Targeting resistance to radiation-immunotherapy in cold HNSCCs by modulating the Treg-dendritic cell axis.

  • Knitz, Michael W.
  • Bickett, Thomas E.
  • Darragh, Laurel B.
  • Oweida, Ayman J.
  • Bhatia, Shilpa
  • Van Court, Benjamin
  • Bhuvane, Shiv
  • Piper, Miles
  • Gadwa, Jacob
  • Mueller, Adam C.
  • Nguyen, Diemmy
  • Nangia, Varuna
  • Osborne, Douglas G.
  • Bai, Xiyuan
  • Ferrara, Sarah E.
  • Boss, Mary-Keara
  • Goodspeed, Andrew
  • Burchill, Matthew A.
  • Tamburini, Beth A. Jirón
  • Chan, Edward D.
  • Pickering, Curtis R.
  • Clambey, Eric T.
  • Karam, Sana D.
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Publication date
April 2021
Publisher
Jefferson Digital Commons

Abstract

BACKGROUND: Numerous trials combining radiation therapy (RT) and immunotherapy in head and neck squamous cell carcinoma (HNSCC) are failing. Using preclinical immune cold models of HNSCC resistant to RT-immune checkpoint inhibitors, we investigate therapeutic approaches of overcoming such resistance by examining the differential microenvironmental response to RT. METHODS: We subjected two HPV-negative orthotopic mouse models of HNSCC to combination RT, regulatory T cells (Treg) depletion, and/or CD137 agonism. Tumor growth was measured and intratumorous and lymph node immune populations were compared among treatment groups. Human gene sets, genetically engineered mouse models DEREG and BATF3-/-, flow and time-of-flight cytometry, RNA-Seq, T...

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