Frontiers in Immunology (Jan 2025)

Mass cytometry: exploring the immune landscape of systemic autoimmune and inflammatory diseases in the past fourteen years

  • Aïcha Kante,
  • Aïcha Kante,
  • Mathieu F. Chevalier,
  • Damien Sène,
  • Damien Sène,
  • Jeanne Chauffier,
  • Jeanne Chauffier,
  • Stéphane Mouly,
  • Stéphane Mouly,
  • Benjamin Glenn Chousterman,
  • Benjamin Glenn Chousterman,
  • Fériel Azibani,
  • Benjamin Terrier,
  • Benjamin Terrier,
  • Théo Pezel,
  • Théo Pezel,
  • Cloé Comarmond,
  • Cloé Comarmond

DOI
https://doi.org/10.3389/fimmu.2024.1509782
Journal volume & issue
Vol. 15

Abstract

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Auto-immune and inflammatory diseases are heterogenous in their clinical manifestations and prognosis, even among individuals presenting with the same pathology. Understanding the immunological alterations involved in their pathogenesis provides valuable insights in different clinical phenotypes and treatment responses. Immunophenotyping could lead to significant improvements in diagnosis, monitoring, initial treatment decisions and follow-up in autoimmune and inflammatory diseases. Mass cytometry provides measurement of over 40 simultaneous cellular parameters at single-cell resolution, and therefore holds immense potential to evaluate complex cellular systems and for high-dimensional single-cell analysis. The high dimensionality of mass cytometry provides better coverage of immune populations dynamics, with sufficient power to identify rare cell types compared to flow cytometry. In this comprehensive review, we explore how mass cytometry findings contributed in the past decade to a deeper understanding of the cellular actors involved in systemic auto-immune and auto-inflammatory diseases with their respective therapeutic and prognostic impact. We also delve into the bioinformatical approaches applied to mass cytometry to analyze the high volumes of data generated, as well as the impact of the use of complementary single cell RNA sequencing, and their spatial modalities. Our analysis highlights the fact that mass cytometry captures major information on cell populations providing insights on the complex pathogenesis of autoimmune diseases. Future research designs could include mass cytometry findings in association to other -omics to stratify patients in adequate therapeutic arms and provide advancements in personalized therapies in the field of auto-immune and inflammatory diseases.

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