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Modulation by flavonoids of cell multidrug resistance mediated by P-glycoprotein and related ABC transporters.黄酮类化合物对由P-糖蛋白及相关ABC转运蛋白介导的细胞多药耐药性的调节作用。
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Effect of P-glycoprotein modulators on the pharmacokinetics of camptothecin using microdialysis.P-糖蛋白调节剂对喜树碱药代动力学的微透析研究
Br J Pharmacol. 2001 Nov;134(6):1245-52. doi: 10.1038/sj.bjp.0704363.
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Pharmacokinetics of pefloxacin and its interaction with cyclosporin A, a P-glycoprotein modulator, in rat blood, brain and bile, using simultaneous microdialysis.采用同步微透析法研究培氟沙星在大鼠血液、脑和胆汁中的药代动力学及其与P-糖蛋白调节剂环孢素A的相互作用。
Br J Pharmacol. 2001 Mar;132(6):1310-6. doi: 10.1038/sj.bjp.0703927.
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Function and regulation of ATP-binding cassette transport proteins involved in hepatobiliary transport.参与肝胆转运的ATP结合盒转运蛋白的功能与调控
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Regulation of multidrug resistance 2 P-glycoprotein expression by bile salts in rats and in primary cultures of rat hepatocytes.胆汁盐对大鼠及大鼠原代肝细胞培养物中多药耐药蛋白2 P-糖蛋白表达的调控
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Contributions of hepatic and intestinal metabolism and P-glycoprotein to cyclosporine and tacrolimus oral drug delivery.肝脏和肠道代谢以及P-糖蛋白对环孢素和他克莫司口服给药的作用。
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Microdialysis study of biliary excretion of chloramphenicol and its glucuronide in the rat.大鼠体内氯霉素及其葡糖醛酸化物胆汁排泄的微透析研究。
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Measurement of unbound caffeic acid in rat blood by on-line microdialysis coupled with liquid chromatography and its application to pharmacokinetic study.在线微透析结合液相色谱法测定大鼠血液中游离咖啡酸及其在药代动力学研究中的应用
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P-糖蛋白抑制剂环孢素A对大鼠黄芩苷药代动力学的影响:一项微透析研究

The effects of the cyclosporin A, a P-glycoprotein inhibitor, on the pharmacokinetics of baicalein in the rat: a microdialysis study.

作者信息

Tsai T H, Liu S C, Tsai P L, Ho L K, Shum A Y C, Chen C F

机构信息

National Research Institute of Chinese Medicine, 115-1 Li-Nong Street Section 2, Shih-Pai, Taipei 112, Taiwan.

出版信息

Br J Pharmacol. 2002 Dec;137(8):1314-20. doi: 10.1038/sj.bjp.0704959.

DOI:10.1038/sj.bjp.0704959
PMID:12466241
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1573598/
Abstract
  1. Baicalein is a bioactive flavonoid isolated from the root of Scutellaria baicalensis Georgi, a medicinal herb that has been used since ancient times to treat bacterial infections. As little is known concerning its pharmacokinetics, this study focussed on its pharmacokinetics as well as the possible roles of the multidrug transporter P-glycoprotein on its distribution and disposition. 2. Three microdialysis probes were simultaneously inserted into the jugular vein, the hippocampus and the bile duct of male Sprague-Dawley rats for sampling in biological fluids following the administration of baicalein (10, 30 and 60 mg kg(-1)) through the femoral vein. The P-glycoprotein inhibitor cyclosporin A was used to help delineate its roles. 3. The study design consisted of two groups of six rats in parallel: control rats which received baicalein alone and the cyclosporin A treated-group in which the rats were injected cyclosporin A, a P-glycoprotein inhibitor, 10 min prior to baicalein administration. 4. Cyclosporin A treatment resulted in a significant increase in elimination half-life, mean residence time and area under the concentration versus time curve (AUC) of unbound baicalein in the brain. However, AUC in the bile was decreased. 5. The decline of baicalein in the hippocampus, blood and bile suggested that there was rapid exchange and equilibration between the peripheral compartment and the central nervous system. In addition, the results indicated that baicalein was able to penetrate the blood-brain barrier as well as undergoing hepatobiliary excretion. 6. Although no direct transport studies were undertaken and multiple factors may affect BBB penetration and hepatobiliary excretion, strong association of the involvement of P-glycoprotein in these processes is indicated.
摘要
  1. 黄芩苷是一种从黄芩根中分离出的生物活性黄酮类化合物,黄芩作为一种草药,自古以来就被用于治疗细菌感染。由于对其药代动力学知之甚少,本研究聚焦于其药代动力学以及多药转运蛋白P-糖蛋白在其分布和处置中的可能作用。2. 将三个微透析探针同时插入雄性Sprague-Dawley大鼠的颈静脉、海马体和胆管,以便在通过股静脉给予黄芩苷(10、30和60mg kg⁻¹)后采集生物流体样本。使用P-糖蛋白抑制剂环孢素A来帮助阐明其作用。3. 研究设计包括两组,每组六只大鼠并行:一组为单独接受黄芩苷的对照大鼠,另一组为环孢素A处理组,在给予黄芩苷前10分钟给大鼠注射P-糖蛋白抑制剂环孢素A。4. 环孢素A处理导致脑内游离黄芩苷的消除半衰期、平均驻留时间和浓度-时间曲线下面积(AUC)显著增加。然而,胆汁中的AUC降低。5. 黄芩苷在海马体、血液和胆汁中的下降表明外周隔室与中枢神经系统之间存在快速交换和平衡。此外,结果表明黄芩苷能够穿透血脑屏障并进行肝胆排泄。6. 虽然未进行直接转运研究且多种因素可能影响血脑屏障穿透和肝胆排泄,但表明P-糖蛋白强烈参与了这些过程。