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Single-cell multiomic dissection of response and resistance to chimeric antigen receptor T cells against BCMA in relapsed multiple myeloma

  • Michael Rade,
  • Nora Grieb,
  • Ronald Weiss,
  • Jaren Sia,
  • Luise Fischer,
  • Patrick Born,
  • Andreas Boldt,
  • Stephan Fricke,
  • Paul Franz,
  • Jonathan Scolnick,
  • Lakshmi Venkatraman,
  • Stacy Xu,
  • Christina Kloetzer,
  • Simone Heyn,
  • Anne Sophie Kubasch,
  • Ronny Baber,
  • Song Yau Wang,
  • Enrica Bach,
  • Sandra Hoffmann,
  • Jule Ussmann,
  • Birthe Schetschorke,
  • Saskia Hell,
  • Sebastian Schwind,
  • Klaus H. Metzeler,
  • Marco Herling,
  • Madlen Jentzsch,
  • Georg-Nikolaus Franke,
  • Ulrich Sack,
  • Ulrike Köhl,
  • Uwe Platzbecker,
  • Kristin Reiche,
  • Vladan Vucinic,
  • Maximilian Merz

摘要

Markers that predict response and resistance to chimeric antigen receptor (CAR) T cells in relapsed/refractory multiple myeloma are currently missing. We subjected mononuclear cells isolated from peripheral blood and bone marrow before and after the application of approved B cell maturation antigen-directed CAR T cells to single-cell multiomic analyses to identify markers associated with resistance and early relapse. Differences between responders and nonresponders were identified at the time of leukapheresis. Nonresponders showed an immunosuppressive microenvironment characterized by increased numbers of monocytes expressing the immune checkpoint molecule CD39 and suppressed CD8+ T cell and natural killer cell function. Analysis of CAR T cells showed cytotoxic and exhausted phenotypes in hyperexpanded clones compared to low/intermediate expanded clones. We identified potential immunotherapy targets on CAR T cells, like PD1, to improve their functionality and durability. Our work provides evidence that an immunosuppressive microenvironment causes resistance to CAR T cell therapies in multiple myeloma.