Particle-mediated gene transfer with transforming growth factor-beta1 cDNAs enhances wound repair in rat skin.
Open Access
- 15 December 1996
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 98 (12) , 2894-2902
- https://doi.org/10.1172/jci119118
Abstract
Based on preliminary but variable results with direct DNA transfer into wounds, we evaluated in vivo gene transfer by particle-mediated DNA delivery to rat skin to determine whether overexpression of TGF-beta1 at the site of skin incisions would result in a significant improvement in repair. Optimization of the method with viral promoter-luciferase reporter constructs indicated that expression of luciferase activity persisted up to 5 d and was promoter, pressure, and site dependent (ventral > dorsal). Using cytomegalovirus (CMV)-driven human alpha1-antitrypsin, transgene expression was immunolocalized within keratinocytes of the stratum granulosum at 24 h. We measured tensile strength of skin incisions at 11-21 d in both normal and diabetic rats transfected with TGF-beta1 expression vectors at surgery. Native murine TGF-beta1 under an SV40 promoter produced positive effects, while wound strengthening was more pronounced in diabetic animals using a CMV-driven construct. Transfection of rat skin with constitutively active, mutant porcine TGF-beta1 under the control of the CMV and Moloney murine leukemia virus promoters significantly increased tensile strength up to 80% for 14-21 d after surgery. Transfection 24 h before surgery was more effective. Particle-mediated gene delivery can be used to deliver viral promoter-cytokine expression constructs into rat skin in a safe, efficient, and reproducible fashion. The extent of wound repair, as evidenced by enhanced tensile strength, can be markedly improved in tissues transfected with TGF-beta1 expression constructs.Keywords
This publication has 46 references indexed in Scilit:
- Gene transfer into human thyroid follicular cellsThe Laryngoscope, 1994
- In vivo and ex vivo gene transfer to the brainCurrent Opinion in Neurobiology, 1994
- Factors Influencing Retroviral-Mediated Gene Transfer into HepatocytesIn VivoHuman Gene Therapy, 1994
- Ex vivo expansion and selection of retrovirally transduced bone marrow: an efficient methodology for gene‐transfer to murine lympho‐haemopoietic stem cellsBritish Journal of Haematology, 1994
- Plasmid DNA Is Superior to Viral Vectors for Direct Gene Transfer into Adult Mouse Skeletal MuscleHuman Gene Therapy, 1993
- Heterologous Protection Against Influenza by Injection of DNA Encoding a Viral ProteinScience, 1993
- TGF‐β receptorsMolecular Reproduction and Development, 1992
- Connective tissue growth factor: a cysteine-rich mitogen secreted by human vascular endothelial cells is related to the SRC-induced immediate early gene product CEF-10.The Journal of cell biology, 1991
- Direct Gene Transfer into Mouse Muscle in VivoScience, 1990
- Accelerated Healing of Incisional Wounds in Rats Induced by Transforming Growth Factor-βScience, 1987