Fussel-15, a New Player in Wound Healing, Is Deregulated in Keloid and Localized Scleroderma

Arndt, Stephanie and Schmidt, Johanna and Wacker, Eva and Karrer, Sigrid and Bosserhoff, Anja-Katrin (2011) Fussel-15, a New Player in Wound Healing, Is Deregulated in Keloid and Localized Scleroderma. AMERICAN JOURNAL OF PATHOLOGY, 178 (6). pp. 2622-2631. ISSN 0002-9440,

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Abstract

Dermal wound healing depends on highly complex interplay among various cytokines and cell types. Disruption of this process can result in impaired healing in the form of excessive scarring, as is the case in fibrotic diseases such as keloid and scleroderrna. In the present study, we found Fussel-15, a new member of the Ski/Sno family of TGF-beta/BMP signaling repressors, to be expressed in early wound healing and constantly over-expressed in keloid-derived and scleroderma-derived fibroblasts. Comparing the results of three-dimensional free-floating and attached-released in vitro wound healing assays, we observed that Fussel-15 is expressed during the migratory phase in the free-floating assay, indicating that Fussel-15 might play a role during fibroblast migration. Fussel-15-transfected fibroblasts showed greater migration ability in a scratch wound healing assay, compared with control-transfected cells. This migratory phenotype due to Fussel-15 was confirmed by increased peripheral F-actin localization and modifications in size, amount, and distribution of focal adhesion complexes, which were observed using F-actin and focal adhesion kinase (FAK) immunofluorescence staining, respectively. The present results suggest that expression of Fussel-15 during wound healing might promote fibroblast migration. Permanent expression of Fussel-15 in keloid and skin sclerosis fibroblasts could be involved in the pathogenesis of these conditions, but the molecular mechanism underlying this up-regulation remains to be determined. (Am J Pathol 2011, 178:2622-2631; DOI: 10.1016/j.ajpath.2011.02.009)

Item Type: Article
Uncontrolled Keywords: COLLAGEN LATTICES; C-SKI; FIBROBLASTS; EXPRESSION; CONTRACTION; REPAIR; CELLS;
Subjects: 600 Technology > 610 Medical sciences Medicine
Divisions: Medicine > Lehrstuhl für Dermatologie und Venerologie
Medicine > Lehrstuhl für Pathologie
Depositing User: Dr. Gernot Deinzer
Date Deposited: 09 Jun 2020 08:29
Last Modified: 09 Jun 2020 08:29
URI: https://pred.uni-regensburg.de/id/eprint/20681

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