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A convergent uPAR-positive tumor ecosystem creates broad vulnerability to CAR T cell therapy

  • Zeda Zhang
  • , Yu Jui Ho
  • , Xin Fang
  • , Minseo Kim
  • , Marguerite Li
  • , Wei Luan
  • , Clemens Hinterleitner
  • , Sascha Haubner
  • , Friederike Kogel
  • , Edwin C. Pratt
  • , Elif Ozcelik
  • , José Reyes
  • , Qingwen Jiang
  • , Vincent W. Yang
  • , Yu Jung Chen
  • , Tao Wang
  • , Haijiao Liu
  • , Haonan Hu
  • , Xueqian Zhuang
  • , Jin Park
  • Stella V. Paffenholz, Kevin Chen, Qing Chang, Amanda Kulick, Jing Zhang, Eric Chan, Eric Rosiek, Ning Fan, Riley A. Williams, Adam C. Wang, Samuel Freeman, Sha Tian, Gertrude Gunset, Andreina Garcia Angus, Nicolas Lecomte, Selma Yeni Yildirim, Emily Ali, Michelle Wu, Ileana C. Miranda, Cristina R. Antonescu, Olca Basturk, Zeynep Tarcan, Natasha Rekhtman, Christina Wilson, Merve Basar, Jennifer L. Sauter, Hikmat A. Al-Ahmadie, Samuel Singer, Christine Iacobuzio-Donahue, Charles Rudin, Elisa de Stanchina, Karuna Ganesh, Paul B. Romesser, Britta Weigelt, Dan Dongeun Huh, Josef Leibold, Judith Feucht, Ignacio Vázquez-García, Matthew J. Bott, Dmitriy Zamarin, Sohrab P. Shah, Jason S. Lewis, Corina Amor, Dana Pe’er, Jorge Mansilla-Soto, Aveline Filliol, Michel Sadelain, Scott W. Lowe
  • Memorial Sloan-Kettering Cancer Center
  • Cornell University
  • Columbia University
  • University of Pennsylvania
  • Rockefeller University
  • University of Tübingen
  • Massachusetts General Hospital
  • Broad Institute
  • Icahn School of Medicine at Mount Sinai
  • Cold Spring Harbor Laboratory
  • Moffitt Cancer Center

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Chimeric antigen receptor (CAR) T cells have transformed hematologic cancer therapy but remain limited in solid tumors by antigen heterogeneity and a suppressive, pro-fibrotic microenvironment. We previously identified the urokinase plasminogen activator receptor (uPAR) as upregulated in senescent, pro-fibrotic cells and showed that uPAR-directed CAR T cells could safely reverse fibrosis in mice. Integrative analyses now reveal that uPAR is broadly expressed in solid tumors enriched for TP53 and RAS pathway mutations. These tumors adopt a progenitor-like state supported by a niche of uPAR-positive stromal cells with senescence features. Human uPAR CAR T cells eliminate tumor cells and their stromal support, induce durable regressions across diverse models, eradicate systemic metastases, and are potentiated by senescence-inducing therapies. Importantly, these cells achieve robust antitumor activity without sustained myelosuppression in mice reconstituted with human immune systems. Together, these findings establish uPAR as a broadly applicable CAR T target capable of overcoming major barriers in solid tumor therapy.

Original languageEnglish
Pages (from-to)2898-2917.e42
JournalCell
Volume189
Issue number10
DOIs
StatePublished - May 14 2026

Keywords

  • CAR T cells
  • fibrosis
  • p53
  • senescence
  • senolytic
  • tumor microenvironment
  • uPAR

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