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药物转运蛋白对灯盏花素小肠吸收的影响 被引量:21

Effects of drug transporters on intestinal absorption of breviscapine
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摘要 目的:研究药物转运蛋白P-糖蛋白(P-gp)和多药耐药相关蛋白(MRP2)对灯盏花素小肠吸收的影响。方法:HPLC法测定大鼠肠液中灯盏花素的浓度,以大鼠在体单向灌流实验(SPIP)研究药物的小肠吸收,计算不含抑制剂药物组和含抑制剂药物组的小肠表观渗透系数(Papp)。结果:含P-gp抑制剂药物组与原药组相比,Papp没有显著变化;含MRP2抑制剂药物组与原药组相比,Papp显著增加。结论:P-gp对灯盏花素的小肠吸收基本没有影响,而MRP2可将吸收的灯盏花素从肠上皮细胞内又转运回肠腔,从而降低灯盏花素的吸收。 Aim: To investigate the effects of drug transporters, including P-glycoprotein (P-gp)and multidrug resistance-associated protein(MRP2), on intestinal absorption of breviscapine. Methods: Breviscapine concentration in rat intestinal perfusion solution was determined by HPLC. Rat single pass intestinal perfusion(SPIP)was employed to study breviscapine intestinal absorption in order to evaluate the intestinal apparent permeation coefficients (Papp) of breviscapine group and inhibitor group. Results: Based on the statistical analysis of Papp, P-gp inhibitor has no marked effects on the intestinal absorption of breviscapine. While for MRP2 inhibitor, Papp were significantly higher than that of the breviscapine group. Conclusion: P-gp transporter has no effect on intestinal absorption of breviscapine, and MRP2 transporter is involved in the intestinal absorption of breviscapine possibly via transporting breviscapine from intestinal epithelium to intestinal cavity.
出处 《中国药科大学学报》 CAS CSCD 北大核心 2007年第1期60-64,共5页 Journal of China Pharmaceutical University
基金 国家自然科学基金资助项目(No.30430790)~~
关键词 灯盏花素 P-糖蛋白 多药耐药相关蛋白 小肠吸收 单向灌流 breviscapine P-glycoprotein muhidrug resistance-associated protein intestinal absorption single pass intestinal perfusion
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  • 1蒋学华,李素华,兰轲,杨俊毅,周静.灯盏花素在家犬体内的药代动力学[J].药学学报,2003,38(5):371-373. 被引量:67
  • 2[1]Cole SPC, Bhardwai G, Gerlach JH, et al. Overexpression of a novel transporter gene in a multidrug resistant human lung cancer cell line[J]. Science,1992,258(5088):1650-1654.
  • 3[2]Stride BD, Valdimarsson G, Gerlach JH, et al. Structure and expression of the messenger RNA encoding the murine multidrug resistance protein,an ATP-binding cassette transporter[J]. Mol Pharmacol,1996,49(6):962-971.
  • 4[3]Rappa G, Finch RA, Sartrelli AC, et al. New insights into the biology and pharmacology of the multidrug resistance protein(MRP) from gene knockout models[J]. Biochem Pharmacol,1999,58(4):557-562.
  • 5[4]Zaman GJR, Versantvoort CHM, Sdmit JJM,et al. Analysis of the expression of MRP,the gene for a new putative transmembrane drug transporter, in human multidrug resistantcer cell lines[J]. Cancer Res,1993,53(4):1747-1750.
  • 6[5]Zaman GJR, Flens MJ, Vanleusden MR.et al. The human multidrug resistance-associated protein MRP is a plasma membrane drug-efflux pump[J]. Proc Natl Acad Sci USA,1994,91(19):8822-8826.
  • 7[6]Lorico A, Rappa G, Finch RA,et al. Disruption of the murine MRP(multidrug resistance protein) gene leads to increased sensitivity to etoposide (VP-16) and increased levels of glutathione[J]. Cancer Res,1997,57(23):5238-5242.
  • 8[7]Rappa G, Lorico A, Flavell RA, et al. Evidence that the multidrug resistance protein (MRP) functions as a co-transporter of glutathione and natural product toxins[J]. Cancer Res,1997,57(23):5232-5237.
  • 9[8]Kuo MT, Bao JJ, Furuichi M, et al.Frequent coexpression of MRP/GS-x pump and γ-glutamylcysteine synthetase mRNA in drug-resistant cells, untreated tumor cells, and normal mouse tissues[J]. Biochem Pharmacol,1998,55(5):605-615.
  • 10[9]van der Kolk DM, Vellenga E, Muller M, et al. Multidrug resistance protein MRP1, glutathione, and related enzymes,their importance in acute myloid leukemia[J]. Adv Exp Med Biol,1999,457:187-198.

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