Senescence Defines a Distinct Subset of Myofibroblasts That Orchestrates Immunosuppression in Pancreatic Cancer

Author:

Belle Jad I.1ORCID,Sen Devashish1ORCID,Baer John M.1ORCID,Liu Xiuting1ORCID,Lander Varintra E.1ORCID,Ye Jiayu2ORCID,Sells Blake E.1ORCID,Knolhoff Brett L.1ORCID,Faiz Ahmad1ORCID,Kang Liang-I134ORCID,Qian Guhan56ORCID,Fields Ryan C.47ORCID,Ding Li1ORCID,Kim Hyun48ORCID,Provenzano Paolo P.56ORCID,Stewart Sheila A.24ORCID,DeNardo David G.134ORCID

Affiliation:

1. Department of Medicine, Washington University School of Medicine, St. Louis, Missouri. 1

2. Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri. 2

3. Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri. 3

4. Siteman Cancer Center, Washington University School of Medicine, St. Louis, Missouri. 4

5. Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota. 5

6. Department of Hematology, Oncology, and Transplantation, University of Minnesota, Minneapolis, Minnesota. 6

7. Department of Surgery, Washington University School of Medicine, St. Louis, Missouri. 7

8. Department of Radiation Oncology, Washington University School of Medicine, St. Louis, Missouri. 8

Abstract

Abstract Pancreatic ductal adenocarcinoma (PDAC) therapeutic resistance is largely attributed to a unique tumor microenvironment embedded with an abundance of cancer-associated fibroblasts (CAF). Distinct CAF populations were recently identified, but the phenotypic drivers and specific impact of CAF heterogeneity remain unclear. In this study, we identify a subpopulation of senescent myofibroblastic CAFs (SenCAF) in mouse and human PDAC. These SenCAFs are a phenotypically distinct subset of myofibroblastic CAFs that localize near tumor ducts and accumulate with PDAC progression. To assess the impact of endogenous SenCAFs in PDAC, we used an LSL-KRASG12D;p53flox;p48-CRE;INK-ATTAC (KPPC-IA) mouse model of spontaneous PDAC with inducible senescent cell depletion. Depletion of senescent stromal cells in genetic and pharmacologic PDAC models relieved immune suppression by macrophages, delayed tumor progression, and increased responsiveness to chemotherapy. Collectively, our findings demonstrate that SenCAFs promote PDAC progression and immune cell dysfunction. Significance: CAF heterogeneity in PDAC remains poorly understood. In this study, we identify a novel subpopulation of senescent CAFs that promotes PDAC progression and immunosuppression. Targeting CAF senescence in combination therapies could increase tumor vulnerability to chemo or immunotherapy. See related article by Ye et al., p. 1302.

Funder

Canadian Institutes of Health Research

National Cancer Institute

National Institutes of Health

DOD Breast Cancer Research Program

Foundation for Barnes-Jewish Hospital

Publisher

American Association for Cancer Research (AACR)

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