PLoS ONE · 2015 · 30 citations · 31 references
Tissue EngineeringEngineeringAdult Stem CellBiofabricationCell CultureBiomedical EngineeringOcular Surface PhysiologyStem Cell BiologySkin RegenerationViable 3DRegenerative MedicineTissue DevelopmentRegenerative BiomaterialsTranslational Tissue EngineeringLong-term CulturesClinical ApplicationsMatrix BiologyStem CellsSkin DevelopmentOphthalmologyRegenerative EngineeringSkin SubstituteStem Cell TherapiesFunctional Tissue EngineeringLimbal Tissue ExplantsCell BiologyOcular TissueTissue RegenerationDevelopmental BiologyStem Cell EngineeringStem Cell ResearchTissue CultureMedicineExtracellular Matrix
Long-term cultures of cornea limbal epithelial stem cells (LESCs) were developed and characterized for future tissue engineering and clinical applications. The limbal tissue explants were cultivated and expanded for more than 3 months in medium containing serum as the only growth supplement and without use of scaffolds. Viable 3D cell outgrowth from the explants was observed within 4 weeks of cultivation. The outgrowing cells were examined by immunofluorescent staining for putative markers of stemness (ABCG2, CK15, CK19 and Vimentin), proliferation (p63α, Ki-67), limbal basal epithelial cells (CK8/18) and differentiated cornea epithelial cells (CK3 and CK12). Morphological and immunostaining analyses revealed that long-term culturing can form stratified 3D tissue layers with a clear extracellular matrix deposition and organization (collagen I, IV and V). The LESCs showed robust expression of p63α, ABCG2, and their surface marker fingerprint (CD117/c-kit, CXCR4, CD146/MCAM, CD166/ALCAM) changed over time compared to short-term LESC cultures. Overall, we provide a model for generating stem cell-rich, long-standing 3D cultures from LESCs which can be used for further research purposes and clinical transplantation.
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Martine Michel, Natalie J. Török, Marie-Josée Godbout et al. · Journal of Cell Science · 1996 · 445 citations
Regenerative Medicine, Skin Development, Developmental Biology +14
Characterization of Putative Stem Cell Phenotype in Human Limbal Epithelia
Zhuo Chen, Cintia S. de Paiva, Lihui Luo et al. · Stem Cells · 2004 · 420 citations · Full text