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ATR-mediated CD47 and PD-L1 up-regulation restricts radiotherapy-induced immune priming and abscopal responses in colorectal cancer.

Authors :
Hsieh RC
Krishnan S
Wu RC
Boda AR
Liu A
Winkler M
Hsu WH
Lin SH
Hung MC
Chan LC
Bhanu KR
Srinivasamani A
De Azevedo RA
Chou YC
DePinho RA
Gubin M
Vilar E
Chen CH
Slay R
Jayaprakash P
Hegde SM
Hartley G
Lea ST
Prasad R
Morrow B
Couillault CA
Steiner M
Wang CC
Venkatesulu BP
Taniguchi C
Kim YSB
Chen J
Rudqvist NP
Curran MA
Source :
Science immunology [Sci Immunol] 2022 Jun 10; Vol. 7 (72), pp. eabl9330. Date of Electronic Publication: 2022 Jun 10.
Publication Year :
2022

Abstract

Radiotherapy (RT) of colorectal cancer (CRC) can prime adaptive immunity against tumor-associated antigen (TAA)-expressing CRC cells systemically. However, abscopal tumor remissions are extremely rare, and the postirradiation immune escape mechanisms in CRC remain elusive. Here, we found that irradiated CRC cells used ATR-mediated DNA repair signaling pathway to up-regulate both CD47 and PD-L1, which through engagement of SIRPα and PD-1, respectively, prevented phagocytosis by antigen-presenting cells and thereby limited TAA cross-presentation and innate immune activation. This postirradiation CD47 and PD-L1 up-regulation was observed across various human solid tumor cells. Concordantly, rectal cancer patients with poor responses to neoadjuvant RT exhibited significantly elevated postirradiation CD47 levels. The combination of RT, anti-SIRPα, and anti-PD-1 reversed adaptive immune resistance and drove efficient TAA cross-presentation, resulting in robust TAA-specific CD8 T cell priming, functional activation of T effectors, and increased T cell clonality and clonal diversity. We observed significantly higher complete response rates to RT/anti-SIRPα/anti-PD-1 in both irradiated and abscopal tumors and prolonged survival in three distinct murine CRC models, including a cecal orthotopic model. The efficacy of triple combination therapy was STING dependent as knockout animals lost most benefit of adding anti-SIRPα and anti-PD-1 to RT. Despite activation across the myeloid stroma, the enhanced dendritic cell function accounts for most improvements in CD8 T cell priming. These data suggest ATR-mediated CD47 and PD-L1 up-regulation as a key mechanism restraining radiation-induced immune priming. RT combined with SIRPα and PD-1 blockade promotes robust antitumor immune priming, leading to systemic tumor regressions.

Details

Language :
English
ISSN :
2470-9468
Volume :
7
Issue :
72
Database :
MEDLINE
Journal :
Science immunology
Publication Type :
Academic Journal
Accession number :
35687697
Full Text :
https://doi.org/10.1126/sciimmunol.abl9330