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Spatial Single Cell Profiling Using Imaging Mass Cytometry: Inflammatory Versus Penetrating Crohn's Disease
Malte Lehmann1, Benjamin Weixler2, Sefer Elezkurtaj3
1Department of Gastroenterology, Infectious Diseases and Rheumatology, Charité - Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität zu Berlin, Campus Benjamin Franklin, Hindenburgdamm 30, 12200, Berlin, Germany.
Insights
Crohn's disease fistulas show increased neutrophils expressing MMP9 and effector T cells, alongside decreased regulatory T cells, compared to colitis. This highlights immune cell roles in extracellular matrix remodeling in fistulas.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Fistula formation is a significant complication in Crohn's disease (CD).
- The precise role of immune cells in CD fistula pathogenesis is not fully understood.
- Comparing immune cell compartments in CD fistulas versus CD colitis is crucial for understanding disease mechanisms.
Purpose of the Study:
- To compare the immune cell compartment in Crohn's disease (CD) fistulas with CD colitis and non-inflamed controls.
- To elucidate the spatial context and interactions of immune cells within CD fistulas.
- To identify potential therapeutic targets for CD complications.
Main Methods:
- Utilized a 36-marker panel for imaging mass cytometry (IMC) on paraffin-embedded tissue.
- Analyzed samples from CD fistula tracts (n=11), CD colitis (n=10), and controls (n=12).
- Employed computational methods for cell segmentation, clustering, and spatial analysis, complemented by multiplex immunofluorescence.
Main Results:
- CD fistulas exhibited increased neutrophils, effector cytotoxic T cells, and inflammatory macrophages, with decreased regulatory T cells compared to controls and colitis.
- Neutrophils in CD fistulas showed higher expression of matrix metalloproteinase 9 (MMP9), linked to extracellular matrix remodeling.
- Spatial analysis revealed a strong association between MMP9+ neutrophils and effector cytotoxic T cells in both CD fistulas and colitis.
Conclusions:
- This study provides the first highly multiplexed single-cell analysis of the immune cell compartment in CD fistulas.
- It links immune cell dynamics, particularly MMP9+ neutrophils, to extracellular matrix remodeling in CD fistulas.
- Findings offer insights into cellular interactions and potential therapeutic strategies for CD complications.
Background And Aims:
Fistula formation is a major complication in Crohn's disease [CD] and the role of the immune cell compartment remains to be elucidated. Thus, we compared the immune cell compartment of CD fistula to inflammatory CD colitis using imaging mass cytometry [IMC] and immunofluorescence.
Methods:
A 36-marker panel including structural, functional, and lineage markers for use in IMC was established. This panel was applied to analyse paraffin-embedded CD fistula tract [n = 11], CD colitis [n = 10], and colon samples from non-inflamed controls [n = 12]. Computational methods for cell segmentation, dimensionality reduction, and cell type clustering were used to define cell populations for cell frequency, marker distribution, and spatial neighbourhood analysis. Multiplex immunofluorescence was used for higher resolution spatial analysis.
Results:
Analysis of cell frequencies in CD fistulas compared to CD colitis and control colonic samples revealed a significant increase in neutrophils, effector cytotoxic T cells, and inflammatory macrophages in CD fistula samples, whereas regulatory T cells were decreased. Neutrophils in CD fistula expressed significantly more matrix metalloproteinase 9 [MMP9], correlating with extracellular matrix remodelling. Neighbourhood analysis revealed a strong association between MMP9+ neutrophils and effector cytotoxic T cells in both CD fistulas and colitis.
Conclusions:
This study presents the first highly multiplexed single cell analysis of the immune cell compartment of CD fistulas and their spatial context. It links immune cell dynamics, particularly MMP9+ neutrophils, to extracellular matrix remodelling in CD fistulas, offering insights into the complex network of cellular interactions and potential therapeutic targets for CD complications.
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