Cummings J, Merry S, Willmott N
Eur J Cancer Clin Oncol. 1986 Apr;22(4):451-60. doi: 10.1016/0277-5379(86)90112-4.
Disposition kinetics of Adriamycin (ADR), adriamycinol (AOL) and their 7-deoxyaglycones (ADR-DONE and AOL-DONE) have been studied in AKR mice bearing a s.c. growing ROS tumour after i.v. administration of 10 mg/kg. ADR and its metabolites were extracted from tissues by two different methods, separated and identified by HPLC. Tissue 7-deoxyaglycones were isolated, purified and then identified by HPLC, TLC and mass spectrometry. Kinetic profiles of ADR showed rapid equilibration of the drug with well perfused tissues but a slower and complex equilibration of the drug with the ROS tumour. Serum and tissue profiles of AOL were similar to the parent drug. From the kinetic profiles of the 7-deoxyaglycones it appeared that in the tissues their formation was rapid, with ADR-DONE always appearing first. Maximum concentrations of ADR-DONE were reached in the liver and heart only 10 min after drug administration. Estimated half lives of ADR-DONE were in liver, 1.1 hr and in heart, 2.8 hr and for AOL-DONE in liver, 5.4 hr, in heart, 5.1 hr and in serum, 4.1 hr.
在静脉注射10mg/kg阿霉素(ADR)后,对携带皮下生长的ROS肿瘤的AKR小鼠体内阿霉素(ADR)、阿霉素醇(AOL)及其7-脱氧糖苷配基(ADR-DONE和AOL-DONE)的处置动力学进行了研究。采用两种不同方法从组织中提取ADR及其代谢产物,通过高效液相色谱法(HPLC)进行分离和鉴定。组织中的7-脱氧糖苷配基经分离、纯化后,再通过HPLC、薄层色谱法(TLC)和质谱法进行鉴定。ADR的动力学曲线显示,该药物在灌注良好的组织中能快速达到平衡,但在ROS肿瘤中达到平衡的过程较慢且复杂。AOL的血清和组织曲线与母体药物相似。从7-脱氧糖苷配基的动力学曲线来看,在组织中它们的形成速度很快,ADR-DONE总是最先出现。给药后仅10分钟,肝脏和心脏中ADR-DONE就达到了最大浓度。ADR-DONE在肝脏中的估计半衰期为1.1小时,在心脏中为2.8小时;AOL-DONE在肝脏中的半衰期为5.4小时,在心脏中为5.1小时,在血清中为4.1小时。