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Comparison of Atmospheric Pressure Chemical lonization,Electrospray lonization,and Atmospheric Pressure Photoionization for the Determination of Cyclosporin A in Rat Plasma

机译:大气压化学电离,电喷雾电离和大气压光电离用于测定大鼠血浆中环孢菌素A的比较

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Atmospheric pressure chemical ionization was compared with electrospray ionization and atmospheric pressure photoionization (APPI) as an interface of high-performance liquid chromatography (HPLC)-tandem mass spectrometry (MS/MS) for the determination of cyclospor-in A (CsA) in biological fluids in support of in vivo pharmacodynamic studies.These ion sources were investigated in terms of their suitability and sensitivity for the detection of CsA.The effects of the eluent flow rate and composition as well as the nebulizer temperatures on the photoionization efficiency of CsA in the positive ion mode under normal-phase HPLC conditions were explored.The ionization mechanism in the APPI environment with and without the use of the dopant was studied using two test compounds and a few solvent systems employed for normal-phase chromatography.The test compounds were observed to be ionized mainly by proton transfer with the self-protonated solvent molecules produced through photon irradiation.Furthermore,ion suppression due to sample matrix interference in the normal-phase HPLC-APPI-MS/MS system was monitored by the postcolumn infusion technique.The applicability of these proposed HPLC-API-MS/MS approaches for the determination of CsA at low nanogram per milliliter levels in rat plasma was examined.These proposed methods were then compared with respect to specificity,linearity,detection limit,and accuracy.
机译:将大气压化学电离与电喷雾电离和大气压光电离(APPI)作为高效液相色谱(HPLC)-串联质谱(MS / MS)的接口进行比较,以确定生物中的环孢菌素A(CsA)这些离子源在检测CsA的适用性和敏感性方面进行了研究,研究了洗脱液流速和组成以及雾化器温度对CsA在CsA中的光电离效率的影响。探索了在正相HPLC条件下的正离子模式。使用两种测试化合物和几种用于正相色谱的溶剂系统研究了在有和没有使用掺杂剂的情况下APPI环境中的电离机理。通过质子转移与光子辐照产生的自质子化溶剂分子而被电离。此外,通过柱后注入技术监测了正相HPLC-APPI-MS / MS系统中由于样品基质干扰引起的离子抑制。这些建议的HPLC-API-MS / MS方法在低浓度CsA测定中的适用性检查了大鼠血浆中的纳克/毫升水平。然后比较了这些拟议的方法的特异性,线性,检测限和准确性。

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