1. Academic Validation
  2. Exploring the Structure-Activity Relationship and Mechanism of a Chromene Scaffold (CXL Series) for Its Selective Antiproliferative Activity toward Multidrug-Resistant Cancer Cells

Exploring the Structure-Activity Relationship and Mechanism of a Chromene Scaffold (CXL Series) for Its Selective Antiproliferative Activity toward Multidrug-Resistant Cancer Cells

  • J Med Chem. 2018 Aug 9;61(15):6892-6903. doi: 10.1021/acs.jmedchem.8b00813.
Tengfei Bian Kavitha Chandagirikoppal Vijendra 1 Yi Wang Amy Meacham Santanu Hati Christopher R Cogle Haifeng Sun 2 Chengguo Xing 2
Affiliations

Affiliations

  • 1 Department of Chemistry, Government College for Women Mandya , University of Mysore , Mandya , Karnataka 571 401 India.
  • 2 Department of Medicinal Chemistry, College of Pharmacy , University of Minnesota , Minneapolis , Minnesota 55455 , United States.
Abstract

Multidrug resistance (MDR) is one major barrier in Cancer management, which urges for new drugs to help treat MDR malignancies and elucidate MDR mechanisms. A series of chromene compounds (the CXL series) demonstrate increased antiproliferative activity toward MDR acute-myeloid-leukemia (AML) cells. The structure-activity relationship (SAR) of the antiproliferative potency has been partly characterized, whereas the structural determinants contributing to selectivity have not been investigated. In this study, three series of CXL compounds were synthesized and evaluated in HL60 and HL60/MX2 leukemia cells. The results not only confirmed previous SAR studies but also, for the first time, provided structural insights into the selectivity for MDR HL60/MX2 cells. Using the lead compounds as probes, we demonstrated that their modulation of intracellular-calcium homeostasis results in their antiproliferative potency and selectivity. Three candidates also demonstrate excellent in vitro safety profiles between Cancer cells and normal cells, which will be evaluated in vivo in future studies.

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