on-line DBS procedure for bioanalysis.
机译:这项工作的目的是提出一种新概念,称为干血斑在线解吸(在线DBS),从而可以直接分析与液相色谱质谱仪(LC / MS)耦合的干血斑。该系统基于一个inox细胞,该细胞可以接收先前在滤纸上发现的血液样本(10微升)。然后将样品池集成到LC / MS系统中,在此系统中,将分析物从纸上解吸到色谱柱切换系统中,从而确保在对化合物进行纯化和分离之前,将其在与大气压化学电离(APCI)源耦合的单个四极杆MS上进行检测。尽管分析是基于全血样品进行的,但所描述的过程意味着无需进行任何预处理。为确保该概念的适用性,选择了沙奎那韦,丙咪嗪和维拉帕米。尽管使用了较小的采样量和单个四极杆检测器,但在线DBS可以对这三种化合物进行分析,其中丙咪嗪和维拉帕米的治疗浓度为50至500 ng / mL,沙奎那韦为100至1000 ng / mL 。此外,该方法显示出良好的可重复性,基于两个浓度水平(低和高),相对标准偏差(RSD)低于15%。发现功能响应在每种化合物的治疗浓度上是线性的,并用于确定沙奎那韦的实际患者样品浓度。将建立的值与参考实验室中常规使用的经过验证的方法的值进行比较,表明两种方法之间具有良好的相关性。此外,观察到良好的选择性,确保没有内源性或化学成分干扰分析物的定量。这项工作证明了在线DBS程序进行生物分析的可行性和适用性。

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