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Ebastine impairs metastatic spread in triple-negative breast cancer by targeting focal adhesion kinase.


ABSTRACT: We sought to investigate the utility of ebastine (EBA), a second-generation antihistamine with potent anti-metastatic properties, in the context of breast cancer stem cell (BCSC)-suppression in triple-negative breast cancer (TNBC). EBA binds to the tyrosine kinase domain of focal adhesion kinase (FAK), blocking phosphorylation at the Y397 and Y576/577 residues. FAK-mediated JAK2/STAT3 and MEK/ERK signaling was attenuated after EBA challenge in vitro and in vivo. EBA treatment induced apoptosis and a sharp decline in the expression of the BCSC markers ALDH1, CD44 and CD49f, suggesting that EBA targets BCSC-like cell populations while reducing tumor bulk. EBA administration significantly impeded BCSC-enriched tumor burden, angiogenesis and distant metastasis while reducing MMP-2/-9 levels in circulating blood in vivo. Our findings suggest that EBA may represent an effective therapeutic for the simultaneous targeting of JAK2/STAT3 and MEK/ERK for the treatment of molecularly heterogeneous TNBC with divergent profiles. Further investigation of EBA as an anti-metastatic agent for the treatment of TNBC is warranted.

SUBMITTER: Seo J 

PROVIDER: S-EPMC10130003 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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Ebastine impairs metastatic spread in triple-negative breast cancer by targeting focal adhesion kinase.

Seo Juyeon J   Park Minsu M   Ko Dongmi D   Kim Seongjae S   Park Jung Min JM   Park Soeun S   Nam Kee Dal KD   Farrand Lee L   Yang Jinsol J   Seok Chaok C   Jung Eunsun E   Kim Yoon-Jae YJ   Kim Ji Young JY   Seo Jae Hong JH  

Cellular and molecular life sciences : CMLS 20230425 5


We sought to investigate the utility of ebastine (EBA), a second-generation antihistamine with potent anti-metastatic properties, in the context of breast cancer stem cell (BCSC)-suppression in triple-negative breast cancer (TNBC). EBA binds to the tyrosine kinase domain of focal adhesion kinase (FAK), blocking phosphorylation at the Y397 and Y576/577 residues. FAK-mediated JAK2/STAT3 and MEK/ERK signaling was attenuated after EBA challenge in vitro and in vivo. EBA treatment induced apoptosis a  ...[more]

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