4.7 Article

Acidosis induces multi-drug resistance in rat prostate cancer cells (AT1) in vitro and in vivo by increasing the activity of the p-glycoprotein via activation of p38

期刊

INTERNATIONAL JOURNAL OF CANCER
卷 123, 期 11, 页码 2532-2542

出版社

WILEY
DOI: 10.1002/ijc.23818

关键词

p-glycoprotein; acidosis; MAP kinases; multi drug resistance; cytotoxicity

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资金

  1. Deutsche Krebshilfe [106774/106906]

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Because solid growing tumors often show hypoxia and pronounced extracellular acidosis, the aim of this study was to analyze the impact of an acidotic environment on the activity of the p-glycoprotein (pGP) and on the cellular content and cytotoxicity of the chemotherapeutic drug daunorubicin in the AT1 R-3327 Dunning prostate carcinoma cell line cultured in vitro and in vivo. In vitro, extracellular acidosis (pH 6.6) activated p38 and FRK1/2 and thereby induced daunorubicin resistance via a pronounced activation 4 pGP. De-novo protein synthesis was not necessary and analysis of transport kinetics indicated :I fast and persistent pGP activation at pH 6.6 (when compared with 7.4). Intracellular acidification also induced daunorubicin resistance via activation of pGP, which was mediated by activation of p38 alone. lit vivo, tumors were implanted subcutaneously, and the tumor pH was artificially lowered by forcing anaerobic metabolism. In vivo, the reduced extracellular pH of 6.6 was also able to induce daunorubicin resistance, which was abolished by inhibition of p38. These results suggest that pGP activity is dependent on extracellular PI-I in vitro and in vivo. Moreover, there is strong indication dial this effect is mediated via activation of p38 in vivo. Activation of ERK is also suitable to induce p(;P activity. Therefore. inhibition of p38 (and ERK) may be used to prevent acidosis induced increase in pGP activity and thereby attenuate multidrug resistance. In addition supportive treatments reducing tumor acidosis may improve the cytotoxic effect of chemotherapeutic drugs. (C) 2008 Wiley-Liss, Inc.

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