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Inhibitory Impact of the Amino Benzoic Derivative DAB-2-28 on the Process of Epithelial-Mesenchymal Transition in
Laurie Fortin1,2, Julie Girouard1,2, Yassine Oufqir1,2
1Groupe de Recherche en Signalisation Cellulaire (GRSC), Département de Biologie Médicale, Université du Québec à Trois-Rivières, Trois-Rivières, QC G8Z 4M3, Canada.
Abstract:
Macrophage-mediated inflammation is known to be involved in the epithelial-mesenchymal transition (EMT) of various types of cancer. This makes macrophage-derived inflammatory factors prime targets for the development of new treatments. This study uncovers the therapeutic potential and action mechanism of DAB-2-28, a small-molecule derived from para-aminobenzoic acid, in the treatment of breast cancer. The luminal MCF-7 and the triple-negative MDA-MB-231 cancer cell lines used in this study represent, respectively, breast cancers in which the differentiation states are related to the epithelial phenotype of the mammary gland and breast cancers expressing a highly aggressive mesenchymal phenotype. In MCF-7 cells, soluble factors from macrophage-conditioned media (CM-MØ) induce a characteristic morphology of mesenchymal cells with an upregulated expression of Snail1, a mesenchymal marker, as opposed to a decrease in the expression of E-cadherin, an epithelial marker. DAB-2-28 does not affect the differential expression of Snail1 and E-cadherin in response to CM-MØ, but negatively impacts other hallmarks of EMT by decreasing invasion and migration capacities, in addition to MMP9 expression and gelatinase activity, in both MCF-7 and MDA-MB-231 cells. Moreover, DAB-2-28 inhibits the phosphorylation of key pro-EMT transcriptional factors, such as NFκB, STAT3, SMAD2, CREB, and/or AKT proteins, in breast cancer cells exposed to different EMT inducers. Overall, our study provides evidence suggesting that inhibition of EMT initiation or maintenance is a key mechanism by which DAB-2-28 can exert anti-tumoral effects in breast cancer cells.
Insights
DAB-2-28, a novel small molecule, shows therapeutic potential against breast cancer by inhibiting key pathways driving the epithelial-mesenchymal transition (EMT). This compound reduces cancer cell invasion and migration, offering a promising avenue for new cancer treatments.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Macrophage-driven inflammation is implicated in cancer's epithelial-mesenchymal transition (EMT).
- Targeting macrophage-derived inflammatory factors presents opportunities for novel cancer therapies.
- Breast cancer heterogeneity, from epithelial (MCF-7) to mesenchymal (MDA-MB-231) phenotypes, necessitates diverse treatment strategies.
Purpose of the Study:
- To investigate the therapeutic potential and mechanism of action of DAB-2-28, a para-aminobenzoic acid derivative, in breast cancer.
- To evaluate DAB-2-28's effects on EMT hallmarks and associated signaling pathways in different breast cancer cell lines.
Main Methods:
- Utilized MCF-7 (luminal) and MDA-MB-231 (triple-negative) breast cancer cell lines.
- Assessed EMT markers (Snail1, E-cadherin) and invasion/migration capacities.
- Measured matrix metalloproteinase 9 (MMP9) expression and activity.
- Analyzed the phosphorylation status of key EMT-related signaling proteins (NFκB, STAT3, SMAD2, CREB, AKT).
Main Results:
- DAB-2-28 did not alter Snail1/E-cadherin expression changes induced by macrophage-conditioned media (CM-MØ).
- DAB-2-28 significantly reduced invasion, migration, and MMP9 activity in both cell lines.
- DAB-2-28 inhibited the phosphorylation of crucial pro-EMT signaling molecules in response to various inducers.
Conclusions:
- DAB-2-28 demonstrates anti-tumoral effects in breast cancer cells by targeting EMT.
- Inhibition of EMT initiation or maintenance is a key mechanism of DAB-2-28's efficacy.
- DAB-2-28 represents a potential therapeutic agent for breast cancer treatment.
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