Literature DB >> 15659037

Transforming growth factor-beta and its effect on reepithelialization of partial-thickness ear wounds in transgenic mice.

Eric B Tredget1, Jack Demare, Geethan Chandran, Edward E Tredget, Liju Yang, Aziz Ghahary.   

Abstract

Transforming growth factor-beta (TGF-beta) is known to affect nearly every aspect of wound repair. Many of the effects have been extensively investigated; however, the primary effect of endogenously derived TGF-beta on wound reepithelialization is still not completely understood. To examine this, two types of wounds were made on a transgenic mouse over-expressing TGF-beta1. Full-thickness back wounds were made to compare the wound healing process in the presence of compensatory healing mechanisms. Superficial partial-thickness ear wounds involving only the epidermis were made to determine the effect of TGF-beta on reepithelialization. In the partial-thickness ear wounds, at later time points, the transgenic group had smaller epithelial gaps than the wild-type mice. A greater number of actively proliferating cells, as determined by bromodeoxyuridine incorporation, was also found in the transgenic mice at post-injury day 8. These results show that TGF-beta1 stimulates the rate of reepithelialization at later time points in partial-thickness wounds. However, in the full-thickness back wounds, the transgenic animals exhibited a slower reepithelialization rate at all time points and the number of bromodeoxyuridine-positive cells was fewer. Our findings would suggest that the overexpression of TGF-beta1 speeds the rate of wound closure in partial-thickness wounds by promoting keratinocyte migration. In full-thickness wounds, however, the overexpression of TGF-beta1 slows the rate of wound reepithelialization.

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Year:  2005        PMID: 15659037     DOI: 10.1111/j.1067-1927.2005.130108.x

Source DB:  PubMed          Journal:  Wound Repair Regen        ISSN: 1067-1927            Impact factor:   3.617


  27 in total

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Review 2.  Integrin-TGF-beta crosstalk in fibrosis, cancer and wound healing.

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4.  Re-epithelialization of cutaneous wounds in adult zebrafish combines mechanisms of wound closure in embryonic and adult mammals.

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5.  Development of a novel formulation with hypericin to treat cutaneous leishmaniasis based on photodynamic therapy in in vitro and in vivo studies.

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6.  Delayed re-epithelialization in Ppm1a gene-deficient mice is mediated by enhanced activation of Smad2.

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7.  Distinct early inflammatory events during ear tissue regeneration in mice selected for high inflammation bearing Slc11a1 R and S alleles.

Authors:  Tatiane Canhamero; Brandon Reines; Luciana C Peters; Andrea Borrego; Patricia S Carneiro; Layra L Albuquerque; Wafa H Cabrera; Orlando G Ribeiro; Jose R Jensen; Nancy Starobinas; Olga M Ibañez; Marcelo De Franco
Journal:  Inflammation       Date:  2011-10       Impact factor: 4.092

8.  New approach of bone marrow-derived mesenchymal stem cells and human amniotic epithelial cells applications in accelerating wound healing of irradiated albino rats.

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Review 9.  The Role of TGFβ Signaling in Wound Epithelialization.

Authors:  Horacio Ramirez; Shailee B Patel; Irena Pastar
Journal:  Adv Wound Care (New Rochelle)       Date:  2014-07-01       Impact factor: 4.730

10.  Interleukin (IL)-6 modulates transforming growth factor-beta expression in skin and dermal fibroblasts from IL-6-deficient mice.

Authors:  L R Luckett-Chastain; R M Gallucci
Journal:  Br J Dermatol       Date:  2009-04-29       Impact factor: 9.302

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