POTENTIATION OF ANTICANCER-DRUG CYTOTOXICITY BY MULTIDRUG-RESISTANCE CHEMOSENSITIZERS INVOLVES ALTERATIONS IN MEMBRANE FLUIDITY LEADING TO INCREASED MEMBRANE-PERMEABILITY

被引:147
作者
DRORI, S [1 ]
EYTAN, GD [1 ]
ASSARAF, YG [1 ]
机构
[1] TECHNION ISRAEL INST TECHNOL,DEPT BIOL,IL-32000 HAIFA,ISRAEL
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1995年 / 228卷 / 03期
关键词
MULTIDRUG RESISTANCE; ANTICANCER DRUGS; CHEMOSENSITIZERS; MEMBRANE FLUIDITY MEMBRANE PERMEABILITY;
D O I
10.1111/j.1432-1033.1995.1020m.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We are studying the mechanism underlying chemosensitization of anticancer-drug cytotoxicity in wild-type and multidrug-resistant (MDR) mammalian cells. We show here that the chemosensitizers, reserpine and verapamil, display a dramatic potentiation of taxol, anthracycline and Vinca alkaloids cytotoxicity in P-glycoprotein-(P-gp)-deficient hamster and human nasopharyngeal carcinoma cells. We have therefore utilized this phenomenon to probe for the putative P-gp-independent component of cytotoxicity chemosensitization. These chemosensitizers yielded a marked increase in the accumulation of taxol in parental hamster and human carcinoma cells that are devoid of P-gp. These chemosensitizers and nonionic detergents brought about a pronounced increase in the accumulation of structurally and mechanistically diverse lipophilic chromophores in parental and MDR hamster cells, Furthermore, non-toxic concentrations of these non-ionic detergents yielded a marked potentiation of taxol cytotoxicity in parental. cells. These findings were consistent with a chemosensitizer-mediated, P-gp-independent increase in membrane permeability. Thus, several aspects of chemosensitizers' interaction with lipid bilayers and biomembranes were studied. In this respect, like various mild detergents, chemosensitizers induced a dose-dependent leakage of carboxyfluorescein encapsulated in liposomes. Like specialized membrane fluidizers, various chemosensitizers induced a dose-dependent membrane fluidization (and sometimes rigidification) in both liposomes and various wild-type and MDR animal and human cells, as revealed by diphenylhexatriene fluorescence polarization. Furthermore, a favorable correlation was observed between the ability of chemosensitizers to permeabilize lipid bilayers and their capacity to potentiate anticancer-drug cytotoxicity. Thus, we propose that chemosensitizer-mediated changes in the physical properties of biomembranes, including altered fluidity and increased permeability, may be important factors in achieving potentiation of anticancer-drug cytotoxicity in wild-type and MDR mammalian cells. This study offers a basis for the chemosensitizer-mediated potentiation of drug toxicity to healthy tissues, thus emphasizing the importance of a prior evaluation of the potential untoward toxicity when simultaneously using MDR chemosensitizers and cytotoxic agents in the clinic.
引用
收藏
页码:1020 / 1029
页数:10
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