Transplantation of Conjunctival Epithelial Cells Cultivated Ex Vivo in Patients With Total Limbal Stem Cell Deficiency

Cornea ◽  
2013 ◽  
Vol 32 (3) ◽  
pp. 221-228 ◽  
Author(s):  
José Reinaldo S. Ricardo ◽  
Priscila C. Cristovam ◽  
Pedro A. N. Filho ◽  
Charles C. Farias ◽  
Aline L. de Araujo ◽  
...  
2014 ◽  
Vol 25 (1) ◽  
pp. 60-64 ◽  
Author(s):  
Paulo C. Silber ◽  
José R.S. Ricardo ◽  
Priscila C. Cristovam ◽  
Rossen M. Hazarbassanov ◽  
Juliana L. Dreyfuss ◽  
...  

Medicina ◽  
2021 ◽  
Vol 57 (4) ◽  
pp. 369
Author(s):  
Sang Beom Han ◽  
Farah Nur Ilyana Mohd Ibrahim ◽  
Yu-Chi Liu ◽  
Jodhbir S. Mehta

Background and objectives: the aim of this study was to analyze the efficacy of a modified “amnion-assisted conjunctival epithelial redirection (ACER)” technique for the treatment of partial limbal stem cell deficiency (LSCD). Materials and methods: the medical records of three patients with partial LSCD who underwent corneal surface reconstruction with modified ACER following superficial keratectomy were retrospectively studied. Briefly, in this technique, an inner amniotic membrane (AM) layer was applied on the corneal surface to promote corneal re-epithelialization. The outer AM layer was applied as a barrier to prevent the invasion of conjunctival epithelial cells into the cornea before the corneal surface was completely covered by corneal epithelial cells derived from the remaining intact limbal stem cells. Results: in all three cases, the outer AM layer successfully kept the conjunctival epithelium away from the corneal surface and prevented an admixture of conjunctival epithelial cells with corneal epithelial cells. In all three patients, the cornea was completely re-epithelized with epithelial cells derived from the remaining healthy limbal stem cells, and a clear visual axis was maintained without recurrence for a mean follow-up period of 37.3 ± 8.6 months. Conclusions: the preliminary results suggest that modified ACER appears to be a viable option for patients with partial LSCD.


2020 ◽  
pp. 002215542098007
Author(s):  
Yu-Ting Xiao ◽  
Hua-Tao Xie ◽  
Xin Liu ◽  
Chao-Ye Duan ◽  
Jing-Yu Qu ◽  
...  

Rat limbal niche cells (LNCs) have been proven to induce transdifferentiation of oral mucosal epithelial cells (OMECs) into corneal epithelial-like cells termed transdifferentiated oral mucosal epithelial cells (T-OMECs). This investigation aimed to evaluate the effect of subconjunctival T-OMEC injections on alkali-induced limbal stem cell deficiency (LSCD) in rats. LNCs were cocultured with OMECs in the Transwell system to obtain T-OMECs, with NIH-3T3 cells serving as a control. Subconjunctival injection of single T-OMEC or OMEC suspension was performed immediately after corneal alkali injury. T-OMECs were prelabeled with the fluorescent dye CM-DiI in vitro and tracked in vivo. Corneal epithelial defect, opacity, and neovascularization were quantitatively analyzed. The degree of corneal epithelial defect (from day 1 onward), opacity (from day 5 onward), and neovascularization (from day 2 onward) was significantly less in the T-OMEC group than in the OMEC group. Cytokeratin 12 (CK12), pigment epithelium–derived factor, and soluble fms-like tyrosine kinase-1 were expressed at a higher rate following T-OMEC injection. Some CM-DiI-labeled cells were found to be coexpressed with CK12, Pax6, and ΔNp63α in the corneal epithelium after subconjunctival injection. Subconjunctival injection of T-OMECs prevents conjunctival invasion and maintains a normal corneal phenotype, which might be a novel strategy in the treatment of LSCD:


Stem Cells ◽  
2014 ◽  
Vol 32 (8) ◽  
pp. 2135-2146 ◽  
Author(s):  
Sai Kolli ◽  
Sajjad Ahmad ◽  
Hardeep Singh Mudhar ◽  
Adam Meeny ◽  
Majlinda Lako ◽  
...  

2018 ◽  
Vol 27 (2) ◽  
pp. 264-274 ◽  
Author(s):  
Marie-Rose Rovere ◽  
Patricia Rousselle ◽  
Marek Haftek ◽  
Bruce Charleux ◽  
Viridiana Kocaba ◽  
...  

Total bilateral limbal stem cell deficiency leading to loss of corneal clarity, potential vision loss, pain, photophobia, and keratoplasty failure cannot be treated by autologous limbal transplantation, and allogeneic limbal transplantation requires subsequent immunosuppressive treatment. Cultured autologous oral mucosal epithelial cells have been shown to be safe and effective alternatives. These cells can be transplanted on supports or without support after detachment from the culture dishes. Dispase, known for epidermal sheet detachment, is reported as not usable for oral mucosa. The objective was to find an optimized detachment method providing a sufficiently resistant and adhesive cultured oral mucosal epithelium (COME), which can be grafted without sutures. Enzymatic treatments (dispase or collagenase at different concentrations) were compared to enzyme-free mechanical detachment. Histological immunofluorescence (IF) and Western blotting (WB) were used to examine the impact on adhesion markers (laminin-332, β1-integrin, and type VII collagen) and junctional markers (E-cadherin, P-cadherin). Finally, the COME ability to adhere to the cornea and produce a differentiated epithelium 15 d after grafting onto an ex vivo porcine stroma model were investigated by histology, IF, and transmission electron microscopy. Collagenase at 0.5 mg/mL and dispase at 5 mg/mL were selected for comparative study on adhesive expression marker by IF and WB showed that levels of basement membrane proteins and cell–cell and cell–matrix junction proteins were not significantly different between the 3 detachment methods. Collagenase 0.5 mg/mL was selected for the next step validation because of the better reproducibility, 100% success (vs. 33% with dispase 5 mg/mL). Grafted onto porcine de-epithelialized corneal stroma, collagenase 0.5 mg/mL detached COME were found to adhere, stratify, and continue to ensure renewal of the epithelium. For COME, collagenase 0.5 mg/mL enzymatic detachment was selected and validated on its resistance and adhesive marker expression as well as their anchorage onto our new ex vivo de-epithelialized stroma model.


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