Synthesis and Evaluation of (2-(4-Methoxyphenyl)-4-quinolinyl)(2-piperidinyl)methanol (NSC23925) Isomers To Reverse Multidrug Resistance in Cancer

Journal of Medicinal Chemistry
2012.0

Abstract

Development of multidrug resistance (MDR) during chemotherapy is a fundamental obstacle associated with cancer care. Prior studies have identified (2-(4-methoxyphenyl)-4-quinolinyl)(2-piperidinyl)methanol (5) (NSC23925) to be a small molecule agent that reverses MDR in cancer cells. We synthesized all four isomers of 5 and analyzed them by liquid chromatography-mass spectrometry (LCMS). Structure-activity relationships for reversing MDR were evaluated. Isomer 11 demonstrated the most potent activity. 11 reversed MDR in several drug-resistant cell lines expressing Pgp, including ovarian, breast, colon, uterine, and sarcoma cancer. 11 resensitized these cell lines to paclitaxel, doxorubicin, mitoxantrone, vincristine, and trabectedin with no effect on cell sensitivity to cisplatin, topotecan, and methotrexate. 11 significantly enhanced in vivo antitumor activity of paclitaxel in MDR xenograft models, without increasing the level of paclitaxel toxicity. In conclusion, 11 and derivatives of this compound may hold therapeutic value in the treatment of MDR-dependent cancers.

Knowledge Graph

Similar Paper

Synthesis and Evaluation of (2-(4-Methoxyphenyl)-4-quinolinyl)(2-piperidinyl)methanol (NSC23925) Isomers To Reverse Multidrug Resistance in Cancer
Journal of Medicinal Chemistry 2012.0
Novel Multidrug Resistance Reversal Agents
Journal of Medicinal Chemistry 1999.0
Designed P-glycoprotein inhibitors with triazol-tetrahydroisoquinoline-core increase doxorubicin-induced mortality in multidrug resistant K562/A02 cells
Bioorganic & Medicinal Chemistry 2019.0
Partial synthesis and biological evaluation of bisbenzylisoquinoline alkaloids derivatives: potential modulators of multidrug resistance in cancer
Journal of Asian Natural Products Research 2012.0
Synthesis and primary evaluation of quinoxalinone derivatives as potent modulators of multidrug resistance
Medicinal Chemistry Research 2009.0
Synthesis of curcumin mimics with multidrug resistance reversal activities
Bioorganic & Medicinal Chemistry 2008.0
New 1,3-dioxolane and 1,3-dioxane derivatives as effective modulators to overcome multidrug resistance
Bioorganic & Medicinal Chemistry 2007.0
N,N-bis(Cyclohexanol)amine Aryl Esters: A New Class of Highly Potent Transporter-Dependent Multidrug Resistance Inhibitors
Journal of Medicinal Chemistry 2009.0
Design and synthesis of tetrahydroisoquinoline derivatives as potential multidrug resistance reversal agents in cancer
Bioorganic & Medicinal Chemistry Letters 2008.0
Synthesis and biological evaluation of quinazoline derivatives – A SAR study of novel inhibitors of ABCG2
European Journal of Medicinal Chemistry 2019.0