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Single-cell atlas of the human brain vasculature across development, adulthood and disease

Author

Listed:
  • Thomas Wälchli

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Moheb Ghobrial

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Marc Schwab

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Shigeki Takada

    (University of Toronto
    Kyoto University Graduate School of Medicine
    University of Toronto)

  • Hang Zhong

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Samuel Suntharalingham

    (University of Toronto
    University of Toronto
    University of Toronto)

  • Sandra Vetiska

    (University of Toronto
    University of Toronto)

  • Daymé Rodrigues Gonzalez

    (ETH Zurich/University of Zurich)

  • Ruilin Wu

    (University of Toronto
    University Health Network)

  • Hubert Rehrauer

    (ETH Zurich/University of Zurich)

  • Anuroopa Dinesh

    (Mount Sinai Health System)

  • Kai Yu

    (University of Toronto
    University Health Network)

  • Edward L. Y. Chen

    (Mount Sinai Health System
    University of Toronto)

  • Jeroen Bisschop

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Fiona Farnhammer

    (University of Toronto
    University of Toronto
    University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Ann Mansur

    (University of Toronto
    University of Toronto
    University of Toronto)

  • Joanna Kalucka

    (Aarhus University)

  • Itay Tirosh

    (Weizmann Institute of Science)

  • Luca Regli

    (University Hospital Zurich)

  • Karl Schaller

    (University of Geneva)

  • Karl Frei

    (University of Zurich and University Hospital Zurich
    University Hospital Zurich)

  • Troy Ketela

    (University of Toronto)

  • Mark Bernstein

    (University of Toronto
    University of Toronto)

  • Paul Kongkham

    (University of Toronto
    University of Toronto
    University Health Network)

  • Peter Carmeliet

    (VIB & Department of Oncology, KU Leuven
    Sun Yat-sen University
    Aarhus University)

  • Taufik Valiante

    (University of Toronto
    University of Toronto
    University of Toronto
    University of Toronto)

  • Peter B. Dirks

    (University of Toronto
    University of Toronto
    Hospital for Sick Children)

  • Mario L. Suva

    (Massachusetts General Hospital and Harvard Medical School
    Broad Institute of Harvard and MIT)

  • Gelareh Zadeh

    (University of Toronto
    University of Toronto
    University Health Network)

  • Viviane Tabar

    (Memorial Sloan Kettering Cancer Center)

  • Ralph Schlapbach

    (ETH Zurich/University of Zurich)

  • Hartland W. Jackson

    (Mount Sinai Health System
    University of Toronto
    Ontario Institute of Cancer Research)

  • Katrien Bock

    (Department of Health Sciences and Technology; Swiss Federal Institute of Technology (ETH Zurich))

  • Jason E. Fish

    (University of Toronto
    University Health Network
    University Health Network)

  • Philippe P. Monnier

    (University of Toronto
    Krembil Discovery Tower
    University of Toronto)

  • Gary D. Bader

    (Mount Sinai Health System
    University of Toronto
    University of Toronto
    University of Toronto)

  • Ivan Radovanovic

    (University of Toronto
    University of Toronto
    University of Toronto
    University of Toronto)

Abstract

A broad range of brain pathologies critically relies on the vasculature, and cerebrovascular disease is a leading cause of death worldwide. However, the cellular and molecular architecture of the human brain vasculature remains incompletely understood1. Here we performed single-cell RNA sequencing analysis of 606,380 freshly isolated endothelial cells, perivascular cells and other tissue-derived cells from 117 samples, from 68 human fetuses and adult patients to construct a molecular atlas of the developing fetal, adult control and diseased human brain vasculature. We identify extensive molecular heterogeneity of the vasculature of healthy fetal and adult human brains and across five vascular-dependent central nervous system (CNS) pathologies, including brain tumours and brain vascular malformations. We identify alteration of arteriovenous differentiation and reactivated fetal as well as conserved dysregulated genes and pathways in the diseased vasculature. Pathological endothelial cells display a loss of CNS-specific properties and reveal an upregulation of MHC class II molecules, indicating atypical features of CNS endothelial cells. Cell–cell interaction analyses predict substantial endothelial-to-perivascular cell ligand–receptor cross-talk, including immune-related and angiogenic pathways, thereby revealing a central role for the endothelium within brain neurovascular unit signalling networks. Our single-cell brain atlas provides insights into the molecular architecture and heterogeneity of the developing, adult/control and diseased human brain vasculature and serves as a powerful reference for future studies.

Suggested Citation

  • Thomas Wälchli & Moheb Ghobrial & Marc Schwab & Shigeki Takada & Hang Zhong & Samuel Suntharalingham & Sandra Vetiska & Daymé Rodrigues Gonzalez & Ruilin Wu & Hubert Rehrauer & Anuroopa Dinesh & Kai Y, 2024. "Single-cell atlas of the human brain vasculature across development, adulthood and disease," Nature, Nature, vol. 632(8025), pages 603-613, August.
  • Handle: RePEc:nat:nature:v:632:y:2024:i:8025:d:10.1038_s41586-024-07493-y
    DOI: 10.1038/s41586-024-07493-y
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