TY - JOUR
T1 - Organoid Modeling of Mouse Anterior Tongue Epithelium Reveals Regional and Cellular Identities
AU - Kim, Seok Young
AU - Verweij, Laurens H.G.
AU - Lin, Lin
AU - van Es, Johan H.
AU - Slack, Jay
AU - Winkel, Chris
AU - Candelli, Tito
AU - Lijnzaad, Philip
AU - Margaritis, Thanasis
AU - Breimer, Gerben E.
AU - Sanders, Karin
AU - van de Wetering, Marc
AU - Clevers, Hans
N1 - © 2025 The Author(s). Advanced Science published by Wiley‐VCH GmbH.
PY - 2025/12/11
Y1 - 2025/12/11
N2 - The tongue is essential for swallowing, taste perception, and mechanosensation. The anterior and posterior parts of the tongue have region-specific developmental origins and are maintained by adult epithelial stem/progenitor cells. In vitro models that can be used to investigate anterior tongue biology have been lacking. Here, a protocol is developed to generate a long-term expanding organoid model from the adult mouse dorsal anterior tongue. Anterior tongue organoids consist of Lgr6+ cells, Sox2+ stem/progenitor cells, and Hoxc13+ filiform papillae progenitor cells. Furthermore, anterior tongue organoids share region-specific transcriptomic profiles, gene regulatory networks, and signaling pathways with anterior tongue tissue. Anterior tongue organoids can be differentiated into various epithelial cell types, including Merkel-like cells, keratinocytes, and taste bud cells. Gene regulatory network analysis reveals transcriptional programs associated with Krt8+ cell and Krt23+/Sbsn+ keratinocyte differentiation in the organoids. Together, this study provides an in vitro model of mouse dorsal tongue epithelium.
AB - The tongue is essential for swallowing, taste perception, and mechanosensation. The anterior and posterior parts of the tongue have region-specific developmental origins and are maintained by adult epithelial stem/progenitor cells. In vitro models that can be used to investigate anterior tongue biology have been lacking. Here, a protocol is developed to generate a long-term expanding organoid model from the adult mouse dorsal anterior tongue. Anterior tongue organoids consist of Lgr6+ cells, Sox2+ stem/progenitor cells, and Hoxc13+ filiform papillae progenitor cells. Furthermore, anterior tongue organoids share region-specific transcriptomic profiles, gene regulatory networks, and signaling pathways with anterior tongue tissue. Anterior tongue organoids can be differentiated into various epithelial cell types, including Merkel-like cells, keratinocytes, and taste bud cells. Gene regulatory network analysis reveals transcriptional programs associated with Krt8+ cell and Krt23+/Sbsn+ keratinocyte differentiation in the organoids. Together, this study provides an in vitro model of mouse dorsal tongue epithelium.
KW - dorsal tongue
KW - epithelial cell differentiation
KW - organoids
KW - single-cell RNA sequencing
KW - Epithelial Cells/metabolism
KW - Epithelium/metabolism
KW - Taste Buds/cytology
KW - Gene Regulatory Networks
KW - Stem Cells/metabolism
KW - Animals
KW - Cell Differentiation/physiology
KW - Tongue/cytology
KW - Mice
KW - Organoids/cytology
UR - https://www.scopus.com/pages/publications/105018212617
UR - https://www.mendeley.com/catalogue/1af4543d-19b9-3229-9925-98b085f8ae6e/
U2 - 10.1002/advs.202506738
DO - 10.1002/advs.202506738
M3 - Article
C2 - 41020687
AN - SCOPUS:105018212617
SN - 2198-3844
VL - 12
SP - e06738
JO - Advanced Science
JF - Advanced Science
IS - 46
M1 - e06738
ER -