Literature DB >> 7905252

The multidrug-resistance modifiers verapamil, cyclosporine A and tamoxifen induce an intracellular acidification in colon carcinoma cell lines in vitro.

G Hamilton1, E P Cosentini, B Teleky, T Koperna, J Zacheri, M Riegler, W Feil, R Schiessel, E Wenzi.   

Abstract

In this study we have investigated the effects of the multidrug-resistance (MDR) modifiers verapamil (VPM), cyclosporin A (CsA) and tamoxifen (TMX) on the intracellular pH(pHi) of four colon carcinoma-derived cell lines with low P-glycoprotein expression (CaCo-2, HT-29, SW 620 and SW 480). Addition of VPM (1 mu M), CsA (1 microgram/ml) or TMX (2 microM) in HEPES- or bicarbonate/CO2-buffered Ringer's solution was followed by dose-dependent and reversible decreases of the pHi (0.1-0.3 units) of all cell lines, as measured ratiometrically by the changes in the pH-dependent fluorescence of bis(carboxyethyl)carboxyfluorescein (BCECF). Testing the effects of the resistance modifiers on the Na+/H+ antiporter and bicarbonate trans-porters under appropriate buffer conditions and addition of inhibitors (amiloride, DIDS) revealed that the chemomodulator-induced acidification does not interfere with the function of these major pHi-regulating acid-base transporters. The induction of changes in pHi shows no correlation with MDR-reversing activity of the drugs and our data do not support the P-gp-inhibition-mediated accumulation of acidic substrates as underlying mechanism. In addition to the P-gp-directed MDR-reversal, chemomodulator-induced intracellular acidification may enhance the chemosensitivity of the cells especially under alkaline extracellular conditions, and contribute to the decreased efficacy of MDR-modifiers in acidic extracellular environments and to the chemosensitising effect of VPM in P-gp-negative cell lines.

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Year:  1993        PMID: 7905252

Source DB:  PubMed          Journal:  Anticancer Res        ISSN: 0250-7005            Impact factor:   2.480


  7 in total

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Authors:  Tomas Koltai
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Authors:  Scott A Steiger; Chun Li; Donald S Backos; Philip Reigan; N R Natale
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4.  4-Isoxazolyl-1,4-dihydropyridines exhibit binding at the multidrug-resistance transporter.

Authors:  Victoria Hulubei; Scott B Meikrantz; David A Quincy; Tina Houle; John I McKenna; Mark E Rogers; Scott Steiger; N R Natale
Journal:  Bioorg Med Chem       Date:  2012-09-25       Impact factor: 3.641

5.  Fluorescent probes of the isoxazole-dihydropyridine scaffold: MDR-1 binding and homology model.

Authors:  Monika I Szabon-Watola; Sarah V Ulatowski; Kathleen M George; Christina D Hayes; Scott A Steiger; Nicholas R Natale
Journal:  Bioorg Med Chem Lett       Date:  2013-12-04       Impact factor: 2.823

6.  Comparison of the multi-drug resistant human hepatocellular carcinoma cell line Bel-7402/ADM model established by three methods.

Authors:  Xingguo Zhong; Maoming Xiong; Xiangling Meng; Renhua Gong
Journal:  J Exp Clin Cancer Res       Date:  2010-08-20

7.  An integral approach to the etiopathogenesis of human neurodegenerative diseases (HNDDs) and cancer. Possible therapeutic consequences within the frame of the trophic factor withdrawal syndrome (TFWS).

Authors:  Salvador Harguindey; Gorka Orive; Ramón Cacabelos; Enrique Meléndez Hevia; Ramón Díaz de Otazu; Jose Luis Arranz; Eduardo Anitua
Journal:  Neuropsychiatr Dis Treat       Date:  2008-12       Impact factor: 2.570

  7 in total

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