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Data from Unique Neoantigens Arise from Somatic Mutations in Patients with Gastrointestinal Cancers

Authors :
Steven A. Rosenberg
Robert P.T. Somerville
John R. Wunderlich
Mojgan Ahmadzadeh
Parisa Malekzadeh
Drew C. Deniger
Gal Cafri
Winifred Lo
Stephanie L. Goff
Frank J. Lowery
Rami Yossef
Anna Pasetto
Scott Kivitz
Lien T. Ngo
Satyajit Ray
Eric Groh
Abraham Sachs
Jessica S. Crystal
Almin Lalani
Mona El-Gamil
Yong F. Li
Gabriel Ivey
Li Jia
Jared J. Gartner
Todd D. Prickett
Eric Tran
Paul F. Robbins
Maria R. Parkhurst
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

Abstract

Immunotherapies can mediate regression of human tumors with high mutation rates, but responses are rarely observed in patients with common epithelial cancers. This raises the question of whether patients with these common cancers harbor T lymphocytes that recognize mutant proteins expressed by autologous tumors that may represent ideal targets for immunotherapy. Using high-throughput immunologic screening of mutant gene products identified via whole-exome sequencing, we identified neoantigen-reactive tumor-infiltrating lymphocytes (TIL) from 62 of 75 (83%) patients with common gastrointestinal cancers. In total, 124 neoantigen-reactive TIL populations were identified, and all but one of the neoantigenic determinants were unique. The results of in vitro T-cell recognition assays demonstrated that 1.6% of the gene products encoded by somatic nonsynonymous mutations were immunogenic. These findings demonstrate that the majority of common epithelial cancers elicit immune recognition and open possibilities for cell-based immunotherapies for patients bearing these cancers.Significance:TILs cultured from 62 of 75 (83%) patients with gastrointestinal cancers recognized neoantigens encoded by 1.6% of somatic mutations expressed by autologous tumor cells, and 99% of the neoantigenic determinants appeared to be unique and not shared between patients.This article is highlighted in the In This Issue feature, p. 983

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........6a2a4ddb459878d5287a4a96915ed83c
Full Text :
https://doi.org/10.1158/2159-8290.c.6547957.v1