Selective targeting of IRAK1 attenuates low molecular weight hyaluronic acid-induced stemness and non-canonical STAT3 activation in epithelial ovarian cancer

David Standing & Shrikant Anant et al. · 2024-05-25

Abstract

Advanced epithelial ovarian cancer (EOC) survival rates are dishearteningly low, with ~25% surviving beyond 5 years. Evidence suggests that cancer stem cells contribute to acquired chemoresistance and tumor recurrence. Here, we show that IRAK1 is upregulated in EOC tissues, and enhanced expression correlates with poorer overall survival. Moreover, low molecular weight hyaluronic acid, which is abundant in malignant ascites from patients with advanced EOC, induced IRAK1 phosphorylation leading to STAT3 activation and enhanced spheroid formation. Knockdown of IRAK1 impaired tumor growth in peritoneal disease models, and impaired HA-induced spheroid growth and STAT3 phosphorylation. Finally, we determined that TCS2210, a known inducer of neuronal differentiation in mesenchymal stem cells, is a selective inhibitor of IRAK1. TCS2210 significantly inhibited EOC growth in vitro and in vivo both as monotherapy, and in combination with cisplatin. Collectively, these data demonstrate IRAK1 as a druggable target for EOC.

Authors
David Standing, Prasad Dandawate, Sumedha Gunewardena, Obdulia Covarrubias-Zambrano, Katherine F. Roby, Dineo Khabele, Andrea Jewell, Ossama Tawfik, Stefan H. Bossmann, Andrew K. Godwin, Scott J. Weir, Roy A. Jensen, Shrikant Anant
Funding
The Kansas Institute for Precision MedicineThe University of Kansas Cancer CenterKansas University | University of Kansas Medical Center (KUMC) Grant NoneThe University of Kansas Cancer Center

NIGMS NIH HHS

P20 GM130423

NCI NIH HHS

P30 CA168524

U.S. Department of Health & Human Services | NIH | National Cancer Institute

P30 CA168524