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β-Catenin–regulated myeloid cell adhesion and migration determine wound healing
by
Nadesan, Puviindran
, Hinz, Boris
, Amini-Nik, Saeid
, Cambridge, Elizabeth
, Yu, Winston
, Guo, Anne
, Whetstone, Heather
, Poon, Raymond
, Alman, Benjamin A.
in
Animals
/ beta Catenin - deficiency
/ beta Catenin - genetics
/ beta Catenin - physiology
/ Cell adhesion
/ Cell Adhesion - genetics
/ Cell Adhesion - physiology
/ Cell Lineage - genetics
/ Cell Lineage - physiology
/ Cell migration
/ Cell Movement - genetics
/ Cell Movement - physiology
/ Cicatrix - metabolism
/ Cicatrix - pathology
/ Cicatrix, Hypertrophic - metabolism
/ Cicatrix, Hypertrophic - pathology
/ Genetic aspects
/ Genetic regulation
/ Humans
/ Macrophages
/ Macrophages - cytology
/ Macrophages - physiology
/ Mice
/ Mice, Knockout
/ Mice, Transgenic
/ Myeloid Cells - cytology
/ Myeloid Cells - physiology
/ Skin - injuries
/ Skin - pathology
/ Skin - physiopathology
/ TCF Transcription Factors - genetics
/ TCF Transcription Factors - physiology
/ Transcriptome
/ Transforming Growth Factor beta1 - biosynthesis
/ Wound healing
/ Wound Healing - genetics
/ Wound Healing - physiology
2014
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β-Catenin–regulated myeloid cell adhesion and migration determine wound healing
by
Nadesan, Puviindran
, Hinz, Boris
, Amini-Nik, Saeid
, Cambridge, Elizabeth
, Yu, Winston
, Guo, Anne
, Whetstone, Heather
, Poon, Raymond
, Alman, Benjamin A.
in
Animals
/ beta Catenin - deficiency
/ beta Catenin - genetics
/ beta Catenin - physiology
/ Cell adhesion
/ Cell Adhesion - genetics
/ Cell Adhesion - physiology
/ Cell Lineage - genetics
/ Cell Lineage - physiology
/ Cell migration
/ Cell Movement - genetics
/ Cell Movement - physiology
/ Cicatrix - metabolism
/ Cicatrix - pathology
/ Cicatrix, Hypertrophic - metabolism
/ Cicatrix, Hypertrophic - pathology
/ Genetic aspects
/ Genetic regulation
/ Humans
/ Macrophages
/ Macrophages - cytology
/ Macrophages - physiology
/ Mice
/ Mice, Knockout
/ Mice, Transgenic
/ Myeloid Cells - cytology
/ Myeloid Cells - physiology
/ Skin - injuries
/ Skin - pathology
/ Skin - physiopathology
/ TCF Transcription Factors - genetics
/ TCF Transcription Factors - physiology
/ Transcriptome
/ Transforming Growth Factor beta1 - biosynthesis
/ Wound healing
/ Wound Healing - genetics
/ Wound Healing - physiology
2014
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β-Catenin–regulated myeloid cell adhesion and migration determine wound healing
by
Nadesan, Puviindran
, Hinz, Boris
, Amini-Nik, Saeid
, Cambridge, Elizabeth
, Yu, Winston
, Guo, Anne
, Whetstone, Heather
, Poon, Raymond
, Alman, Benjamin A.
in
Animals
/ beta Catenin - deficiency
/ beta Catenin - genetics
/ beta Catenin - physiology
/ Cell adhesion
/ Cell Adhesion - genetics
/ Cell Adhesion - physiology
/ Cell Lineage - genetics
/ Cell Lineage - physiology
/ Cell migration
/ Cell Movement - genetics
/ Cell Movement - physiology
/ Cicatrix - metabolism
/ Cicatrix - pathology
/ Cicatrix, Hypertrophic - metabolism
/ Cicatrix, Hypertrophic - pathology
/ Genetic aspects
/ Genetic regulation
/ Humans
/ Macrophages
/ Macrophages - cytology
/ Macrophages - physiology
/ Mice
/ Mice, Knockout
/ Mice, Transgenic
/ Myeloid Cells - cytology
/ Myeloid Cells - physiology
/ Skin - injuries
/ Skin - pathology
/ Skin - physiopathology
/ TCF Transcription Factors - genetics
/ TCF Transcription Factors - physiology
/ Transcriptome
/ Transforming Growth Factor beta1 - biosynthesis
/ Wound healing
/ Wound Healing - genetics
/ Wound Healing - physiology
2014
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β-Catenin–regulated myeloid cell adhesion and migration determine wound healing
Journal Article
β-Catenin–regulated myeloid cell adhesion and migration determine wound healing
2014
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Overview
A β-catenin/T cell factor-dependent transcriptional program is critical during cutaneous wound repair for the regulation of scar size; however, the relative contribution of β-catenin activity and function in specific cell types in the granulation tissue during the healing process is unknown. Here, cell lineage tracing revealed that cells in which β-catenin is transcriptionally active express a gene profile that is characteristic of the myeloid lineage. Mice harboring a macrophage-specific deletion of the gene encoding β-catenin exhibited insufficient skin wound healing due to macrophage-specific defects in migration, adhesion to fibroblasts, and ability to produce TGF-β1. In irradiated mice, only macrophages expressing β-catenin were able to rescue wound-healing deficiency. Evaluation of scar tissue collected from patients with hypertrophic and normal scars revealed a correlation between the number of macrophages within the wound, β-catenin levels, and cellularity. Our data indicate that β-catenin regulates myeloid cell motility and adhesion and that β-catenin-mediated macrophage motility contributes to the number of mesenchymal cells and ultimate scar size following cutaneous injury.
Publisher
American Society for Clinical Investigation
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