bioRxiv · 10.1101/801266
A single-cell transcriptional atlas identifies extensive heterogeneity in the cellular composition of tendons
Abstract
Tendon is a connective tissue that transmits forces between muscles and bones. Cellular heterogeneity is increasingly recognized as an important factor in the biological basis of tissue homeostasis and disease, but little is known about the diversity of cells that populate tendon. Our objective was to explore the heterogeneity of cells in mouse Achilles tendons using single-cell RNA sequencing. We assembled a transcriptomic atlas and identified 11 distinct cell types in tendons, including 3 previously undescribed populations of fibroblasts. Using trajectory inference analysis, we provide additional support for the notion that pericytes are progenitor cells for the fibroblasts that compose adult tendons. We also modeled cell-interactions and identified ligand-receptor pairs involved in tendon homeostasis. Our findings highlight notable heterogeneity between and within tendon cell populations, which may contribute to our understanding of tendon extracellular matrix assembly and maintenance, and inform the design of therapies to treat tendinopathies.
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Swanson, J. B., De Micheli, A. J., Disser, N. P., Martinez, L. M., Walker, N. R., Cosgrove, B. D., Mendias, C. L.. 2019-10-10. A single-cell transcriptional atlas identifies extensive heterogeneity in the cellular composition of tendons. https://doi.org/10.1101/801266
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