Membrane Permeation by Multidrug-resistance-modulators and Non-modulators: Effects of Hydrophobicity and Electric Charge
- 1 March 2000
- journal article
- Published by Oxford University Press (OUP) in Journal of Pharmacy and Pharmacology
- Vol. 52 (3) , 289-296
- https://doi.org/10.1211/0022357001773977
Abstract
This study was designed to test the hypothesis that lipophilic cationic drugs with only roughly similar structures mediate the reversal of multidrug-resistance (MDR) by interacting with membrane phospholipids. The permeation properties of MDR-modulators and non-modulators were studied by quantifying their ability to induce the leakage of Sulphan blue through the membrane of negatively charged unilamellar liposomes. Of the 22 compounds under investigation, only those bearing a net positive electric charge per molecule (z) ≥0.2 induced dye leakage. All these efficient drugs are well-known MDR-modulators: calcium-channel blockers (propranolol, verapamil, diltiazem and dipyridamole), calmodulin antagonists (clomipramine and thioridazine) and antiparasitic agents (mepacrine, thioacridine derivatives and quinine). The non-modulators tested, including antineoplasic agents and steroids, did not induce any membrane permeation. The permeation process was a co-operative one (1.1 < Hill coefficient < 4.1) and the permeation doses inducing 50% dye leakage (PD50) were 1.9–11.2 mm. The permeation ability of the MDR-modulators (log(1/PD50)) increased significantly with octanol-buffer distributions per unit net electric charge ((logD)/z). The results provide evidence that a complex interplay occurs between the electric charge and the lipophilicity of the MDR-modulators when a dye leakage is induced through model membranes, and probably also when the MDR is reversed in leukaemic cells.Keywords
This publication has 28 references indexed in Scilit:
- Cellular pharmacology of lipophilic anthracyclines in human tumor cells in culture selected for resistance to doxorubicinAnti-Cancer Drugs, 1997
- Structure−Activity Relationship Studies on Benzofuran Analogs of Propafenone-Type Modulators of Tumor Cell Multidrug ResistanceJournal of Medicinal Chemistry, 1996
- Collateral sensitivity of multidrug resistant cells to narcotic analgesics is due to effects on the plasma membraneBiochimica et Biophysica Acta (BBA) - Biomembranes, 1995
- Potentiation of Anticancer-Drug Cytotoxicity by Multidrug-Resistance Chemosensitizers Involves Alterationsin Membrane Fluidity Leading to Increased Membrane PermeabilityEuropean Journal of Biochemistry, 1995
- Partitioning and thermodynamics of dipyridamole in the n-octanol/buffer and liposome systemsJournal of Pharmacy and Pharmacology, 1993
- Increased accumulation of drugs in a multidrug resistant cell line by alteration of membrane biophysical propertiesBiochimica et Biophysica Acta (BBA) - Molecular Cell Research, 1993
- Permeability of cryptands through dihexadecyl phosphate bilayer membranesBiophysical Chemistry, 1991
- The cell biology of multiple drug resistanceBiochemical Pharmacology, 1987
- Action of calcium antagonists on multidrug resistant cellsBiochemical Pharmacology, 1987
- Synthesis and .beta.-adrenergic blocking activity of new aliphatic and alicyclic oxime ethersJournal of Medicinal Chemistry, 1984