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1.
PLoS One ; 10(6): e0128973, 2015.
Article in English | MEDLINE | ID: mdl-26107378

ABSTRACT

PURPOSE: To investigate the safety and efficacy of subretinal injection of human Wharton's Jelly-derived mesenchymal stem cells (hWJ-MSCs) on retinal structure and function in Royal College of Surgeons (RCS) rats. METHODS: RCS rats were divided into 2 groups: hWJ-MSCs treated group (n = 8) and placebo control group (n = 8). In the treatment group, hWJ-MSCs from healthy donors were injected into the subretinal space in one eye of each rat at day 21. Control group received saline injection of the same volume. Additional 3 animals were injected with nanogold-labelled stem cells for in vivo tracking of cells localisation using a micro-computed tomography (microCT). Retinal function was assessed by electroretinography (ERG) 3 days before the injection and repeated at days 15, 30 and 70 after the injection. Eyes were collected at day 70 for histology, cellular and molecular studies. RESULTS: No retinal tumor formation was detected by histology during the study period. MicroCT scans showed that hWJ-MSCs stayed localised in the eye with no systemic migration. Transmission electron microscopy showed that nanogold-labelled cells were located within the subretinal space. Histology showed preservation of the outer nuclear layer (ONL) in the treated group but not in the control group. However, there were no significant differences in the ERG responses between the groups. Confocal microscopy showed evidence of hWJ-MSCs expressing markers for photoreceptor, Müller cells and bipolar cells. CONCLUSIONS: Subretinal injection of hWJ-MSCs delay the loss of the ONL in RCS rats. hWJ-MSCs appears to be safe and has potential to differentiate into retinal-like cells. The potential of this cell-based therapy for the treatment of retinal dystrophies warrants further studies.


Subject(s)
Mesenchymal Stem Cells/physiology , Retina/pathology , Retinal Degeneration/therapy , Stem Cell Transplantation , Animals , Biomarkers/metabolism , Electroretinography , Gene Expression , Gold/chemistry , Humans , Injections, Intraocular , Mesenchymal Stem Cells/cytology , Metal Nanoparticles/chemistry , Rats , Retina/metabolism , Retinal Degeneration/metabolism , Retinal Degeneration/pathology , Staining and Labeling/methods , Transplantation, Heterologous , Wharton Jelly/cytology , Wharton Jelly/physiology , X-Ray Microtomography
2.
Cell Tissue Bank ; 15(4): 619-26, 2014 Dec.
Article in English | MEDLINE | ID: mdl-24633432

ABSTRACT

The purpose of this study was to compare the use of autologous fibrin to human amniotic membrane (HAM) as a scaffold in cultivating autologous conjunctiva for transplantation in treatment of conjunctival defect. An experimental study was performed using 18 adult New Zealand white strain rabbits which were divided into 3 groups. Each group consists of 6 rabbits. The conjunctiva on the temporal site was excised to create a conjunctival epithelial defect. The excised area in the Group 1 was transplanted with autologous conjunctiva cultivated on autologous fibrin; Group 2 was transplanted with autologous conjunctiva cultivated on HAM and Group 3 was left bare. The rabbits were followed up at regular intervals until 6 weeks. The mean period of complete conjunctival epithelization was 11.50 ± 8.22 days for the autologous fibrin group, 15.33 ± 11.80 days for the HAM group and 25.33 ± 5.32 days in the bare sclera group. The epithelization rate for the autologous fibrin group was faster compared to the other two groups. However all the results were not statistically significant (p value >0.05). There were no postoperative complications noted during the follow up. Autologous fibrin is comparable to HAM as a scaffold for cultivation of conjunctiva in the treatment of conjunctival defect.


Subject(s)
Autografts , Conjunctiva/transplantation , Conjunctival Diseases/surgery , Fibrin , Tissue Engineering/methods , Tissue Scaffolds , Amnion , Animals , Cell Proliferation , Conjunctiva/cytology , Disease Models, Animal , Epithelial Cells/cytology , Graft Rejection/prevention & control , In Vitro Techniques , Rabbits , Tissue Culture Techniques
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