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In vitro activity of novel dual action MDR anthranilamide modulators with inhibitory activity on CYP-450 (Part 2)
Authors:Labrie Philippe  Maddaford Shawn P  Lacroix Jacques  Catalano Concettina  Lee David K H  Rakhit Suman  Gaudreault René C
Affiliation:1. Instituts des Biomatériaux et des Biotechnologies, Hôpital St.-François d’Assise, Université Laval, Que., Canada G1L 3L5;2. Faculty of Pharmacy, Université Laval, Québec, Que., Canada G1K 7P4;3. NeurAxon Inc. MaRS Centre, South Tower, 101 College Street, Suite 200, Room 230, Toronto, Ont., Canada M5G 1L7;4. NoAb BioDiscoveries Inc., 2820 Argentia Road, Unit 8, Mississauga, Ont., Canada L5N 8G4
Abstract:Synthesis and in vitro cytotoxicity assays of new anthranilamide MDR modulators have been performed to assess their inhibition potency on the P-glycoprotein (P-gp) transporter. Previous studies showed that the replacement of the aromatic spacer group between nitrogen atoms (N(1) and N(2)) in the P-gp inhibitor XR9576 with ethyl or propyl chain is optimal for P-gp inhibition potency. To confirm that observation, the ethyl or the propyl linker arm was replaced with a pyrrolidine or an alicyclic group such as cyclohexyl. In addition, an arylpiperazinyl group and two methoxyl groups onto the anthranilic part were introduced to assess their effect on the anti P-gp activity. Five molecules were prepared and evaluated on CEM/VLB500. All new anthranilamides were more potent than verapamil, most of them exhibited a lower cytotoxicity than XR9576. Compound 5 was the most potent and its inhibition activity was similar to XR9576. Interestingly, in vitro biotransformation studies of compounds 4 and 5 using human CYP-450 isoforms revealed, that conversely to XR9576, compounds 4 and 5 inhibited CYP3A4, an enzyme that colocalizes with P-gp in the intestine and contributes to tumor cell chemoresistance by enhancing the biodisposition of numerous drugs, notably paclitaxel. In that context, 5 might be suitable for further drug development.
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