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CCR2 macrophage response determines the functional outcome following cardiomyocyte transplantation

  • Praveen Vasudevan
  • , Markus Wolfien
  • , Heiko Lemcke
  • , Cajetan Immanuel Lang
  • , Anna Skorska
  • , Ralf Gaebel
  • , Anne Marie Galow
  • , Dirk Koczan
  • , Tobias Lindner
  • , Wendy Bergmann
  • , Brigitte Mueller-Hilke
  • , Brigitte Vollmar
  • , Bernd Joachim Krause
  • , Olaf Wolkenhauer
  • , Gustav Steinhoff
  • , Robert David*
  • *Korrespondierende/r Autor/-in für diese Arbeit
  • Universitätsmedizin Rostock
  • Universität Rostock
  • Technische Universität Dresden
  • Center for Scalable Data Analytics and Artificial Intelligence
  • FBN
  • Stellenbosch University

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

8 Zitate (Scopus)

Abstract

Background: The immune response is a crucial factor for mediating the benefit of cardiac cell therapies. Our previous research showed that cardiomyocyte transplantation alters the cardiac immune response and, when combined with short-term pharmacological CCR2 inhibition, resulted in diminished functional benefit. However, the specific role of innate immune cells, especially CCR2 macrophages on the outcome of cardiomyocyte transplantation, is unclear. Methods: We compared the cellular, molecular, and functional outcome following cardiomyocyte transplantation in wildtype and T cell- and B cell-deficient Rag2del mice. The cardiac inflammatory response was assessed using flow cytometry. Gene expression profile was assessed using single-cell and bulk RNA sequencing. Cardiac function and morphology were determined using magnetic resonance tomography and immunohistochemistry respectively. Results: Compared to wildtype mice, Rag2del mice show an increased innate immune response at steady state and disparate macrophage response after MI. Subsequent single-cell analyses after MI showed differences in macrophage development and a lower prevalence of CCR2 expressing macrophages. Cardiomyocyte transplantation increased NK cells and monocytes, while reducing CCR2MHC-IIlo macrophages. Consequently, it led to increased mRNA levels of genes involved in extracellular remodelling, poor graft survival, and no functional improvement. Using machine learning-based feature selection, Mfge8 and Ccl7 were identified as the primary targets underlying these effects in the heart. Conclusions: Our results demonstrate that the improved functional outcome following cardiomyocyte transplantation is dependent on a specific CCR2 macrophage response. This work highlights the need to study the role of the immune response for cardiomyocyte cell therapy for successful clinical translation.

OriginalspracheEnglisch
Aufsatznummer61
FachzeitschriftGenome Medicine
Jahrgang15
Ausgabenummer1
DOIs
PublikationsstatusVeröffentlicht - Dez. 2023
Extern publiziertJa

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