Overcoming Irinotecan Resistance by Targeting Its Downstream Signaling Pathways in Colon Cancer

Author:

Saurav Shashank1ORCID,Karfa Sourajeet1,Vu Trung12,Liu Zhipeng1,Datta Arunima1,Manne Upender3ORCID,Samuel Temesgen4ORCID,Datta Pran K.12

Affiliation:

1. Division of Hematology and Oncology, Department of Medicine, UAB Comprehensive Cancer Center, University of Alabama at Birmingham, Birmingham, AL 35233, USA

2. Birmingham Veterans Affairs Medical Center, Birmingham, AL 35233, USA

3. Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35233, USA

4. Department of Pathobiology, Tuskegee University, Tuskegee, AL 36088, USA

Abstract

Among the most popular chemotherapeutic agents, irinotecan, regarded as a prodrug belonging to the camptothecin family that inhibits topoisomerase I, is widely used to treat metastatic colorectal cancer (CRC). Although immunotherapy is promising for several cancer types, only microsatellite-instable (~7%) and not microsatellite-stable CRCs are responsive to it. Therefore, it is important to investigate the mechanism of irinotecan function to identify cellular proteins and/or pathways that could be targeted for combination therapy. Here, we have determined the effect of irinotecan treatment on the expression/activation of tumor suppressor genes (including p15Ink4b, p21Cip1, p27Kip1, and p53) and oncogenes (including OPN, IL8, PD-L1, NF-κB, ISG15, Cyclin D1, and c-Myc) using qRT-PCR, Western blotting, immunofluorescence (IF), and RNA sequencing of tumor specimens. We employed stable knockdown, neutralizing antibodies (Abs), and inhibitors of OPN, p53, and NF-κB to establish downstream signaling and sensitivity/resistance to the cytotoxic activities of irinotecan. Suppression of secretory OPN and NF-κB sensitized colon cancer cells to irinotecan. p53 inhibition or knockdown was not sufficient to block or potentiate SN38-regulated signaling, suggesting p53-independent effects. Irinotecan treatment inhibited tumor growth in syngeneic mice. Analyses of allograft tumors from irinotecan-treated mice validated the cell culture results. RNA-seq data suggested that irinotecan-mediated activation of NF-κB signaling modulated immune and inflammatory genes in mice, which may compromise drug efficacy and promote resistance. In sum, these results suggest that, for CRCs, targeting OPN, NF-κB, PD-L1, and/or ISG15 signaling may provide a potential strategy to overcome resistance to irinotecan-based chemotherapy.

Funder

UAB U54 Full Project

NCI R21 grant

Veterans Affairs Merit Review Award

Research Career Scientist Award

O’Neal Invests Award

Publisher

MDPI AG

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