Desrayaud S, Guntz P, Scherrmann J M, Lemaire M
Drug Metabolism & Pharmacokinetics, Novartis Pharma Inc., Basel, Switzerland.
Life Sci. 1997;61(2):153-63. doi: 10.1016/s0024-3205(97)00370-6.
The effect of the multidrug resistance-reversing agent, SDZ PSC 833, on blood and brain pharmacokinetics of a P-glycoprotein substrate, colchicine, was investigated using simultaneous blood and brain microdialysis in freely moving rats. The use of microdialysis for pharmacokinetic studies was validated by comparing the blood concentrations of colchicine obtained by microdialysis with those obtained by direct blood sampling. The rats received either SDZ PSC 833 (2.3 mg/kg i.v. bolus followed by 16.7 microg/min/kg i.v. infusion during all the experiment) and colchicine (1 mg/kg i.v. bolus followed by 12.5 microg/min/kg i.v. infusion during 2 hours) or colchicine alone (the same dosage with SDZ PSC 833 vehicle). The SDZ PSC 833 treatment resulted in important modifications of colchicine blood pharmacokinetics: the unbound colchicine blood concentration at steady-state was enhanced from 149.6 +/- 9.9 to 333.5 +/- 81.7 ng/ml indicating a two-fold decrease in colchicine clearance. Moreover the coadministration of SDZ PSC 833 increased the brain penetration of colchicine by a factor of 10, at least. This enhancement could not be exactly assessed because the brain dialysate concentrations of control group were below the limit of detection. Nevertheless, the large increase of colchicine brain penetration is consistent with the hypothesis that SDZ PSC 833 is able to inhibit the P-glycoprotein pump present at the blood-brain barrier.
利用自由活动大鼠的血液和脑微透析技术,研究了多药耐药逆转剂SDZ PSC 833对P-糖蛋白底物秋水仙碱的血液和脑药代动力学的影响。通过比较微透析法和直接采血法获得的秋水仙碱血药浓度,验证了微透析技术在药代动力学研究中的应用。大鼠分别接受SDZ PSC 833(静脉推注2.3 mg/kg,随后在整个实验过程中以16.7 μg/min/kg静脉输注)和秋水仙碱(静脉推注1 mg/kg,随后在2小时内以12.5 μg/min/kg静脉输注),或单独给予秋水仙碱(与SDZ PSC 833溶媒剂量相同)。SDZ PSC 833处理导致秋水仙碱血液药代动力学发生重要改变:稳态时游离秋水仙碱血药浓度从149.6±9.9 ng/ml提高到333.5±81.7 ng/ml,表明秋水仙碱清除率降低了两倍。此外,SDZ PSC 833的联合给药至少使秋水仙碱的脑渗透率提高了10倍。由于对照组脑透析液浓度低于检测限,因此无法准确评估这种提高程度。然而,秋水仙碱脑渗透率的大幅提高与SDZ PSC 833能够抑制血脑屏障处存在的P-糖蛋白泵的假设一致。