Hedgehog signaling reprograms hair follicle niche fibroblasts to a hyper-activated state is a research paper published in Developmental Cell (2022). On theSindex it has a DataRank of 0. It has been cited 85 times.
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Ministry of Science and Technology, Taiwan
Grant: 109-2320-B-001-012-MY3
Ministry of Science and Technology, Taiwan
Grant: 110-2326-B-001-004-MY3
LEO Fondet
Grant: AN-0000000062
LEO Fondet
Grant: LF-AW-RAM-19-400008
LEO Fondet
Grant: LF-OC-20-000611
National Science Foundation
Grant: DMS1951144
National Natural Science Foundation of China
Grant: 81773351
National Natural Science Foundation of China
Grant: 82073467
National Natural Science Foundation of China
Grant: 91749114
W. M. Keck Foundation
Grant: WMKF-5634988
Simons Foundation
Grant: 594598
NIH
Grant: DMS1763272
NIH
Grant: P30-AR075047
NIH
Grant: R01-AR079150
NIH
Grant: R01-AR079470
NIH
Grant: R21-AR078939
NIH
Grant: U01-AR073159
NIAMS NIH HHS
Grant: U01 AR073159
LEO Foundation
Grant: LF-AW_RAM-19-400008
NIAMS NIH HHS
Grant: R01 AR079150
NIAMS NIH HHS
Grant: R01 AR079470
NIAMS NIH HHS
Grant: R21 AR078939
NIAMS NIH HHS
Grant: P30 AR075047
National Institutes of Health
Grant: 5P30AR075047-04
Skin Biology Resource-Based Center at UCI
National Science Foundation
Grant: 1763272
NSF-Simons Center for Multiscale Cell Fate Research
National Science Foundation
Grant: 1951144
Collaborative Research: Multi-Scale Modeling and Experimental Study of Hair Follicle Growth Control Mechanisms and Stem Cell Lineage Dynamics
National Institutes of Health
Grant: 5U01AR073159-02
Multiscale Models of Wound Cell Plasticity for Regeneration
National Institutes of Health
Grant: 1R01AR079470-01
Leveraging immune-fibroblast interactions for biomaterial induced skin regeneration
National Institutes of Health
Grant: 1R01AR079150-01A1
Tissue Size and Precision Control in Growing Hair Follicles
National Institutes of Health
Grant: 5R21AR078939-02
Blastema-independent Mechanism for Regeneration in Salamanders
Howard Hughes Medical Institute
NSF
University of California, Irvine
Ministry of Science and Technology of the People's Republic of China
FWCI
15.21
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration
Additional file 1 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration
Additional file 2 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration
Additional file 2 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration
Additional file 3 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration
Additional file 3 of Epithelium-derived SCUBE3 promotes polarized odontoblastic differentiation of dental mesenchymal stem cells and pulp regeneration