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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 >Generic DART-MS platform for monitoring the on-demand continuous-flow production of pharmaceuticals: Advancing the quantitative protocol for caffeates in microfluidic biocatalysis
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Generic DART-MS platform for monitoring the on-demand continuous-flow production of pharmaceuticals: Advancing the quantitative protocol for caffeates in microfluidic biocatalysis

机译:用于监测药物按需连续流量生产的通用飞镖平台:推进微流体生物分析中的咖啡因的定量方案

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Today, continuous processing is regarded as an effective on-demand production technique of pharmaceuticals. Homemade microreactors packed with immobilized lipase under continuous-flow conditions were first applied to tailor the production of high-value caffeic add phenethyl ester (CAPE) from methyl caffeate (MC) and 2-phenylethanol (PE) in cyclohexane via transesterification; however, this method is challenging due to the lack of a rapid platform for monitoring caffeates in microfluidic biocatalysis. The reactants were directly analyzed using Direct Analysis in Real Time Mass Spectrometry (DART-MS), and the corresponding ionization parameters were investigated. Special ions produced from MC (parent ion m/z 192.87 and product ion m/z 133.44) and CAPE (parent ion m/z 282.93 and product ion m/z 178.87) were determined using DART-MS2 in the negative ion mode. The peak areas of the select reaction monitoring (SRM) signals were calculated to develop the standard curves for quantitative analyses of the concentration. Reasonable linear regression equations of MC and CAPE were obtained in the range of 3.125-50.000 mg/L, with linear coefficients (R-2) of 0.9515 and 0.9973, limits of detection (LOD) of 0.005 and 0.003 mg/L, limits of quantification (LOQ) of 0.02 and 0.01 mg/L, and recovery ranges of 92.50-97.11% and 90.11-97.60%, respectively. The results using DART-MS2 were in good agreement with those using conventional High-Performance Liquid Chromatography with a UV detector (HPLC-UV) and were successfully applied to monitor the kinetics constants and mass transfer coefficients in a continuous-flow packed bed microreactor. Thus, the DART-MS2 method is an efficient tool for analyzing caffeates in microfluidic biocatalysis with limited sample preparation and short operating time. (C) 2017 Elsevier B.V. All rights reserved.
机译:如今,连续处理被认为是药物的有效按需生产技术。首先应用于连续流动条件下的固定化脂肪酶的自制微反应器,以通过酯交换来定制由甲基咖啡因(MC)和2-苯基乙醇(PE)的高价值咖啡因添加苯乙烷(CAPE)的生产;然而,由于缺乏对微流体生物分析中的咖啡因缺乏缺乏速度的快速平台,这种方法具有挑战性。使用实时质谱(Dart-MS)直接分析直接分析反应物,并研究了相应的电离参数。使用Dart-MS2在负离子模式下使用Dart-MS2测定由MC(母体离子M / Z 192.87和产物离子M / Z 133.44)产生的特殊离子(母离子M / Z 192.87和产物离子M / Z 133.44)。计算选择反应监测(SRM)信号的峰面积以开发标准曲线,用于浓度的定量分析。 MC和Cape的合理线性回归方程在3.125-50.000mg / L的范围内,线性系数(R-2)为0.9515和0.9973,检测限为0.005和0.003 mg / L,限制定量(LOQ)为0.02和0.01mg / L,分别为92.50-97.11%和90.11-97.60%的恢复范围。使用DART-MS2的结果与使用常规高效液相色谱法与UV检测器(HPLC-UV)的结果吻合良好,并成功地应用于监测连续填充床微反应器中的动力学常数和传质系数。因此,DART-MS2方法是用于分析微流体生物分析中的咖啡因的有效工具,其有限的样品制备和短操作时间。 (c)2017年Elsevier B.V.保留所有权利。

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