Synergistic effect of antimetabolic and chemotherapy drugs in triple-negative breast cancer
Entity
UAM. Departamento de MedicinaPublisher
ElsevierDate
2022-03-23Citation
10.1016/j.biopha.2022.112844
Biomedicine & Pharmacotherapy 149 (2022): 112844
ISSN
0753-3322; 1950-6007DOI
10.1016/j.biopha.2022.112844Funded by
María I. Lumbreras-Herrera and Andrea Zapater-Moros are supported by Consejería de Educación e Investigación de la Comunidad de Madrid (IND2018/BMD-9262). Elena López-Camacho is supported by the Spanish Economy and Competitiveness Ministry (PTQ2018–009760). This work is supported by an unrestricted grant from RocheEditor's Version
https://doi.org/10.1016/j.biopha.2022.112844Subjects
Antimetabolic drugs; Chemotherapy drugs; Synergism; Triple-negative breast cancer; MedicinaRights
© 2022 The Authors
Esta obra está bajo una licencia de Creative Commons Reconocimiento-NoComercial-SinObraDerivada 4.0 Internacional.
Abstract
The triple-negative breast cancer (TNBC) subtype comprises approximately 15% of all breast cancers and is associated with poor long-term outcomes. Classical chemotherapy remains the standard of treatment, with toxicity and resistance being major limitations. TNBC is a high metabolic group, and antimetabolic drugs are effective in inhibiting TNBC cell growth. We analyzed the combined effect of chemotherapy and antimetabolic drug combinations in MDA-MB-231, MDA-MB-468 and HCC1143 human TNBC cell lines. Cells were treated with each drug or with drug combinations at a range of concentrations to establish the half-maximal inhibitory concentrations (IC50). The dose-effects of each drug or drug combination were calculated, and the synergistic or antagonistic effects of drug combinations were defined. Chemotherapy and antimetabolic drugs exhibited growth inhibitory effects on TNBC cell lines. Antimetabolic drugs targeting the glycolysis pathway had a synergistic effect with chemotherapy drugs, and antiglycolysis drug combinations also had a synergistic effect. The use of these drug combinations could lead to new therapeutic strategies that reduce chemotherapy drug doses, decreasing their toxic effect, or that maintain the doses but enhance their efficacy by their synergistic effect with other drugs
Files in this item
Google Scholar:López Camacho, Elena
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Trilla-Fuertes, Lucía
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Gámez Pozo, Angelo
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Dapía, Irene
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López-Vacas, Rocío
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Zapater-Moros, Andrea
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Lumbreras-Herrera, María Isabel
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Arias, Pedro
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Zamora, Pilar
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Fresno Vara, Juan Ángel
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Espinosa Arranz, Enrique
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