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Synthesis, structure-activity relationship and in vitro pharmacodynamics of A-ring modified caged xanthones in a preclinical model of inflammatory breast cancer

Authors :
Mary L. Alpaugh
Aspen L. Settle
Maria A. Theodoraki
Andrew T. Milcarek
Bashayer D. Althufairi
Oraphin Chantarasriwong
Theodore Habarth Morales
Emmanuel A. Theodorakis
Celso O. Rezende
Source :
Chantarasriwong, Oraphin; Milcarek, Andrew T; Morales, Theodore Habarth; Settle, Aspen L; Rezende, Celso O; Althufairi, Bashayer D; et al.(2019). Synthesis, structure-activity relationship and in vitro pharmacodynamics of A-ring modified caged xanthones in a preclinical model of inflammatory breast cancer.. European journal of medicinal chemistry, 168, 405-413. doi: 10.1016/j.ejmech.2019.02.047. UC Office of the President: Research Grants Program Office (RGPO). Retrieved from: http://www.escholarship.org/uc/item/70s1j4tz
Publication Year :
2019

Abstract

Inflammatory breast cancer (IBC) is a highly metastatic, lethal form of breast cancer that lacks targeted therapeutic strategies. Inspired by the promising cytotoxicity of gambogic acid and related caged xanthones in spheroidsMARY-X, an in vitro preclinical IBC model, we constructed a library of synthetic analogs and performed structure-activity relationship studies. The studies revealed that functionalizing the A-ring of the caged xanthone framework can significantly affect potency. Specifically, introduction of hydroxyl or fluorine groups at discrete positions of the A-ring leads to enhanced cytotoxicity at submicromolar concentrations. These compounds induce complete dissolution of spheroidsMARY-X with subsequent apoptosis of both the peripherally- and centrally-located cells, proliferative and quiescent-prone (e.g. hypoxic), respectively. These results highlight the structural flexibility and pharmacological potential of the caged xanthone motif for the design of IBC-targeting therapeutics.

Details

ISSN :
17683254
Volume :
168
Database :
OpenAIRE
Journal :
European journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....b864639fad2ab385e5b8850be5ccba74
Full Text :
https://doi.org/10.1016/j.ejmech.2019.02.047.