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PMID: 38704938 Published · ppublish English

Novel pyxinol amide derivatives bearing an aliphatic heterocycle as P-glycoprotein modulators for overcoming multidrug resistance.

European journal of medicinal chemistry ·Vol. 272 ·2024-06-05

Yu L, Ren R, Li S, Zhang C, Chen C, Lv H, Zou Z, Pei X, Song Z, Zhang P, Wang H, Yang G

Abstract

P-glycoprotein (Pgp) modulators are promising agents for overcoming multidrug resistance (MDR) in cancer chemotherapy. In this study, via structural optimization of our lead compound S54 (nonsubstrate allosteric inhibitor of Pgp), 29 novel pyxinol amide derivatives bearing an aliphatic heterocycle were designed, synthesized, and screened for MDR reversal activity in KBV cells. Unlike S54, these active derivatives were shown to transport substrates of Pgp. The most potent derivative 4c exhibited promising MDR reversal activity (IC50 of paclitaxel = 8.80 ± 0.56 nM, reversal fold = 211.8), which was slightly better than that of third-generation Pgp modulator tariquidar (IC50 of paclitaxel = 9.02 ± 0.35 nM, reversal fold = 206.6). Moreover, the cytotoxicity of this derivative was 8-fold lower than that of tariquidar in human normal HK-2 cells. Furthermore, 4c blocked the efflux function of Pgp and displayed high selectivity for Pgp but had no effect on its expression and distribution. Molecular docking revealed that 4c bound preferentially to the drug-binding domain of Pgp. Overall, 4c is a promising lead compound for developing Pgp modulators.

Keywords
Molecular docking Multidrug resistance reversal P-glycoprotein Pyxinol amide derivatives
Article Info
Journal
European journal of medicinal chemistry
Abbr.
Eur J Med Chem
ISSN
1768-3254
Corresponding email
Published
2024-06-05
Language
English
Country/Region
France
NLM ID
0420510
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