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Biomedical subjects

Noriko Koizumi

Publications and source records attributed to Noriko Koizumi.

At least 19 recordsLinked to original sources

Ocular surface reconstruction with combination of cultivated autologous oral mucosal epithelial transplantation and penetrating keratoplasty.

PURPOSE: To report an assessment of the two-step surgical combination of cultivated autologous oral mucosal epithelial transplantation (COMET) and penetrating keratoplasty (PKP) used to treat patients with severe limbal deficiency disorders, and to investigate the keratin expression patterns of transplanted surviving oral mucosal epithelium. DESIGN: Observational case series. METHODS: Two patients with Stevens-Johnson syndrome and chemical eye injury were treated by COMET followed, approximately six months later, by a PKP triple procedure. In the course of a mean follow-up period of 22.5 months, their clinical outcomes and the efficacy of this two-step surgical procedure were assessed. In addition, the keratin expression in corneal buttons excised during PKP were immunohistochemically examined to characterize the oral mucosal epithelium that survived ectopically on the cornea. In vivo laser confocal microscopy was used to investigate the structure of the epithelium on the corneal grafts. RESULTS: The ocular surfaces were successfully reconstructed with cultivated autologous oral mucosal epithelial sheets and PKP. No clinical complications, such as persistent epithelial defects, rejections, or recurrence of cicatrization, were encountered. Postoperative best-corrected visual acuity was 20/125 in one patient and 20/100 in the other. The surviving oral mucosal epithelium, distinguished by its fluorescence pattern, consisted of an irregular, nonkeratinized, stratified epithelium without goblet cells. Immunohistochemical study demonstrated that K3, but not K12, was expressed in the transplanted cultivated oral mucosal epithelium that was similar to oral mucosal tissue. In vivo, the epithelial structure and cell density in the basal cell layer of the corneal grafts were similar to normal cornea. CONCLUSIONS: This study presents a two-step surgical approach to treat severely scarred ocular surfaces by means of a combination of COMET and PKP. Clinical outcomes suggest that this treatment may be beneficial for the maintenance of the reconstructed ocular surface by providing oral mucosal epithelium around the corneal graft.

Aged↗

A comparison between cultivated and conventional limbal stem cell transplantation for Stevens-Johnson syndrome.

PURPOSE: To compare the resolution of inflammation and long-term results of cultivated and conventional limbal stem cell transplantation (LSCT) in a patient with Stevens-Johnson syndrome (SJS). DESIGN: Interventional case report. METHODS: A 32-year-old man with SJS and bilateral total limbal stem cell deficiency underwent cultivated LSCT in the right eye, followed by conventional LSCT in the left eye three weeks later. The postoperative medication included dexamethasone 0.1% and ofloxacin 0.3% eyedrops and a tapering dose of systemic corticosteroid, cyclosporine, and cyclophosphamide. Tear samples were collected and analyzed for interleukin (IL) 8 levels. RESULTS: Complete corneal epithelialization was achieved 48 hours after cultivated LSCT, compared with three weeks after conventional LSCT. Ocular inflammation and IL-8 levels decreased more rapidly in the eye with cultivated LSCT. Four years after surgery, more severe corneal scarring and opacification were noted in the conventional LSCT eye. CONCLUSIONS: Cultivated LSCT resulted in a better clinical result and vision, with less stromal scarring compared with conventional LSCT.

Adult↗

Transplantation of autologous serum-derived cultivated corneal epithelial equivalents for the treatment of severe ocular surface disease.

PURPOSE: To evaluate the use of autologous serum (AS)-derived cultivated corneal epithelial transplantation for the treatment of severe ocular surface disease. DESIGN: Retrospective noncomparative case series. PARTICIPANTS: Nine eyes from 9 patients with total limbal stem cell deficiency were studied. These consisted of 2 eyes with Stevens-Johnson syndrome, 1 with chemical injury, 1 with ocular cicatricial pemphigoid, 1 with Salzmann corneal dystrophy, 1 with aniridia, 1 with graft-versus-host disease, and 2 with idiopathic ocular surface disease. METHODS: Autologous serum obtained from patients was used for cultivating corneal epithelial cells on an amniotic membrane substrate. These AS-derived corneal epithelial equivalents were compared with those derived from fetal bovine serum (FBS)-supplemented medium. At the time of surgery, complete removal of the corneal pannus and conjunctiva up to 3 mm from the limbus was performed. Allogeneic (7 cases) and autologous (2 cases) AS-derived cultivated corneal epithelial equivalents were transplanted onto the ocular surface. Postoperative follow-up included serial slit-lamp examinations with fluorescein staining, as well as photographic documentation. MAIN OUTCOME MEASURES: Ocular surface reconstruction with corneal epithelialization, graft integrity, visual acuity, and postoperative complications. RESULTS: The corneal epithelial sheets cultivated in AS- and FBS-supplemented media were morphologically similar, and demonstrated the normal expression of tissue-specific keratins and junctional specialization assembly proteins. After transplantation, complete corneal epithelialization was achieved within 2 to 5 days. All eyes demonstrated an improvement in visual acuity by > or =2 lines. During the follow-up period of 14.6+/-4.36 months, the corneal surface of all patients remained stable and transparent, without significant complications. CONCLUSIONS: Transplantation of AS-derived cultivated corneal epithelial equivalents was shown to be a feasible method of treating patients with severe ocular surface disease. The use of AS is of clinical importance in the development of autologous xenobiotic-free bioengineered ocular surface equivalents for clinical transplantation.

Adult↗

Comparison of intact and denuded amniotic membrane as a substrate for cell-suspension culture of human limbal epithelial cells.

BACKGROUND: We have previously developed a limbal epithelial culture system using a cell-suspension method on denuded amniotic membrane (AM). However, other workers reported that intact AM is advantageous for limbal epithelial culture in that it preserves stem cell characteristics. In this study, we cultivated human limbal epithelial cell-suspensions on both intact and denuded AM and compared the morphology and adhesion of the limbal epithelial cells on these two substrates. METHODS: Human limbal epithelial cells were dissociated from donor eyes using dispase and gentle pipetting and then seeded onto intact and denuded AM as cell suspension. Limbal epithelial cells on AM were co-cultured with a MMC-treated 3T3 fibroblast feeder layer and epithelial differentiation was promoted by air lifting. Cultures were examined by light, scanning and transmission electron microscopy and differences in cellular attachments and intercellular spacing were quantified. Basement membrane complexes were examined by indirect immunofluorescence. RESULTS: Limbal cells grown on denuded AM were well stratified and differentiated. Cells were well attached to each other and to the basement membrane. In contrast, limbal cells cultured on intact AM failed to stratify and in places formed a monolayer. The culture on denuded AM had significantly (P<0.001) more desmosomal junctions as well as significantly (P<0.001) more junctional attachments to the carrier than the intact culture. In addition, the intercellular spaces between cells cultivated on denuded AM were significantly (P<0.001) smaller than those between cells grown on the intact substrate. In cultures on both denuded and intact AM, the basement membrane zone displayed a positive staining for collagen VII, integrins alpha-6 and beta-4 and laminin 5. CONCLUSIONS: We successfully cultivated well-stratified and -differentiated limbal cells on denuded AM, while on the intact AM limbal cells failed to stratify and in places formed only a monolayer of cells. The limbal cells cultivated on denuded AM were well attached to the AM stroma and were morphologically superior to the limbal epithelium cultivated on intact AM. We conclude that for purposes of transplantation of differentiated epithelial sheets, denuded AM is probably the more practical carrier for human limbal epithelial cell cultures when using our cell-suspension culture system.

3T3 Cells↗

Autologous serum-derived cultivated oral epithelial transplants for severe ocular surface disease.

OBJECTIVE: To evaluate the use of autologous serum (AS)-derived cultivated oral epithelial transplants for the treatment of severe ocular surface disease. METHODS: We used AS from 10 patients with severe ocular surface disease and total limbal stem cell deficiency to develop autologous cultivated oral epithelial equivalents. These were compared with epithelial equivalents derived from conventional fetal bovine serum-supplemented medium. Surgery involved removal of the corneal pannus and surrounding diseased tissue and transplantation of the AS-derived epithelial equivalents. The oral equivalents were analyzed by review of histologic and immunohistochemical findings. RESULTS: Oral epithelial sheets cultivated in AS- and fetal bovine serum-supplemented media were similar in morphology, and both formed basement membrane assembly proteins important for maintaining graft integrity. Complete corneal epithelialization was achieved within 2 to 5 days postoperatively. The ocular surface remained stable without major complications in all eyes during a mean +/- SD follow-up of 12.6 +/- 3.9 months. The visual acuity improved by more than 2 lines in 9 of 10 eyes, with transplanted oral epithelium surviving up to 19 months. CONCLUSION: The successful use of an AS-derived oral epithelial equivalent to treat severe ocular surface disease represents an important advance in the pursuit of completely autologous xenobiotic-free bioengineered ocular equivalents for clinical transplantation.

Adult↗

Midterm results on ocular surface reconstruction using cultivated autologous oral mucosal epithelial transplantation.

PURPOSE: To perform a midterm assessment of the integrity and reproducibility of cultivated autologous oral mucosal epithelial sheets, and to evaluate the clinical efficacy of their transplantation in ocular surface. DESIGN: Observational case series. METHODS: Cultivated autologous oral mucosal epithelial sheets were created using amniotic membrane and buccal mucosal epithelium from 12 patients with Stevens-Johnson syndrome, chemical and thermal injury, pseudo-ocular cicatricial pemphigoid, and idiopathic ocular surface disorder. They were transplanted onto 15 eyes from these patients who were then followed up for a mean of 20 months; with the longest follow-up being 34 months. We assessed their clinical outcomes with special reference to neovascularization. RESULTS: Cultivated autologous oral mucosal epithelial sheets could be generated from all patients. On the second postoperative day, 14 of 15 sheets transplanted demonstrated total re-epithelialization on the cornea. During the follow-up, the ocular surface was stable and transparent without any major complications in 10 of 15 eyes (67%), and the transplanted epithelium survived for at least 34 months. There were five eyes (33%) with small but long-standing epithelial defects, three of these healed spontaneously, and two (13%) required reoperation. In 10 eyes, postoperative visual acuity was improved by more than 2 lines. All eyes manifested some peripheral corneal vascularization. CONCLUSIONS: We established a successful tissue-engineering technique to generate cultivated autologous oral mucosal epithelial sheets and succeeded in reconstructing the ocular surface. We suggest that this surgical modality may be both safe and useful, especially in younger patients with the most severe ocular surface disorders.

Adolescent↗

Cytomegalovirus in aqueous humor from an eye with corneal endotheliitis.

PURPOSE: To report cytomegalovirus (CMV) DNA in aqueous humor from a patient with unilateral corneal endotheliitis. DESIGN: Case report. METHODS: A 51-year-old man presented with unilateral corneal endotheliitis with linear keratic precipitates and coin-shaped lesions. Tear and aqueous humor samples were subjected to polymerase chain reaction to look for DNA from herpes simplex virus (HSV), varicella zoster virus (VZV), and CMV. RESULTS: Aqueous humor from the diseased eye contained DNA from CMV but not HSV or VZV. Its specificity was confirmed by Southern blot tests. Intravenous ganciclovir treatment resulted in the localization of his corneal edema and the reduction in keratic precipitates. There was severe destruction of corneal endothelial cells. CMV DNA was not detected in tears or control samples. CONCLUSIONS: In this healthy man with corneal endotheliitis, we detected CMV DNA in aqueous humor from the affected eye, but not HSV or VZV. This suggests that CMV may cause corneal endotheliitis in patients without immunodeficiency.

Acyclovir↗

Establishment of a cultivated human conjunctival epithelium as an alternative tissue source for autologous corneal epithelial transplantation.

PURPOSE: The corneal epithelium is essential for maintaining corneal transparency, and efforts have been made to develop improved techniques for corneal epithelial transplantation in patients with total limbal failure. We evaluated the suitability of transplanted cultivated human conjunctival epithelium (HCjE) as a corneal epithelium replacement in rabbits with total corneal and limbal deficiency. METHODS: HCjE cells, cultivated on human amniotic membrane (AM) to confluence and exposed to an air-liquid interface (air-lifted), were transplanted onto denuded rabbit corneas and monitored for 2 weeks. The cultivated HCjE sheet and the engrafted epithelium were analyzed by immunohistochemistry and transmission electron microscopy (TEM). RESULTS: The transplanted HCjE remained transparent, smooth, and without epithelial defects during the follow-up period. Both the cultivated HCjE cells and the engrafted epithelium manifested five to six layers of stratified squamous epithelium similar in morphology to normal corneal epithelium. The basal cells expressed the putative stem cell markers (ABCG2 and P63) and hemidesmosome and desmosome component proteins. The cytokeratins (CK4, CK13, CK3, and CK12) and MUC4 were found in the engrafted epithelium. However, MUC5AC was not expressed. The results indicate that HCjE cultivated on AM has the potential to be used as an alternative corneal epithelium. CONCLUSIONS: The transplantation of cultivated HCjE sheets is a promising technique for the treatment of eyes with limbal failure.

ATP Binding Cassette Transporter, Subfamily G, Mem↗

Gene expression and immunolocalisation of a calcium-activated chloride channel during the stratification of cultivated and developing corneal epithelium.

The spatial and temporal localisation of a calcium-activated chloride channel (CLCA) and its mRNA was investigated, during the in vivo and in vitro development of stratified epithelia, by fluorescence immunohistochemistry and quantitative polymerase chain reaction in embryonic chicken corneas and the expansion of excised human corneal stem cells on amniotic membrane. Single-layered human epithelial cultures on amniotic membrane and early day embryonic chicken corneas expressed relatively little human CLCA2 or its chicken homologue. However, as the epithelium in both models matured and the number of cell-layers increased, the gene expression level and protein staining intensity increased, primarily within the basal cells of both the cultured and embryonic tissues. These results demonstrate that human CLCA2 protein and mRNA expression are elevated during epithelial stratification, suggesting that this protein plays a role in the growth of multi-layered corneal epithelia during both natural development and tissue cultivation.

Animals↗

An investigation into the composition of amniotic membrane used for ocular surface reconstruction.

PURPOSE: Cultivated limbal epithelial transplantation using an amniotic membrane (AM) carrier is now widely used for ocular surface reconstruction. The reasons for the exceptional success of AM as a carrier are not fully understood but are believed to be related to its unique composition. In this project we characterize, at the ultrastructural level, the extracellular matrix (ECM) components present in AM. We also compare the distribution of ECM components of cellular AM with that of denuded AM. METHODS: Scanning, transmission, and atomic force microscopy was used to examine the structure of cellular and denuded amniotic membranes. Immunogold labeling with a panel of antibodies against ECM molecules was carried out on cellular and denuded AM. RESULTS: Heparan sulfate, fibronectin, and laminin were present at high concentration in the lamina densa, Collagen IV was the major component of the basal lamina. Type I collagen was confined to the stroma along with significant amounts of keratan and chondroitin sulfate. Both cellular and denuded AMs had similar distributions of the ECM components. CONCLUSIONS: We were able to determine the distribution of ECM molecules in the lamina densa, basal lamina, and stroma of AM at the ultrastructural level. The removal of amniotic epithelial cells using our protocol does not appear to have any significant effects on the structure of the basal lamina or the distribution of ECM components.

Amnion↗

Current concepts and challenges in ocular surface reconstruction using cultivated mucosal epithelial transplantation.

Ocular surface disorders wherein corneal stem cells are deficient result in total conjunctivalization leading to severe visual dysfunction and blindness. Treatment of these diseases requires reconstruction of the ocular surface using epithelial transplantation to provide a smooth refractive corneal surface and biologic and physical barriers against a variety of destructive factors. Recently, regenerative medicine focusing on tissue-engineered techniques has been developed and established as a new clinical field. In particular, cultivated mucosal epithelial transplantation using well-differentiated, stratified epithelial sheets on amniotic membrane allows a rapid re-epithelial cover over the entire corneal surface, resulting in early reduction of inflammation and cicatrization. This surgical approach dramatically improves the prognosis of severe ocular surface diseases, especially severely inflamed corneal stem cell deficiency. This new approach not only provides early epithelialization but also allows reconstruction of the corneal surface using autologous cultivated epithelium including the cornea and oral mucosa from a small number of cell sources after amplification. Tissue-engineered strategies using autologous corneal or oral mucosal epithelial sheet transplantation avoid the risk of rejection and complications associated with immunosuppressive treatments. In addition to new cellular transplantation, combined automated lamellar therapeutic keratoplasty provides better refractive stromal interference and contributes to performance and safety of cataract surgery in severe corneal opacity cases. Although long-term prognosis and cell biologic behavior of tissue-engineered epithelium after transplantation should be carefully monitored, these recent surgical treatments have opened a new field for ocular surface reconstruction.

Corneal Transplantation↗

Transplantable cultivated mucosal epithelial sheet for ocular surface reconstruction.

Ocular surface reconstruction by tissue engineering using somatic stem cells is a second-generation therapeutic modality. In view of future treatment of bilaterally affected, severe ocular surface disorders, two types of transplantable cultivated mucosal epithelial sheets can be used for reconstruction. One is an allogeneic corneal epithelial stem cell sheet, and the other is an autologous oral mucosal epithelial cell sheet. We first investigated the feasibility of amniotic membrane as an epithelial carrier, and found that denuded amniotic membrane was the most appropriate substrate for this purpose. Thus, cultivated corneal epithelial stem cell sheets were created by co-culturing with 3T3 fibroblast and air-lifting on amniotic membrane. These epithelial sheets demonstrated positive keratin 3 and 12 specific to in vivo corneal epithelium, light junction related proteins and proliferative activity. The transplanted allogeneic human corneal epithelial sheets existed successfully on the corneal surface, and were quite effective in achieving ocular surface stability in severe ocular surface disorders. A few cases, however, developed immunological reactions or opportunistic infections, etc. Secondly, we established transplantable autologous cultivated oral mucosal epithelial sheets in rabbits. The in vitro oral mucosal epithelial sheets showed histological characteristics similar to those of in vivo corneal epithelial sheets; for example, positive keratin 3 expression. Based on the fact that, the transplanted autologous oral mucosal epithelial sheets resembled corneal epithelium and that we achieved the recovery of corneal transparency in rabbits, we propose that cultivated oral mucosal epithelium may become the substitute for corneal epithelium in ocular surface reconstruction.

Amnion↗

Concept and clinical application of cultivated epithelial transplantation for ocular surface disorders.

Corneal epithelial replacement using a tissue engineering technique holds much promise for ocular surface reconstruction in cases of corneal epithelial stem cell deficiency. However, even though an autologous cultivated corneal epithelial stem cell sheet is the safest and most reliable form of sheet, bilaterally affected ocular surface disorders cannot be treated by this method. To treat bilateral cases, we must choose either an allogeneic cultivated corneal epithelial sheet or an autologous cultivated oral mucosal epithelial sheet. In the case of the former, immunological reaction is a threat. Thus, understanding of the immunological background of ocular surface reconstruction using allogeneic tissues is essential. In the case of the latter, the transplanted sheet is not exactly the same as corneal epithelium, and understanding ocular surface epithelial biology is important. In this review, we summarize and explain the concept and clinical application of cultivated mucosal epithelial transplantation for ocular surface disorders.

Journal Article↗

An investigation of removed cultivated epithelial transplants in patients after allocultivated corneal epithelial transplantation.

OBJECTIVE: To investigate the ultrastructural changes of removed cultivated corneal epithelial transplants using scanning and transmission electron microscopy. METHODS: Allocultivated corneal epithelial transplantation, using an amniotic membrane carrier, was carried out on 3 patients. The primary diagnoses consisted of 1 with acute-phase chemical burn, one with drug-induced pseudopemphigoid, and 1 with Stevens-Johnson syndrome. After a period of several months the transplants were removed from these patients because of graft opacities. The removed transplants were then prepared for examination by scanning and transmission electron microscopy. RESULTS: In all 3 cases there was a similar pattern of findings: the amniotic membrane remained intact, although it had become partially vascularized and invaded by keratocytes. Inflammatory cells were present in the epithelial layer and within the amniotic membrane. Most of the amniotic membrane was covered by conjunctival epithelial cells and goblet cells. Only a few areas of normal cultivated corneal epithelial cells were found. CONCLUSIONS: We suggest that the process of allograft rejection is responsible for the corneal epithelial loss and that this is followed by conjunctival invasion onto the amniotic membrane.

Amnion↗

Successful primary culture and autologous transplantation of corneal limbal epithelial cells from minimal biopsy for unilateral severe ocular surface disease.

BACKGROUND: Patients with severe unilateral ocular surface disease require reconstruction of the damaged ocular surface. We succeeded in culturing primary corneal limbal epithelial cells taken from minimal biopsy and, once grown, transplanting them on denuded amniotic membrane (AM). METHODS: Autologous corneal limbal epithelial cells from a 3 mm(2) biopsy of the uninjured eye were grown for 3 weeks on a denuded AM carrier. The resultant sheet was then transplanted onto the unilateral severely chemically injured eye. RESULTS: Minimal biopsy showed the autologous cultivated corneal epithelial cells to have 4-5 layers of sufficient stratification and to be well differentiated. At 19 months post-transplantation, the ocular surface epithelium was stable and there were no epithelial defects. CONCLUSION: We document that it is possible to produce sufficiently stratified, well differentiated, autologous cultivated corneal limbal epithelium on AM from a minimal biopsy of the donor eye and to transplant it onto the injured eye.

Adult↗

Calcium-activated chloride channel-2 in human epithelia.

Calcium-activated chloride channels (CLCAs) are a family of multifunctional proteins that are widely distributed in tissues. To investigate the distribution of human CLCA-2 (hCLCA2) in human epithelia at the light and electron microscopic levels, we raised a primary antibody against a synthetic polypeptide sequence from natural hCLCA2. Corneal, skin, vaginal, esophageal, and laryngeal epithelia were immunopositive for hCLCA2 at the cytosolic aspect of the basal cells adjacent to the basement membrane. Epithelia of stomach and small intestine showed no hCLCA2 immunoreactivity. This study reports the cellular distribution of hCLCA2 in human epithelia and suggests its possible involvement in epithelial stratification and cell-substrate adhesion.

Chloride Channels↗

Comparison of ultrastructure, tight junction-related protein expression and barrier function of human corneal epithelial cells cultivated on amniotic membrane with and without air-lifting.

PURPOSE: To evaluate the usefulness of the air-lifting technique for culturing corneal limbal epithelial cells on amniotic membrane (AM) for use in ocular surface reconstruction. A cultured sheet that has a good barrier function should be better for this purpose. In corneal epithelium, tight junctions (TJ) play a vital role in the barrier function. The TJ complex includes the integral transmembrane proteins occludin and the claudins, and some membrane-associated proteins such as ZO-1. In this paper, we investigated the barrier function and the expression of TJ related proteins. METHODS: Corneal limbal epithelium obtained from donor corneas and cultivated on acellular AM was divided into two groups. These were the non-air-lifting (Non-AL) group, which was continuously submerged in medium, and the air-lifting (AL) group, which was submerged in medium for 3 weeks, then exposed to air by lowering the medium level. Morphology and the permeability to horseradish peroxidase (HRP) were determined by electron microscopy. Tight junction (TJ)-related protein and mRNA expression changes were assessed by immunoblotting and reverse transcription-polymerase chain reaction. RESULTS: The cultures of both groups formed 4-5-layer-thick, well-stratified epithelium. The AL cultures had tightly packed epithelial cells with all the HRP/diaminobenzidine (DAB) reaction product accumulated on the apical surface of the superficial cells. The Non-AL culture, by contrast, had more loosely packed epithelial cells with larger intercellular spaces. The HRP/DAB reaction product penetrated the intercellular space to a depth of 3-4 cell layers. Statistically, there was a significant difference in intercellular spaces and desmosome count in the superficial cells between the groups. With AL, TJ-related proteins localized at the apical portion of the lateral membrane. TJ-related protein and mRNA amounts were not changed by AL while claudin subtype expression became more consistent and closer to that of in vivo corneal epithelium. CONCLUSIONS: The AL technique reduces intercellular spaces in the superficial cells and promotes the formation of the barrier function. It is useful in culturing corneal epithelial cells for use in ocular surface reconstruction.

Amnion↗

Successful regrafting of cultivated corneal epithelium using amniotic membrane as a carrier in severe ocular surface disease.

PURPOSE: Our group performed cultivated allogeneic corneal epithelial transplantation in 13 eyes from 11 patients with severe ocular surface disorders. After the clinical application of this new surgical treatment, some patients experienced epithelial and subepithelial opacities. We applied our procedure again in these patients to achieve successful ocular surface reconstruction. METHODS: The corneal limbal epithelial cells from donor corneas were cultivated for 4 weeks on denuded amniotic membrane (AM) carrier, with 3T3 fibroblast coculture and airlifting. The study subjects consisted of 3 patients. At 3 and 12 months after the first operation, the failed epithelial graft with AM was replaced with new allogeneic corneal epithelium cultivated on AM. RESULTS: At 48 hours after transplantation, the corneal surfaces of the 3 eyes were clear and smooth; the entire corneal surfaces were evenly covered with the transplanted cultivated corneal epithelium, which did not stain with fluorescein. The ocular surface epithelia of these patients are all stable without epithelial defects. CONCLUSIONS: We have shown that, in cases where the initially transplanted cultivated epithelium becomes opaque, it is possible to repeat the transplantation process with new cultivated epithelium on AM.

Adult↗