Class Effect Unveiled: PPARγ Agonists and MEK Inhibitors in Cancer Cell Differentiation

Author:

Ben-Yishay Rakefet1,Globus Opher1,Balint-Lahat Nora2,Arbili-Yarhi Sheli1,Bar-Hai Neta13ORCID,Bar Vered4,Aharon Sara4,Kosenko Anna4,Zundelevich Adi4,Berger Raanan13,Ishay-Ronen Dana13ORCID

Affiliation:

1. Oncology Institute, Sheba Medical Center, Ramat Gan 5262000, Israel

2. Institute of Pathology, Sheba Medical Center, Ramat Gan 5262000, Israel

3. Faculty of Medicine, Tel Aviv University, Tel Aviv 6997801, Israel

4. Curesponse Ltd., Rehovot 7670102, Israel

Abstract

Epithelial-to-mesenchymal transition (EMT) plays a major role in breast cancer progression and the development of drug resistance. We have previously demonstrated a trans-differentiation therapeutic approach targeting invasive dedifferentiated cancer cells. Using a combination of PPARγ agonists and MEK inhibitors, we forced the differentiation of disseminating breast cancer cells into post-mitotic adipocytes. Utilizing murine breast cancer cells, we demonstrated a broad class effect of PPARγ agonists and MEK inhibitors in inducing cancer cell trans-differentiation into adipocytes. Both Rosiglitazone and Pioglitazone effectively induced adipogenesis in cancer cells, marked by PPARγ and C/EBPα upregulation, cytoskeleton rearrangement, and lipid droplet accumulation. All tested MEK inhibitors promoted adipogenesis in the presence of TGFβ, with Cobimetinib showing the most prominent effects. A metastasis ex vivo culture from a patient diagnosed with triple-negative breast cancer demonstrated a synergistic upregulation of PPARγ with the combination of Pioglitazone and Cobimetinib. Our results highlight the potential for new therapeutic strategies targeting cancer cell plasticity and the dedifferentiation phenotype in aggressive breast cancer subtypes. Combining differentiation treatments with standard therapeutic approaches may offer a strategy to overcome drug resistance.

Funder

ISRAEL CANCER ASSOCIATION

Publisher

MDPI AG

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