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Published on: July 18, 2019
Single-Cell RNA Sequencing Identifies Candidate Renal Resident Macrophage Gene Expression Signatures across Species
Kurt A Zimmerman1, Melissa R Bentley2, Jeremie M Lever3
1Department of Cell, Developmental, and Integrative Biology, zimmermk@uab.edu byoder@uab.edu.
Background:
Resident macrophages regulate homeostatic and disease processes in multiple tissues, including the kidney. Despite having well defined markers to identify these cells in mice, technical limitations have prevented identification of a similar cell type across species. The inability to identify resident macrophage populations across species hinders the translation of data obtained from animal model to human patients.
Methods:
As an entry point to determine novel markers that could identify resident macrophages across species, we performed single-cell RNA sequencing (scRNAseq) analysis of all T and B cell-negative CD45+ innate immune cells in mouse, rat, pig, and human kidney tissue.
Results:
We identified genes with enriched expression in mouse renal resident macrophages that were also present in candidate resident macrophage populations across species. Using the scRNAseq data, we defined a novel set of possible cell surface markers (Cd74 and Cd81) for these candidate kidney resident macrophages. We confirmed, using parabiosis and flow cytometry, that these proteins are indeed enriched in mouse resident macrophages. Flow cytometry data also indicated the existence of a defined population of innate immune cells in rat and human kidney tissue that coexpress CD74 and CD81, suggesting the presence of renal resident macrophages in multiple species.
Conclusions:
Based on transcriptional signatures, our data indicate that there is a conserved population of innate immune cells across multiple species that have been defined as resident macrophages in the mouse. Further, we identified potential cell surface markers to allow for future identification and characterization of this candidate resident macrophage population in mouse, rat, and pig translational studies.
Insights
Researchers identified novel cell surface markers, CD74 and CD81, to identify kidney resident macrophages across species. This finding aids translational studies by enabling consistent identification of these crucial immune cells in mice, rats, and humans.
Area of Science:
- Immunology
- Renal Biology
- Translational Medicine
Background:
- Resident macrophages are vital for kidney homeostasis and disease.
- Identifying these cells across species is challenging due to technical limitations.
- This hinders translating findings from animal models to human patients.
Purpose of the Study:
- To identify novel markers for resident macrophages across species.
- To enable better translation of kidney research between animal models and humans.
Main Methods:
- Single-cell RNA sequencing (scRNAseq) of kidney immune cells from mouse, rat, pig, and human.
- Analysis of gene expression to find conserved markers.
- Confirmation using parabiosis and flow cytometry.
Main Results:
- Identified CD74 and CD81 as potential cell surface markers for kidney resident macrophages.
- Confirmed enrichment of CD74 and CD81 in mouse resident macrophages.
- Observed coexpression of CD74 and CD81 in rat and human kidney immune cells.
Conclusions:
- A conserved population of innate immune cells, analogous to mouse resident macrophages, exists across species.
- CD74 and CD81 are promising markers for identifying and characterizing kidney resident macrophages.
- These markers will facilitate future translational studies in mouse, rat, and pig models.
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