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The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice

The lacrimal gland (LG) secretes aqueous tears. Previous studies have provided insights into the cell lineage relationships during tissue morphogenesis. However, little is known about the cell types composing the adult LG and their progenitors. Using scRNAseq, we established the first comprehensive...

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Autores principales: Delcroix, Vanessa, Mauduit, Olivier, Lee, Hyun Soo, Ivanova, Anastasiia, Umazume, Takeshi, Knox, Sarah M., de Paiva, Cintia S., Dartt, Darlene A., Makarenkova, Helen P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10216974/
https://www.ncbi.nlm.nih.gov/pubmed/37408269
http://dx.doi.org/10.3390/cells12101435
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author Delcroix, Vanessa
Mauduit, Olivier
Lee, Hyun Soo
Ivanova, Anastasiia
Umazume, Takeshi
Knox, Sarah M.
de Paiva, Cintia S.
Dartt, Darlene A.
Makarenkova, Helen P.
author_facet Delcroix, Vanessa
Mauduit, Olivier
Lee, Hyun Soo
Ivanova, Anastasiia
Umazume, Takeshi
Knox, Sarah M.
de Paiva, Cintia S.
Dartt, Darlene A.
Makarenkova, Helen P.
author_sort Delcroix, Vanessa
collection PubMed
description The lacrimal gland (LG) secretes aqueous tears. Previous studies have provided insights into the cell lineage relationships during tissue morphogenesis. However, little is known about the cell types composing the adult LG and their progenitors. Using scRNAseq, we established the first comprehensive cell atlas of the adult mouse LG to investigate the cell hierarchy, its secretory repertoire, and the sex differences. Our analysis uncovered the complexity of the stromal landscape. Epithelium subclustering revealed myoepithelial cells, acinar subsets, and two novel acinar subpopulations: Tfrc(hi) and Car6(hi) cells. The ductal compartment contained Wfdc2+ multilayered ducts and an Ltf+ cluster formed by luminal and intercalated duct cells. Kit+ progenitors were identified as: Krt14+ basal ductal cells, Aldh1a1+ cells of Ltf+ ducts, and Sox10+ cells of the Car6(hi) acinar and Ltf+ epithelial clusters. Lineage tracing experiments revealed that the Sox10+ adult populations contribute to the myoepithelial, acinar, and ductal lineages. Using scRNAseq data, we found that the postnatally developing LG epithelium harbored key features of putative adult progenitors. Finally, we showed that acinar cells produce most of the sex-biased lipocalins and secretoglobins detected in mouse tears. Our study provides a wealth of new data on LG maintenance and identifies the cellular origin of sex-biased tear components.
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spelling pubmed-102169742023-05-27 The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice Delcroix, Vanessa Mauduit, Olivier Lee, Hyun Soo Ivanova, Anastasiia Umazume, Takeshi Knox, Sarah M. de Paiva, Cintia S. Dartt, Darlene A. Makarenkova, Helen P. Cells Article The lacrimal gland (LG) secretes aqueous tears. Previous studies have provided insights into the cell lineage relationships during tissue morphogenesis. However, little is known about the cell types composing the adult LG and their progenitors. Using scRNAseq, we established the first comprehensive cell atlas of the adult mouse LG to investigate the cell hierarchy, its secretory repertoire, and the sex differences. Our analysis uncovered the complexity of the stromal landscape. Epithelium subclustering revealed myoepithelial cells, acinar subsets, and two novel acinar subpopulations: Tfrc(hi) and Car6(hi) cells. The ductal compartment contained Wfdc2+ multilayered ducts and an Ltf+ cluster formed by luminal and intercalated duct cells. Kit+ progenitors were identified as: Krt14+ basal ductal cells, Aldh1a1+ cells of Ltf+ ducts, and Sox10+ cells of the Car6(hi) acinar and Ltf+ epithelial clusters. Lineage tracing experiments revealed that the Sox10+ adult populations contribute to the myoepithelial, acinar, and ductal lineages. Using scRNAseq data, we found that the postnatally developing LG epithelium harbored key features of putative adult progenitors. Finally, we showed that acinar cells produce most of the sex-biased lipocalins and secretoglobins detected in mouse tears. Our study provides a wealth of new data on LG maintenance and identifies the cellular origin of sex-biased tear components. MDPI 2023-05-21 /pmc/articles/PMC10216974/ /pubmed/37408269 http://dx.doi.org/10.3390/cells12101435 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Delcroix, Vanessa
Mauduit, Olivier
Lee, Hyun Soo
Ivanova, Anastasiia
Umazume, Takeshi
Knox, Sarah M.
de Paiva, Cintia S.
Dartt, Darlene A.
Makarenkova, Helen P.
The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title_full The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title_fullStr The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title_full_unstemmed The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title_short The First Transcriptomic Atlas of the Adult Lacrimal Gland Reveals Epithelial Complexity and Identifies Novel Progenitor Cells in Mice
title_sort first transcriptomic atlas of the adult lacrimal gland reveals epithelial complexity and identifies novel progenitor cells in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10216974/
https://www.ncbi.nlm.nih.gov/pubmed/37408269
http://dx.doi.org/10.3390/cells12101435
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