Combination radiation and αPD-L1 enhance tumor control by stimulating CD8+ PD-1+ TCF-1+ T cells in the tumor-draining lymph node

Y Yang Shen (Beijing National Laboratory for Condensed Matter Physics, Institute of Physics) E Erin Connolly M Meili Aiello C Chengjing Zhou P Prasanthi Chappa H Haorui Song P Patan Tippitak T Tarralyn Clark M Maria Cardenas N Nataliya Prokhnevska A Annapaola Mariniello I Isabelle De Bruyker M Meghana S. Pagadala V Vishal R. Dhere S Sarwish Rafiq A Aparna H. Kesarwala A Alexandre Orthwein S Susan N. Thomas S Shirley L. Zhang (Department of Cell Biology, Emory University) M Mohammad K. Khan J J. Brandon Dixon G Gregory B. Lesinski M Michael C. Lowe H Haydn Kissick D David S. Yu C Chrystal M. Paulos N Nicole C. Schmitt (Department of Otolaryngology‐Head and Neck Surgery Emory University School of Medicine Atlanta Georgia USA) Z Zachary S. Buchwald

Abstract

Abstract Combination radiotherapy (RT) and αPD-L1 therapy has potential to enhance local and distant (abscopal) tumor control, however, clinical results in humans have been variable. Using murine melanoma models, we found RT + αPD-L1 increases intra-tumor progenitor CD8+ PD-1+ TCF-1+ T cells. This increase depends on trafficking of the PD-1+ TCF-1+ cells from the tumor-draining lymph node (TdLN) to the tumor. RT alone promotes the expansion and differentiation of the TdLN derived PD-1+ TCF-1+ cells into TIM-3+ GZMB+ TCF-1- effector-like cells in the tumor with further enhancement after the addition of αPD-L1. In the TdLN, combination therapy enriches for a novel PD-1+ TCF-1+ TOX- LY6A+ subset with expression of a type I interferon and migratory signature. This subset is able to traffic to the tumor and differentiate into TIM-3+ TCF-1- cells. Finally, we found that ablation of the PD-1+ TCF-1+ T cell population attenuates the enhanced tumor control observed with combination RT + αPD-L1. These results suggest that abscopal response failures may be secondary to impaired stimulation of TdLN CD8+ PD-1 + TCF-1+ T cells or an inability of PD-1+ TCF-1+ cells in the TdLN to traffic to the tumor.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 14, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (28)

Y

Yang Shen

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics

E

Erin Connolly

M

Meili Aiello

C

Chengjing Zhou

P

Prasanthi Chappa

H

Haorui Song

P

Patan Tippitak

T

Tarralyn Clark

M

Maria Cardenas

N

Nataliya Prokhnevska

A

Annapaola Mariniello

I

Isabelle De Bruyker

M

Meghana S. Pagadala

V

Vishal R. Dhere

S

Sarwish Rafiq

A

Aparna H. Kesarwala

A

Alexandre Orthwein

S

Susan N. Thomas

S

Shirley L. Zhang

Department of Cell Biology, Emory University

M

Mohammad K. Khan

J

J. Brandon Dixon

G

Gregory B. Lesinski

M

Michael C. Lowe

H

Haydn Kissick

D

David S. Yu

C

Chrystal M. Paulos

N

Nicole C. Schmitt

Department of Otolaryngology‐Head and Neck Surgery Emory University School of Medicine Atlanta Georgia USA

Z

Zachary S. Buchwald