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P-glycoprotein substrates and antagonists cluster into two distinct groups
被引:205
|作者:
Scala, S
Akhmed, N
Rao, US
Paull, K
Lan, LB
Dickstein, B
Lee, JS
Elgemeie, GH
Stein, WD
Bates, SE
机构:
[1] NCI,NIH,MED BRANCH,DIV CLIN SCI,ROCKVILLE,MD 20892
[2] NCI,NIH,INFORMAT TECHNOL BRANCH,DIV BASIC SCI,ROCKVILLE,MD 20892
[3] UNIV N CAROLINA,DEPT PHARMACOL,CHAPEL HILL,NC 27515
[4] HEBREW UNIV JERUSALEM,ALEXANDER SILBERMAN INST LIFE SCI,JERUSALEM,ISRAEL
[5] GYEONGSANG NATL UNIV,DEPT INTERNAL MED,KYUNGNAM,SOUTH KOREA
[6] HELWAN UNIV,CAIRO,EGYPT
关键词:
D O I:
10.1124/mol.51.6.1024
中图分类号:
R9 [药学];
学科分类号:
1007 ;
摘要:
To gather further insight into the interaction between P-glycoprotein (Pgp) and its substrates, 167 compounds were analyzed in multidrug resistant human colon carcinoma cells. These compounds were selected from the National Cancer Institute Drug Screen repository using computer-generated correlations with known Pgp substrates and antagonists. The compounds were prospectively defined as Pgp substrates if cytotoxicity was increased greater than or equal to 4-fold by the addition of cyclosporin A (CsA) and as Pgp antagonists if inhibition of efflux increased rhodamine accumulation by 4-fold. Among the 84 agents that met either criterion, 35 met only the criterion for substrates, 42 met only the criterion for antagonists, and only seven met both criteria. Thus, compounds interacting with Pgp form two distinct groups: one comprising cytotoxic compounds that are transported and have poor or no antagonistic activity and a second comprising compounds with antagonistic activity and no evidence of significant transport. Vinblastine accumulation and kinetic studies performed on a subset of 18 compounds similarly differentiated substrates and antagonists, but inhibition of H-3-azidopine labeling and induction of ATPase activity did not. These data support an emerging concept of Pgp in which multiple regions instead of specific sites are involved in drug transport.
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页码:1024 / 1033
页数:10
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