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Auraptene Boosts the Efficacy of the Tamoxifen Metabolites Endoxifen and 4-OH-Tamoxifen in a Chemoresistant ER+ Breast Cancer Model.

Authors :
Pulido-Capiz A
Chimal-Vega B
Avila-Barrientos LP
Campos-Valenzuela A
Díaz-Molina R
Muñiz-Salazar R
Galindo-Hernández O
García-González V
Source :
Pharmaceutics [Pharmaceutics] 2024 Sep 06; Vol. 16 (9). Date of Electronic Publication: 2024 Sep 06.
Publication Year :
2024

Abstract

Approximately 80% of breast cancer (BC) cases are estrogen receptor positive (ER+) and sensitive to hormone treatment; Tamoxifen is a prodrug, and its main plasmatic active metabolites are 4-hydroxytamoxifen (4-OH Tam) and endoxifen. Despite the effectiveness of tamoxifen therapy, resistance can be developed. An increment in eukaryotic initiation factor-4A complex (eIF4A) activity can result in tamoxifen-resistant tumor cells. For this work, we developed a cell variant resistant to 4-OH Tam and endoxifen, denominated MCF-7 <superscript>Var E</superscript> ; then, the aim of this research was to reverse the acquired resistance of this variant to tamoxifen metabolites by incorporating the natural compound auraptene. Combination treatments of tamoxifen derivatives and auraptene successfully sensitized the chemoresistant MCF-7 <superscript>Var E</superscript> . Our data suggest a dual regulation of eIF4A and ER by auraptene. Joint treatments of 4-OH Tam and endoxifen with auraptene identified a novel focus for chemoresistance disruption. Synergy was observed using the auraptene molecule and tamoxifen-derived metabolites, which induced a sensitization in MCF-7 <superscript>Var E</superscript> cells and ERα parental cells that was not observed in triple-negative breast cancer cells (TNBC). Our results suggest a synergistic effect between auraptene and tamoxifen metabolites in a resistant ER+ breast cancer model, which could represent the first step to achieving a pharmacologic strategy.

Details

Language :
English
ISSN :
1999-4923
Volume :
16
Issue :
9
Database :
MEDLINE
Journal :
Pharmaceutics
Publication Type :
Academic Journal
Accession number :
39339215
Full Text :
https://doi.org/10.3390/pharmaceutics16091179