Depletion of effector regulatory T cells drives major response to induction dual immune checkpoint blockade

Author:

Jiang Xianli,Rudqvist Nils-Petter,Jiang Bo,Ye Shengbin,He Shan,Liang Qingnan,Dou Jinzhuang,Williams Michelle,Dunn Joe DanORCID,Johnson Jason M.,Akagi Keiko,Xiao Weihong,Liang Shaoheng,Elayavalli Satvik,Sun Baohua,Cuentas Edwin Roger Parra,Ferrarotto Renata,Garden Adam,Fuller Clifton,Reddy Jay,Gross Neil,Lango Miriam,Leung Cheuk Hong,Liu Suyu,Liu Diane,Lee J Jack,Curran Michael A.,Phan Jack,Chen Ken,Gillison Maura L.

Abstract

ABSTRACTIn a phase 2 trial, local-regionally advanced HPV-positive oropharyngeal carcinoma (OPC) patients received ipilimumab (anti-CTLA-4) and nivolumab (anti-PD-1) as induction immunotherapy and concurrently with radiotherapy (NCT03799445). Co-primary endpoints achieved included 6-month complete metabolic response rate (94%) and 2-year progression-free survival (84%). Induction yielded a 46% major histological response rate. Single-cell profiling revealed responders had higher baseline intratumoral tissue-resident memory (TRM) CD8+T cells and NK cells expressing Fc Gamma Receptor IIIa (FCGR3A). Decreases in effector regulatory T (eTreg) cells, which highly expressedCTLA4, occurred only in responders, suggesting ipilimumab-dependent depletion byFCGR3A+NK cells. eTreg depletion correlated with increased Interferon Gamma (IFNG)+effector CD8+T cells. CD8+T-cell clonotypes transitioned from TRM to effector memory andIFNG+effector cells in responders, whereas clonotypes transitioned to exhausted TRM and proliferating cells in nonresponders. We conclude that eTreg depletion is critical for major response to induction dual immune checkpoint blockade.

Publisher

Cold Spring Harbor Laboratory

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