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Adjuvant COX inhibition augments STING signaling and cytolytic T cell infiltration in irradiated 4T1 tumors
Lisa A. Ridnour, Robert Y.S. Cheng, Noemi Kedei, Veena Somasundaram, Dibyangana D. Bhattacharyya, Debashree Basudhar, Adelaide L. Wink, Abigail J. Walke, Caleb Kim, William F. Heinz, Elijah F. Edmondson, Donna O. Butcher, Andrew C. Warner, Tiffany H. Dorsey, Milind Pore, Robert J. Kinders, Stanley Lipkowitz, Richard J. Bryant, Jens Rittscher, Stephen T.C. Wong, Stephen M. Hewitt, Jenny C. Chang, Aliaa Shalaby, Grace M. Callagy, Sharon A. Glynn, Stefan Ambs, Stephen K. Anderson, Daniel W. McVicar, Stephen J. Lockett, David A. Wink
Lisa A. Ridnour, Robert Y.S. Cheng, Noemi Kedei, Veena Somasundaram, Dibyangana D. Bhattacharyya, Debashree Basudhar, Adelaide L. Wink, Abigail J. Walke, Caleb Kim, William F. Heinz, Elijah F. Edmondson, Donna O. Butcher, Andrew C. Warner, Tiffany H. Dorsey, Milind Pore, Robert J. Kinders, Stanley Lipkowitz, Richard J. Bryant, Jens Rittscher, Stephen T.C. Wong, Stephen M. Hewitt, Jenny C. Chang, Aliaa Shalaby, Grace M. Callagy, Sharon A. Glynn, Stefan Ambs, Stephen K. Anderson, Daniel W. McVicar, Stephen J. Lockett, David A. Wink
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Research Article Inflammation Oncology

Adjuvant COX inhibition augments STING signaling and cytolytic T cell infiltration in irradiated 4T1 tumors

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Abstract

Immune therapy is the new frontier of cancer treatment. Therapeutic radiation is a known inducer of immune response and can be limited by immunosuppressive mediators including cyclooxygenase-2 (COX2) that is highly expressed in aggressive triple negative breast cancer (TNBC). A clinical cohort of TNBC tumors revealed poor radiation therapeutic efficacy in tumors expressing high COX2. Herein, we show that radiation combined with adjuvant NSAID (indomethacin) treatment provides a powerful combination to reduce both primary tumor growth and lung metastasis in aggressive 4T1 TNBC tumors, which occurs in part through increased antitumor immune response. Spatial immunological changes including augmented lymphoid infiltration into the tumor epithelium and locally increased cGAS/STING1 and type I IFN gene expression were observed in radiation-indomethacin–treated 4T1 tumors. Thus, radiation and adjuvant NSAID treatment shifts “immune desert phenotypes” toward antitumor M1/TH1 immune mediators in these immunologically challenging tumors. Importantly, radiation-indomethacin combination treatment improved local control of the primary lesion, reduced metastatic burden, and increased median survival when compared with radiation treatment alone. These results show that clinically available NSAIDs can improve radiation therapeutic efficacy through increased antitumor immune response and augmented local generation of cGAS/STING1 and type I IFNs.

Authors

Lisa A. Ridnour, Robert Y.S. Cheng, Noemi Kedei, Veena Somasundaram, Dibyangana D. Bhattacharyya, Debashree Basudhar, Adelaide L. Wink, Abigail J. Walke, Caleb Kim, William F. Heinz, Elijah F. Edmondson, Donna O. Butcher, Andrew C. Warner, Tiffany H. Dorsey, Milind Pore, Robert J. Kinders, Stanley Lipkowitz, Richard J. Bryant, Jens Rittscher, Stephen T.C. Wong, Stephen M. Hewitt, Jenny C. Chang, Aliaa Shalaby, Grace M. Callagy, Sharon A. Glynn, Stefan Ambs, Stephen K. Anderson, Daniel W. McVicar, Stephen J. Lockett, David A. Wink

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Figure 3

Antitumor effect of 6 Gy radiation ± INDO in 4T1 tumor–bearing mice.

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Antitumor effect of 6 Gy radiation ± INDO in 4T1 tumor–bearing mice.
(A)...
(A) A single dose of 6 Gy irradiation as well as daily INDO treatments were given on day 7 following tumor injection. After tumor irradiation, the mice were returned to their cage and given INDO (30 mg/L) in the drinking water, which continued for the duration of the experiment. The tumor growth curve shows intermediate growth delays associated with single agent 6 Gy and INDO treatments while 6 Gy + INDO combination treatment abated tumor growth. Two-way ANOVA with Tukey’s multiple-comparison test was used to determine significant changes in tumor growth. (B) Modest enhancement of 6 Gy–induced growth delay by the pan-NOS inhibitor L-NAME. (C) INDO alone and 6 Gy + INDO treatments reduce lung metastatic burden when compared with control untreated mice. One-way ANOVA with Dunnett’s post hoc test was used was used. (D) Improved median survival associated with 6 Gy + INDO combination treatment. P = 0.0271 log rank test for trend. (E) RNA-Seq gene expression showing reduced IL-10 gene expression in INDO and 6 Gy + INDO–treated tumors. One-way ANOVA with Dunnett’s post hoc test were used *P < 0.05.

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