TY - JOUR
T1 - Wnt/β-Catenin Inhibition Disrupts Carboplatin Resistance in Isogenic Models of Triple-Negative Breast Cancer
AU - Abreu de Oliveira, Willy Antoni
AU - Moens, Stijn
AU - el Laithy, Youssef
AU - van der Veer, Bernard K.
AU - Athanasouli, Paraskevi
AU - Cortesi, Emanuela Elsa
AU - Baietti, Maria Francesca
AU - Koh, Kian Peng
AU - Ventura, Juan-Jose
AU - Amant, Frédéric
AU - Annibali, Daniela
AU - Lluis, Frederic
N1 - Funding Information:
WO and BV are funded by the Research Foundation-Flanders with Ph.D. fellowships 1155619N and 11E7920N, respectively. EC holds a fellowship from Stichting Tegen Kanker – the Belgian Foundation against Cancer (FAF-F/2016/822, fellowship number ZKD2498-00-W02). The authors would like to extend their gratitude to the Research Foundation – Flanders (FWO) for the G091521N grant (FL and DA) and to Jo Van Biesbroeck, the breast cancer research fund Nadine de Beauffort and the KU Leuven Research Fund (C24/17/073) for funding the development of the models used in this research study (FA). FA is a senior researcher for the Research Foundation-Flanders (FWO). Trace staff is supported by the Stichting Tegen Kanker grant 2016-054.
Publisher Copyright:
© Copyright © 2021 Abreu de Oliveira, Moens, El Laithy, van der Veer, Athanasouli, Cortesi, Baietti, Koh, Ventura, Amant, Annibali and Lluis.
Copyright:
Copyright 2021 Elsevier B.V., All rights reserved.
PY - 2021/7/22
Y1 - 2021/7/22
N2 - Triple-Negative Breast Cancer (TNBC) is the most aggressive breast cancer subtype, characterized by limited treatment options and higher relapse rates than hormone-receptor-positive breast cancers. Chemotherapy remains the mainstay treatment for TNBC, and platinum salts have been explored as a therapeutic alternative in neo-adjuvant and metastatic settings. However, primary and acquired resistance to chemotherapy in general and platinum-based regimens specifically strongly hampers TNBC management. In this study, we used carboplatin-resistant in vivo patient-derived xenograft and isogenic TNBC cell-line models and detected enhanced Wnt/β-catenin activity correlating with an induced expression of stem cell markers in both resistant models. In accordance, the activation of canonical Wnt signaling in parental TNBC cell lines increases stem cell markers’ expression, formation of tumorspheres and promotes carboplatin resistance. Finally, we prove that Wnt signaling inhibition resensitizes resistant models to carboplatin both in vitro and in vivo, suggesting the synergistic use of Wnt inhibitors and carboplatin as a therapeutic option in TNBC. Here we provide evidence for a prominent role of Wnt signaling in mediating resistance to carboplatin, and we establish that combinatorial targeting of Wnt signaling overcomes carboplatin resistance enhancing chemotherapeutic drug efficacy.
AB - Triple-Negative Breast Cancer (TNBC) is the most aggressive breast cancer subtype, characterized by limited treatment options and higher relapse rates than hormone-receptor-positive breast cancers. Chemotherapy remains the mainstay treatment for TNBC, and platinum salts have been explored as a therapeutic alternative in neo-adjuvant and metastatic settings. However, primary and acquired resistance to chemotherapy in general and platinum-based regimens specifically strongly hampers TNBC management. In this study, we used carboplatin-resistant in vivo patient-derived xenograft and isogenic TNBC cell-line models and detected enhanced Wnt/β-catenin activity correlating with an induced expression of stem cell markers in both resistant models. In accordance, the activation of canonical Wnt signaling in parental TNBC cell lines increases stem cell markers’ expression, formation of tumorspheres and promotes carboplatin resistance. Finally, we prove that Wnt signaling inhibition resensitizes resistant models to carboplatin both in vitro and in vivo, suggesting the synergistic use of Wnt inhibitors and carboplatin as a therapeutic option in TNBC. Here we provide evidence for a prominent role of Wnt signaling in mediating resistance to carboplatin, and we establish that combinatorial targeting of Wnt signaling overcomes carboplatin resistance enhancing chemotherapeutic drug efficacy.
KW - WNT pathway
KW - cancer stem cells
KW - patient-derived xenograft models
KW - platinum-resistance
KW - triple negative breast cancer
UR - https://www.scopus.com/pages/publications/85112646344
U2 - 10.3389/fonc.2021.705384
DO - 10.3389/fonc.2021.705384
M3 - Article
C2 - 34367990
SN - 2234-943X
VL - 11
JO - Frontiers in oncology
JF - Frontiers in oncology
M1 - 705384
ER -