A Model of Corrective Gene Transfer in X-Linked Ichthyosis
Open Access
- 1 June 1997
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 6 (6) , 927-933
- https://doi.org/10.1093/hmg/6.6.927
Abstract
Single gene recessive genetic skin disorders offer attractive prototypes for the development of therapeutic cutaneous gene delivery. We have utilized X-linked ichthyosis (XLI), characterized by loss of function of the steroid sulfatase arylsulfatase C (STS), to develop a model of corrective gene delivery to human skin in vivo. A new retroviral expression vector was produced and utilized to effect STS gene transfer to primary keratinocytes from XLI patients. Transduction was associated with restoration of full-length STS protein expression as well as steroid sulfatase enzymatic activity in proportion to the number of proviral integrations in XLI cells. Transduced and uncorrected XLI keratinocytes, along with normal controls, were then grafted onto immunodeficient mice to regenerate full thickness human epidermis. Unmodified XLI keratinocytes regenerated a hyperkeratotic epidermis lacking STS expression with defective skin barrier function, effectively recapitulating the human disease in vivo. Transduced XLI keratinocytes from the same patients, however, regenerated epidermis histologically indistinguishable from that formed by keratinocytes from patients with normal skin. Transduced XLI epidermis demonstrated STS expression in vivo by immunostaining as well as a normalization of histologic appearance at 5 weeks post-grafting. In addition, transduced XLI epidermis demonstrated a return of barrier function parameters to normal. These findings demonstrate corrective gene delivery in human XLI patient skin tissue at both molecular and functional levels and provide a model of human cutaneous gene therapy.Keywords
This publication has 32 references indexed in Scilit:
- Evaluation of Human Skin Reconstituted from Composite Grafts of Cultured Keratinocytes and Human Acellular Dermis Transplanted to Athymic MiceJournal of Investigative Dermatology, 1996
- Gene Therapy's Growing PainsScience, 1995
- Genetically Modified Skin to Treat Disease: Potential and Limitations.Journal of Investigative Dermatology, 1994
- Systemic Delivery of Secreted Protein by Grafts of Epidermal Keratinocytes: Prospects for Keratinocyte Gene TherapyHuman Gene Therapy, 1994
- Correction of Steroid Sulfatase Deficiency by Gene Transfer into Basal Cells of Tissue-Cultured Epidermis from Patients with Recessive X-Linked IchthyosisExperimental Cell Research, 1993
- Heterogeneity in Harlequin Ichthyosis, an Inborn Error of Epidermal Keratinization: Variable Morphology and Structural Protein Expression and a Defect in Lamellar GranulesJournal of Investigative Dermatology, 1990
- Molecular studies of deletions at the human steroid sulfatase locus.Proceedings of the National Academy of Sciences, 1989
- Genetically Transmitted, Generalized Disorders of CornificationDermatologic Clinics, 1987
- A new syndrome of anosmia, ichthyosis, hypogonadism, and various neurological manifestations with deficiency of steroid sulfatase and arylsulfatase CAnnals of Neurology, 1986
- Permanent Coverage of Large Burn Wounds with Autologous Cultured Human EpitheliumNew England Journal of Medicine, 1984