Wong S L, Van Belle K, Sawchuk R J
Department of Pharmaceutics, College of Pharmacy, University of Minnesota, Minneapolis.
J Pharmacol Exp Ther. 1993 Feb;264(2):899-909.
The effect of probenecid (PBD) on the distributional transport of zidovudine (AZT) between plasma, cerebrospinal fluid (CSF) and brain extracellular fluid (ECF) was investigated by using microdialysis. New Zealand White rabbits received AZT, in a crossover design, during control and treatment periods. PBD was coadministered at one of two rates. One additional study involved a repeated control to investigate the possible existence of a period effect. In the low- and high-dose treatment groups, PBD decreased the total body clearance of AZT by 47.7 +/- 8.9 and 51.7 +/- 9.7%, respectively. PBD also decreased the clearance of AZT from CSF and thalamus ECF, prolonging the half-lives of AZT disappearance from the brain. Additionally, PBD elevated the AZT area under the concentration-time curve in the ventricular CSF 3- to 5-fold and the area under the thalamic ECF concentration-time curve by 5- to 6-fold, whereas the area under the plasma concentration-time curve increased only 2-fold. During PBD treatment the ratio area under the thalamic ECF concentration-time curve/area under the ventricular CSF concentration-time curve approached unity. These results provide evidence that AZT is actively transported outwardly across the CSF- and brain ECF-blood barriers, and this transport system is sensitive to PBD. A pharmacokinetic model that considers the effect of PBD on the AZT clearance from brain to plasma suggests that 73% of this pathway is subject to competitive inhibition by PBD.
采用微透析法研究了丙磺舒(PBD)对齐多夫定(AZT)在血浆、脑脊液(CSF)和脑细胞外液(ECF)之间分布转运的影响。采用交叉设计,新西兰白兔在对照期和治疗期接受AZT。PBD以两种速率之一联合给药。另一项研究涉及重复对照,以调查是否可能存在周期效应。在低剂量和高剂量治疗组中,PBD分别使AZT的全身清除率降低了47.7±8.9%和51.7±9.7%。PBD还降低了AZT从脑脊液和丘脑ECF中的清除率,延长了AZT从脑中消失的半衰期。此外,PBD使脑室CSF中AZT浓度-时间曲线下面积增加了3至5倍,丘脑ECF浓度-时间曲线下面积增加了5至6倍,而血浆浓度-时间曲线下面积仅增加了2倍。在PBD治疗期间,丘脑ECF浓度-时间曲线下面积与脑室CSF浓度-时间曲线下面积之比接近1。这些结果证明AZT可通过脑脊液和脑ECF-血脑屏障主动向外转运,且该转运系统对PBD敏感。一个考虑PBD对AZT从脑到血浆清除率影响的药代动力学模型表明,该途径的73%受到PBD的竞争性抑制。