Effect of tumor-derived extracellular vesicle-shuttled lncRNA MALAT1 on proliferation, invasion and metastasis of triple-negative breast cancer by regulating macrophage M2 polarization via the POSTN/Hippo/YAP axis

•MALAT1/POSTN are boosted, and related with M2 infiltration/poor prognosis in TNBC.•MALAT1 is up-regulated in TNBC-derived EVs and induces M2 polarization via EVs.•TNBC-EV-derived MALAT1 induces macrophage M2 polarization by promoting POSTN.•POSTN inhibition curbs M2 polarization by suppressing the...

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Veröffentlicht in:Translational oncology 2024-11, Vol.49, p.102076, Article 102076
Hauptverfasser: Wang, Xuedong, Jian, Qiwei, Zhang, Ziyun, Gu, Juan, Wang, Xinping, Wang, Yueping
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Sprache:eng
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Zusammenfassung:•MALAT1/POSTN are boosted, and related with M2 infiltration/poor prognosis in TNBC.•MALAT1 is up-regulated in TNBC-derived EVs and induces M2 polarization via EVs.•TNBC-EV-derived MALAT1 induces macrophage M2 polarization by promoting POSTN.•POSTN inhibition curbs M2 polarization by suppressing the Hippo/YAP pathway.•TNBC-EV-derived MALAT1 induces M2 polarization and facilitates TNBC development. Triple-negative breast cancer (TNBC) is the deadliest subtype of breast cancer (BC). Tumor-derived extracellular vesicles (EVs) trigger tumor progression by promoting M2 polarization. Some lncRNAs can be encapsulated into EVs for intercellular communication. Herein, we investigated the mechanism of TNBC-derived EV-shuttled lncRNA MALAT1 on macrophage polarization/tumorigenesis. BC-associated targeted EV-derived lncRNAs were screened. Tumor tissues/tissues adjacent to cancer of TNBC patients, and blood samples of all subjects were collected. MALAT1/POSTN mRNA levels in tumor tissues/tissues adjacent to cancer, and MALAT1 expression in EVs and its correlation with TNBC patient overall survival were assessed by RT-qPCR/Kaplan-Meier survival analysis/log-rank test. TNBC patient M2 infiltration was detected by flow cytometry. MALAT1/POSTN levels in EVs/macrophages were regulated by transfection. Hippo/YAP activation was determined by Western blot. Nude mouse xenograft model was established and metastasis was detected by H&E staining. MALAT1/POSTN were up-regulated and correlated with M2 infiltration/poor prognosis in TNBC patients. TNBC-derived EVs induced M2 polarization. MALAT1 was highly expressed in TNBC-derived EVs and could be transferred to macrophages via EVs to induce M2 polarization. POSTN overexpression diminished the inhibitory effect of MALAT1 knockdown on M2 markers. EVs activated the Hippo/YAP pathway in macrophages. The Hippo/YAP pathway inhibition abrogated the effect of POSTN overexpression on M2 marker expression. TNBC-EV-derived MALAT1 facilitated M2 polarization, and thus promoting occurrence and metastasis of TNBC in vitro and in vivo. TNBC-EV-derived MALAT1 activated the Hippo/YAP axis by up-regulating POSTN, thereby inducing M2 polarization to promote TNBC occurrence and metastasis in vivo.
ISSN:1936-5233
1936-5233
DOI:10.1016/j.tranon.2024.102076