A Fibrin-based Bioengineered Ocular Surface With Human Corneal Epithelial Stem Cells
- 1 July 2002
- journal article
- research article
- Published by Wolters Kluwer Health in Cornea
- Vol. 21 (5) , 505-510
- https://doi.org/10.1097/00003226-200207000-00013
Abstract
The purpose of the investigation was to prepare a bioengineered ocular surface tissue replacement consisting of (presumed) human corneal epithelial stem cells in a cross-linked fibrin gel for potential transplant. Presumed human epithelial stem cells were harvested, isolated, and cultivated as previously described from adult donor corneas obtained from a tissue and organ bank. The cultured corneal epithelial stem cells were suspended in a fibronectin/fibrin gel cross-linked by factor XIII. Plasma components were derived from a fibrinogen-rich cryoprecipitate of human plasma. Suspended cells proliferated in the fibrin gel, giving rise to colonies that eventually coalesced to near confluence over the 15 days of cultivation. The gels were sectioned and immunostained for keratin 3 (AE5) and keratin 19. The fibrin gel product with corneal stem cells was easily manageable and maneuverable. Addition of the protease inhibitor aprotinin to the incubation medium prevented gel degradation; once it was removed, gels disintegrated within 24 hours. All of the cells cultivated in the fibrin gel stained positively for keratin 3 (AE5), indicating differentiation along the corneal epithelium lineage. Cells located in the center of the colonies were keratin 19–positive, suggesting a more primitive cell type. Growth kinetics were documented. A bioengineered ocular surface with a combination of presumed corneal epithelial stem cells in a cross-linked fibrin gel represents a potential improvement in current attempts to create a transportable, pliable, and stable tissue replacement. Since both the cells and the plasma components of the fibrin gel are of human origin, this technique provides the potential for a totally autologous bioengineered replacement tissue.Keywords
This publication has 27 references indexed in Scilit:
- Reconstruction of Damaged Corneas by Transplantation of Autologous Limbal Epithelial CellsNew England Journal of Medicine, 2000
- Successful Transplantation of Bioengineered Tissue Replacements in Patients with Ocular Surface DiseaseCornea, 2000
- Fibronectin peptides in cell migration and wound repairJournal of Clinical Investigation, 2000
- Location and Clonal Analysis of Stem Cells and Their Differentiated Progeny in the Human Ocular SurfaceThe Journal of cell biology, 1999
- Large surface of cultured human epithelium obtained on a dermal matrix based on live fibroblast-containing fibrin gelsBurns, 1998
- Single-Cell Suspensions of Cultured Human Keratinocytes in Fibrin–Glue Reconstitute the EpidermisCell Transplantation, 1998
- Un-cross-linked fibrin substrates inhibit keratinocyte spreading and replication: Correction with fibronectin and factor XIII cross-linkingJournal of Cellular Physiology, 1998
- Influence of proline and hydroxyproline on salt-stressed axillary bud cultures of two varieties of potato (Solanum tuberosum)In Vitro Cellular & Developmental Biology - Plant, 1996
- Existence of slow-cycling limbal epithelial basal cells that can be preferentially stimulated to proliferate: Implications on epithelial stem cellsCell, 1989
- Fibronectin and Fibrin Provide a Provisional Matrix for Epidermal Cell Migration During Wound ReepithelializationJournal of Investigative Dermatology, 1982