首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Quantitative analysis of a model opioid peptide and its cyclic prodrugs in rat plasma using high-performance liquid chromatography with fluorescence and tandem mass spectrometric detection
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Quantitative analysis of a model opioid peptide and its cyclic prodrugs in rat plasma using high-performance liquid chromatography with fluorescence and tandem mass spectrometric detection

机译:高效液相色谱-荧光串联质谱检测法定量分析大鼠血浆中的阿片样物质肽及其环状前药

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Two analytical methods were developed for quantitative determination of DADLE (H_2N-Tyr-D-Ala-Gly-Phe-D-Leu-COOH) and its two cyclic prodrugs in rat plasma. For high-performance liquid chromatography with fluorescence detection (LC-FLU), precolumn derivatization of DADLE was accomplished by labeling the N-terminal amino group with the reagent naphthalene-2,3-dicarboxaldehyde in the presence of cyanide (NDA/CN) to form a highly fluorescent 1-cyanobenz[f]isoindole (CBI) derivative. A multi-dimensional LC system was employed to improve selectivity, and solid-phase extraction (SPE) was used for plasma sample preparation. The cyclic prodrugs were converted to DADLE prior to their derivatization. With fluorescence detection after derivatization, the limit of quantitation (LOQ) was 6 ng ml~(-1) for the analysis of DADLE, and good linearity was observed up to 6000 ng ml~(-1) in rat plasma. Quantitative analysis of DADLE and its cyclic prodrugs was also performed using liquid chromatography interfaced to electrospray ionization tandem mass spectrometry (LC-ESIMS-MS). Chromatographic separation was achieved on a C_(18) column using gradient elution in a water-acetonitrile system containing 0.1% (v/v) formic acid. The tandem mass spectrometric analysis was performed in the multiple reaction monitoring mode using internal standardization to improve assay precision and accuracy. For plasma sample pretreatment, acetonitrile was added first to precipitate proteins and SPE was used to minimize matrix effects. Using LC-ESI-MS-MS, the LOQ was 0.5 ng ml~(-1) for DADLE and 2 to 5 ng ml~(-1) for tis prodrugs. Good linearity was observed from the LOQ up to 1000 ng ml~(-1) for all compounds. For the analysis of DADLE, both analytical methods showed good precision, accuracy and stability. However, for prodrug analysis, LC-FLU showed some sensitivity and accuracy problems, while the LC-ESI-MS-MS method provided consistent and satisfactory results. In conclusion, LC-ESI-MS-MS is the method of choice for the analysis of DADLE and its cyclic prodrugs in rat plasma samples due to its good selectivity, high sensitivity, and fast analysis. Its application was demonstrated through biodisposition and biocnversion studies of the coumarinic acid-based prodrug after intravenous administration in rats.
机译:开发了两种分析方法用于定量测定大鼠血浆中的DADLE(H_2N-Tyr-D-Ala-Gly-Phe-D-Leu-COOH)及其两种环状前药。对于具有荧光检测功能的高效液相色谱法(LC-FLU),在氰化物(NDA / CN)存在下,用萘2,3-二甲苯甲醛试剂标记N-末端氨基,从而完成DADLE的柱前衍生。形成高荧光度的1-cyanobenz [f]异吲哚(CBI)衍生物。多维液相色谱系统用于提高选择性,而固相萃取(SPE)用于血浆样品的制备。环状前药在衍生化之前已转化为DADLE。衍生化后通过荧光检测,定量限(LOQ)为6 ng ml〜(-1),用于分析DADLE,在大鼠血浆中直至6000 ng ml〜(-1)都观察到良好的线性。还使用与电喷雾电离串联质谱法(LC-ESIMS-MS)相连的液相色谱法对DADLE及其环状前药进行了定量分析。在含有0.1%(v / v)甲酸的水-乙腈系统中,使用梯度洗脱在C_(18)色谱柱上进行色谱分离。串联质谱分析采用内部标准化在多反应监测模式下进行,以提高测定的准确性和准确性。对于血浆样品预处理,首先添加乙腈以沉淀蛋白质,并使用SPE来最大程度降低基质效应。使用LC-ESI-MS-MS,DADLE的LOQ为0.5 ng ml〜(-1),前药的LOQ为2到5 ng ml〜(-1)。从所有化合物的LOQ观察到良好的线性,直至1000 ng ml〜(-1)。对于DADLE的分析,两种分析方法均显示出良好的精度,准确性和稳定性。但是,对于前药分析,LC-FLU显示出一些灵敏度和准确性问题,而LC-ESI-MS-MS方法提供了一致且令人满意的结果。总之,由于LC-ESI-MS-MS选择性好,灵敏度高且分析速度快,因此是分析大鼠血浆样品中DADLE及其环状前药的首选方法。在大鼠静脉内给药后,通过基于香豆酸的前药的生物处置和生物转化研究证明了其应用。

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