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Single-cell transcriptomics and epigenomics unravel the role of monocytes in neuroblastoma bone marrow metastasis

Author

Listed:
  • Irfete S. Fetahu

    (St. Anna Children’s Cancer Research Institute)

  • Wolfgang Esser-Skala

    (University of Salzburg)

  • Rohit Dnyansagar

    (University of Salzburg)

  • Samuel Sindelar

    (University of Salzburg)

  • Fikret Rifatbegovic

    (St. Anna Children’s Cancer Research Institute)

  • Andrea Bileck

    (University of Vienna, Department of Analytical Chemistry, Faculty of Chemistry
    University of Vienna and Medical University of Vienna)

  • Lukas Skos

    (University of Vienna, Department of Analytical Chemistry, Faculty of Chemistry)

  • Eva Bozsaky

    (St. Anna Children’s Cancer Research Institute)

  • Daria Lazic

    (St. Anna Children’s Cancer Research Institute)

  • Lisa Shaw

    (Medical University of Vienna, Department of Dermatology)

  • Marcus Tötzl

    (St. Anna Children’s Cancer Research Institute)

  • Dora Tarlungeanu

    (St. Anna Children’s Cancer Research Institute)

  • Marie Bernkopf

    (St. Anna Children’s Cancer Research Institute)

  • Magdalena Rados

    (St. Anna Children’s Cancer Research Institute)

  • Wolfgang Weninger

    (Medical University of Vienna, Department of Dermatology)

  • Eleni M. Tomazou

    (St. Anna Children’s Cancer Research Institute)

  • Christoph Bock

    (CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences
    Medical University of Vienna, Institute of Artificial Intelligence, Center for Medical Data Science)

  • Christopher Gerner

    (University of Vienna, Department of Analytical Chemistry, Faculty of Chemistry
    University of Vienna and Medical University of Vienna)

  • Ruth Ladenstein

    (St. Anna Children’s Hospital and St. Anna Children’s Cancer Research Institute, Department of Studies and Statistics for Integrated Research and Projects
    Medical University of Vienna, Department of Pediatrics)

  • Matthias Farlik

    (Medical University of Vienna, Department of Dermatology)

  • Nikolaus Fortelny

    (University of Salzburg)

  • Sabine Taschner-Mandl

    (St. Anna Children’s Cancer Research Institute)

Abstract

Metastasis is the major cause of cancer-related deaths. Neuroblastoma (NB), a childhood tumor has been molecularly defined at the primary cancer site, however, the bone marrow (BM) as the metastatic niche of NB is poorly characterized. Here we perform single-cell transcriptomic and epigenomic profiling of BM aspirates from 11 subjects spanning three major NB subtypes and compare these to five age-matched and metastasis-free BM, followed by in-depth single cell analyses of tissue diversity and cell-cell interactions, as well as functional validation. We show that cellular plasticity of NB tumor cells is conserved upon metastasis and tumor cell type composition is NB subtype-dependent. NB cells signal to the BM microenvironment, rewiring via macrophage mgration inhibitory factor and midkine signaling specifically monocytes, which exhibit M1 and M2 features, are marked by activation of pro- and anti-inflammatory programs, and express tumor-promoting factors, reminiscent of tumor-associated macrophages. The interactions and pathways characterized in our study provide the basis for therapeutic approaches that target tumor-to-microenvironment interactions.

Suggested Citation

  • Irfete S. Fetahu & Wolfgang Esser-Skala & Rohit Dnyansagar & Samuel Sindelar & Fikret Rifatbegovic & Andrea Bileck & Lukas Skos & Eva Bozsaky & Daria Lazic & Lisa Shaw & Marcus Tötzl & Dora Tarlungean, 2023. "Single-cell transcriptomics and epigenomics unravel the role of monocytes in neuroblastoma bone marrow metastasis," Nature Communications, Nature, vol. 14(1), pages 1-17, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-39210-0
    DOI: 10.1038/s41467-023-39210-0
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    1. Stefanie Kirchberger & Mohamed R. Shoeb & Daria Lazic & Andrea Wenninger-Weinzierl & Kristin Fischer & Lisa E. Shaw & Filomena Nogueira & Fikret Rifatbegovic & Eva Bozsaky & Ruth Ladenstein & Bernd Bo, 2024. "Comparative transcriptomics coupled to developmental grading via transgenic zebrafish reporter strains identifies conserved features in neutrophil maturation," Nature Communications, Nature, vol. 15(1), pages 1-18, December.

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