高效抗肿瘤药物TZT-1027在血浆中液相色谱-质谱分析方法的验证

Hiroyuki Ochiai , Hiromi Mori , Hideyuki Murata , Toshimi Seki , Keiko Araki , Yoshihiro Kawabe , Koichi Miyazaki , Kunio Tsukamoto , Satoshi Iwamura
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引用次数: 8

摘要

以[2H4]TZT-1027为内标物,建立了血浆中有效抗肿瘤药物TZT-1027的液相色谱-质谱分析方法。血浆样品在C18筒上固相萃取纯化,然后用乙醚溶剂萃取。然后将提取液注入LC-MS系统。色谱柱为C18反相色谱柱,流动相为乙腈- 0.05%三氟乙酸(TFA)(55:45)。采用正离子检测的常压化学电离(APCI)模式进行质谱分析,监测TZT-1027和I.S.的质子化分子离子([M+H]+),以便定量。方法适用于人、猴、狗、大鼠和小鼠血浆中TZT-1027的含量测定。在样品制备过程中,回收率为73.5 ~ 99.1%。校正曲线在0.25 ~ 100 ng / 1 ml人、狗和大鼠血浆、0.5 ml猴血浆和0.1 ml小鼠血浆范围内呈线性。从日内和日内的准确度和精密度来看,本方法满足生物分析方法验证的公认标准。TZT-1027在- 15°C以下的人血浆中保存6个月,在其他物种的血浆中保存3周。TZT-1027在等离子体中至少经过三次冻融循环也很稳定。
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Validation of an analytical method for a potent antitumor agent, TZT-1027, in plasma using liquid chromatography–mass spectrometry

A sensitive and specific analytical method for a potent antitumor agent, TZT-1027, in plasma has been developed using liquid chromatography–mass spectrometry (LC–MS) with [2H4]TZT-1027 as an internal standard (I.S.). A plasma sample was purified by solid-phase extraction on a C18 cartridge, followed by solvent extraction with diethyl ether. The extract was then injected into the LC–MS system. Chromatography was carried out on a C18 reversed-phase column using acetonitrile–0.05% trifluoroacetic acid (TFA) (55:45) as a mobile phase. Mass spectrometric analysis was performed in atmospheric pressure chemical ionization (APCI) mode with positive ion detection, and the protonated molecular ions ([M+H]+) of TZT-1027 and I.S. were monitored to allow quantitation. The method was applied to the determination of TZT-1027 in human, monkey, dog, rat and mouse plasma. As far as the sample preparation was concerned, good recoveries (73.5–99.1%) were obtained. The calibration curves were linear over the range of 0.25–100 ng per 1 ml of human, dog and rat plasma, per 0.5 ml of monkey plasma, and per 0.1 ml of mouse plasma. From the intra- and inter-day accuracy and precision, the present method satisfies the accepted criteria for bioanalytical method validation. TZT-1027 was stable when stored below −15°C for 6 months in human plasma and for 3 weeks in plasma from other species. TZT-1027 was also stable in plasma through at least three freeze–thaw cycles.

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