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At least 19 recordsLinked to original sources

[Experimental study of the influence of cornea flap and residual cornea bed on cornea intensity after LASIK].

OBJECTIVE: To study the influence of cornea flap and residual cornea bed on cornea intensity after laser in situ keratomileusis (LASIK). METHODS: The established mature cats animal model of LASIK was used. In Group A, a 160 micro m cornea flap was made, followed by performing ablation on the stroma by excimer laser to preserve the residual bed for 300 micro m, and then the cornea flap was repositioned. The cornea flap was removed with the residual bed 300 micro m remaining in Group B, while in Group C, a 160 micro m cornea flap was made with the residual bed 180 micro m, and followed reposition of the cornea flap. In Group D, the cornea flap was cut off and a 180 micro m the residual bed was remained. Measurements included central cornea pachymetry, anterior chamber depth (ACD) and analysis of the posterior best fit sphere in cornea Topography before operation and 1 week, 1 month, 2 months and 3 months after operation. The results were analyzed statistically. 3 months after operation, the changes of cornea structures were observed by histopathological analysis and transmission electron microscope. RESULTS: Increase of ACD 3 months after operation: Group A, (0.16 +/- 0.08) mm; group B, (0.21 +/- 0.16) mm; group C, (0.33 +/- 0.09) mm; group D, (0.41 +/- 0.10) mm. There was no statistical difference between group A and group B (t = 0.685, P > 0.05) and between group C and group D (t = 1.457, P > 0.05). There was a statistical difference between group A and group C (t = 3.458, P < 0.05) and between group B and group D (t = 2.597, P < 0.05). Increase of posterior cornea prominence 3 months after operation: Group A, (27.78 +/- 9.52) micro m; group B, (39.57 +/- 7.68) micro m; group C, (58.57 +/- 8.66) micro m; group D, (68.14 +/- 19.69) micro m. No statistical difference was found between group A and group B (t = 2.361, P > 0.05) and group C and group D (t = 1.090, P > 0.05). There was a statistical difference between group A and group C (t = 5.860, P < 0.05) and between group B and group D (t = 3.310, P < 0.05). Light microscopy and transmission electronic microscopy showed that the arrangements of collagen fiber in the interface were disordered with no apparent cross arrangement. There was no significant increase of rough endoplasmic reticulum in fibroblast. CONCLUSIONS: The residual cornea bed is the main factor to influence corneal intensity. After LASIK, the wound healing of the interface is different from scar. This may be the main reason for cornea flap's no apparent influence on cornea intensity.

Animals↗

Studies on the cornea. I. The fine structure of the rabbit cornea and the uptake and transport of colloidal particles by the cornea in vivo.

Physiological studies have demonstrated that ions, as well as large molecules such as hemoglobin or fluorescein, can diffuse across and within the cornea. Most of the substrates for corneal metabolism are obtained from aqueous humor filling the anterior chamber. In order to receive its nutrients and in order to maintain its normal conditions of hydration, the avascular cornea must transport relatively large amounts of solute and solvent across the cellular layers which cover this structure. It has been suggested in the past that there may be a morphological basis for the transport of large amounts of solvents and solutes by cells by the mechanism of pinocytosis. The use of electron-opaque markers to study fluid movements at the electron microscope magnification level was described by Wissig (29). The present study describes the fine structure of the normal rabbit cornea and the pathways of transport of colloidal particles by the cornea in vivo. Rabbit corneas were exposed in vivo to suspensions of saccharated iron oxide, thorium dioxide, or ferritin by injection of the material into the anterior chamber. In other experiments thorium dioxide or saccharated iron oxide was injected into the corneal stroma, producing a small bleb. Particles presented at the aqueous humor surface of the rabbit corneal endothelium are first attached to the cell surface and then pinocytosed. It appears that the particles are carried around the terminal bar by an intracellular pathway involving the pinocytosis of the particles and their subsequent transport in vesicles to the lateral cell margin basal to the terminal bar. Particles introduced at the basal surface of the endothelium (via blebs in the corneal stroma) are apparently carried through the endothelial cells in membrane-bounded vesicles without appearing in the intercellular space. There appears to be free diffusion of these particles through Descemet's membrane and the corneal stroma. The stromal cells take up large quantities of the particles when blebs are injected into the stroma.

Animals↗

Studies on the cornea. III. The fine structure of the frog cornea and the uptake and transport of colloidal particles by the cornea in vivo.

The fine structure of the frog cornea has been studied and compared with that of the rabbit cornea (1, 2) particularly in relation to the uptake and transport of colloidal particles. The frog corneal endothelium does not possess a terminal bar and the fluid space of the intercellular space is apparently continuous with that of the anterior chamber. Colloidal markers (ThO(2), Fe(2)O(3)) placed in the anterior chamber pass down the intercellular space into the cornea. Markers injected intrastromally diffuse freely in the stroma and Descemet's membrane but pass across the endothelium only via membrane-bounded vesicles. These results are compared with those of similar experiments in the rabbit and it is concluded that the primary pathway for the passage of materials into the cornea is intercellular and that the pinocytotic pathway of the rabbit corneal endothelium (Kaye and Pappas; Kaye et al.) is an adaptation to the presence of a terminal bar. The significance of the separation of inward and outward pathways in terms of corneal metabolism is considered.

Animals↗

Human diabetic corneas preserve wound healing, basement membrane, integrin and MMP-10 differences from normal corneas in organ culture.

The authors have previously documented decreased epithelial basement membrane (BM) components and alpha3beta1 epithelial integrin, and increased expression of matrix metalloproteinase (MMP)-10 in corneas of patients with diabetic retinopathy (DR) compared to normal corneas. The purpose of this study was to examine if organ-cultured DR corneas exhibited the same alterations in wound healing and diabetic marker distribution as the autopsy DR corneas. Twenty normal and 17 DR corneas were organ-cultured in serum-free medium over agar-collagen gel at the air-liquid interface for up to 45 days. Circular 5 mm central epithelial wounds were made with n-heptanol, the procedure that will preserve fragile diabetic corneal BM. Wound healing was monitored microscopically every 12 hr. Distribution of diabetic corneal epithelial markers including laminin-10 alpha5 chain, nidogen-1/entactin, integrin alpha3beta1, and MMP-10, was examined by immunofluorescence. Normal corneas healed the central epithelial defect within 3 days (mean=2.3 days), whereas DR corneas on average healed about two times slower (mean=4.5 days). In wounded and completely healed organ-cultured corneas, the patterns of studied markers were the same as in the unwounded organ-cultured corneas. This concerned both normal and DR corneas. As in vivo, normal organ-cultured corneas had continuous staining for laminin-10 and nidogen-1/entactin in the epithelial BM, strong and homogeneous staining for both chains of alpha3beta1 integrin in epithelial cells, and little if any staining for MMP-10. Organ-cultured DR corneas also had marker patterns specific for in vivo DR corneas: interrupted to no staining for laminin-10 and nidogen-1/entactin in the epithelial BM, areas of weak or disorganized alpha3beta1 integrin in epithelial cells, and significant MMP-10 staining in the epithelium and keratocytes. Fibrotic extracellular matrix and myofibroblast markers were largely absent. Thus, epithelial wound healing was much slower in organ-cultured DR corneas than in normal corneas, in complete accordance with clinical data in diabetic patients. DR corneas in organ culture preserved the same marker abnormalities as in vivo. The marker distribution was unchanged in wounded and healed organ-cultured corneas, compared to unwounded corneas. The established corneal organ culture provides an adequate system for elucidating mechanisms of epithelial alterations in human DR corneas.

Aged↗

Molecular changes in selected epithelial proteins in human keratoconus corneas compared to normal corneas.

PURPOSE: The purpose of the study was to determine molecular changes in selected epithelial proteins in human keratoconus (KC) corneas compared to normal corneas. METHODS: Two-dimensional (2-D) gel electrophoretic profiles of epithelial cell proteins from normal and keratoconus corneas were compared, and the selected protein spots that showed either up- or downregulation were identified. The desired spots were identified after trypsin digestion and mass spectrometric analysis. Based on the results, two proteins, alpha-enolase and beta-actin, were further analyzed by immunohistochemical and western blot methods, using respective antibodies. To determine the presence of mRNA of the two proteins in the epithelial cells, RT-PCR studies were performed. RESULTS: On comparison of the 2-D gel electrophoretic protein profiles, two protein spots were identified in normal corneas that were either absent or present at lower levels in keratoconus corneas. The two spots were determined to be alpha-enolase (48 kDa) and beta-actin (42 kDa) by matrix-assisted laser desorption ionization-time of flight (MALDI-TOF), and ES-MS/MS mass spectrometric methods. Immunohistochemical analysis revealed that alpha-enolase and beta-actin were present at extremely low levels in the epithelial superficial and wing cells of the keratoconus corneas compared to these cells of normal corneas. 2-D gel electrophoresis followed by western blot analysis revealed relatively greater degradation of the two proteins in the keratoconus corneas compared to normal corneas. RT-PCR analysis showed the mRNA expression of the two proteins in the epithelial cells of both normal and keratoconus corneas. CONCLUSIONS: The results showed relatively low or negligible levels of alpha-enolase and beta-actin in the wing and superficial epithelial cells of keratoconus corneas compared to normal corneas. This was attributed to relatively greater degradation of the two proteins in keratoconus corneas compared to normal corneas.

Actins↗

Extracellular matrix and Na+,K+-ATPase in human corneas following cataract surgery: comparison with bullous keratopathy and Fuchs' dystrophy corneas.

PURPOSE: To examine the distribution of extracellular matrix (ECM) and basement membrane (BM) components and of Na+,K+-ATPase in postcataract surgery (PCS) corneas. These corneas were from patients who never developed pseudophakic or aphakic bullous keratopathy (PBK/ABK) after cataract surgery. PCS corneas were compared with PBK/ABK and Fuchs' dystrophy corneas. METHODS: The distribution of PBKIABK ECM and BM markers and of all three Na+,K+-ATPase alpha subunits was studied by immunofluorescence in 10 healthy, 11 PCS, 16 PBK/ABK, and 12 Fuchs' dystrophy corneas. RESULTS: Fibrotic ECM proteins, tenascin-C and fibrillin-1, were found in only 1 of 10 healthy and in 2 of 11 PCS corneas. In contrast, these proteins were expressed in all PBK/ABK and more than half of the Fuchs' dystrophy corneas. BM components in PCS corneas were altered to a greater extent (40-60%), especially fibronectin and laminin-10. A decreased epithelial immunostaining for Na+,K+-ATPase alpha subunits was seen in approximately 40% of PCS corneas and in approximately two thirds of PBK/ABK and Fuchs' dystrophy corneas. However, the endothelial staining was normal in all groups. CONCLUSIONS: Because tenascin-C and fibrillin-1 were mostly found in diseased but not in PCS corneas, their expression may be related to later, clinical stages of corneal edema development. However, BM components abnormal in PBK/ABK and Fuchs' dystrophy corneas were also altered in PCS corneas without clinical evidence of ocular disease. This may result from subclinical corneal changes resulting from cataract surgery, lens removal, exposure to the intraocular lens, or endothelial cell damage. Alterations of epithelial Na+,K+-ATPase point to the importance of epithelial changes in the development of corneal edematous diseases.

Basement Membrane↗

The distribution of gentamicin in the rabbit cornea following iontophoresis to the central cornea.

The purpose of this study was to evaluate the penetration of gentamicin into the central, midperipheral and peripheral cornea of rabbits following iontophoresis to the central 3 mm of the cornea. Four groups (groups 1-4) of five rabbits (one eye per rabbit) underwent corneal iontophoresis using gentamicin dissolved in agar. Low (1 mg/ml) and high (10 mg/ml) concentrations of gentamicin in agar were used for one or ten minutes. Two control groups (groups 5 and 6) of five eyes each underwent mock iontophoresis with low and high concentrations of agar-gentamicin mixture. Following sacrifice of the rabbits, the central, midperipheral and peripheral parts of each cornea were excised. Gentamicin concentration was determined in each part of every cornea. High concentrations of gentamicin (951.6 +/- 369.4 microg/ml to 26.6 +/- 41.34 microg/ml) were obtained in the central parts of all the iontophoresis-treated corneas. In each group, except group 6, central corneas had higher concentrations of gentamicin compared to midperipheral corneas (p = 0.038 to p = 0.021), and midperipheral corneas had higher levels than peripheral corneas (p = 0.038 to p = 0.021). Following iontophoresis, gentamicin is found in all portions of the corneas; however, the highest concentration of the drug remains in the central cornea.

Analysis of Variance↗

Corneal thickness, intraocular pressure, and optical corneal diameter in Rocky Mountain Horses with cornea globosa or clinically normal corneas.

OBJECTIVE: To compare corneal thickness, intraocular pressure, and optical corneal diameter in Rocky Mountain Horses with cornea globosa and those with clinically normal corneas. ANIMALS: 129 Rocky Mountain Horses. PROCEDURE: Ultrasonic pachymetry was used to measure corneal thickness. Applanation tonometry was used to measure intraocular pressure. A Jameson caliper was used to measure optical corneal diameter. RESULTS: The central and temporal peripheral portions of the cornea were significantly thicker in horses with cornea globosa than in horses with clinically normal corneas, but corneal thicknesses in the dorsal, ventral, and medial peripheral portions of the cornea were not significantly different between groups. There were no differences in corneal thickness between male and female horses or between right and left eyes. However, there was a positive correlation between age and corneal thickness. Intraocular pressure was not significantly different between horses with cornea globosa and those with clinically normal corneas, or between right and left eyes, or male and female horses. Optical corneal diameter for horses with cornea globosa was not significantly different from diameter for horses with clinically normal corneas, but optical corneal diameter was positively correlated with age. CONCLUSIONS AND CLINICAL RELEVANCE: Cornea globosa in Rocky Mountain Horses is not associated with increased intraocular pressure. Corneal thickness and optical corneal diameter increase with age in Rocky Mountain Horses.

Aging↗

The human cornea proteome: bioinformatic analyses indicate import of plasma proteins into the cornea.

Increased biochemical knowledge of normal and diseased corneas is essential for the understanding of corneal homeostasis and pathophysiology. In a recent study, we characterized the proteome of the normal human cornea and identified 141 distinct proteins. This dataset represents the most comprehensive protein study of the cornea to date and provides a useful reference for further studies of normal and diseased human corneas. The list of identified proteins is available at the Cornea Protein Database. In the present paper, we review the utilized procedures for extraction and fractionation of corneal proteins and discuss the potential roles of the identified proteins in relation to homeostasis, diseases, and wound-healing of the cornea. In addition, we compare the list of identified proteins with high quality gene expression libraries (cDNA libraries) and Serial Analysis of Gene Expression (SAGE) data. Of the 141 proteins, 86 (61%) were recognized in cDNA libraries from the corneas of dogs and rabbits, or humans with keratoconus, and 98 (69.5%) were recognized in SAGE data of mouse and human corneas. However, the percentages of identified genes in each of the protein functional groups differed markedly. Thus, exceptionally few of the traditional blood/plasma proteins and immune defense proteins that were identified in the human cornea were recognized in the gene expression libraries of the cornea. This observation strongly indicates that these abundant corneal proteins are not expressed in the cornea but originate from the surrounding pericorneal tissue.

Animals↗

Optimization of a method for the cryopreservation of rabbit corneas: attempted application to human corneas.

The purpose of the present study was to set up and test a cryopreservation method for long-term storage of human corneas. Therefore the freezing solution was optimized in 264 rabbit corneas by testing the type of cryoprotectant, its concentration, addition and dilution pattern and exposure temperature. Then rabbit corneas were frozen in the optimum solution at different cooling rates and thawed in a water bath at different temperatures. Eight human corneas were cryopreserved with the method showing optimum results in rabbit corneas and four additional corneas were used as controls. Endothelial viability was assessed after each step by vital staining and scanning electron microscopy. Best results after exposure of rabbit corneas to the freezing solution were achieved when using a 10% cryoprotectant concentration, with direct addition/dilution and exposure at room temperature (3512 +/-300 viable cells mm(2) when using dimethylsulfoxide; 3403 +/- 245 viable cells mm(2) when using 1,2-propanediol). Cryopreserved rabbit corneas had the highest endothelial cell survival when frozen at 1 degrees C/min and thawed at 37 degrees C (2003 +/- 372 viable cells/mm(2) when using dimethylsulfoxide and 1357 +/- 667 viable cells/mm(2) when using 1,2-propanediol). Cryopreserved human corneas had 753 +/- 542 viable cells/mm(2) when using dimethylsulfoxide and 56 +/- 56 viable cells/mm(2) when using 1,2-propanediol. We can conclude that the method developed is easy to handle and shows optimum results in rabbit corneas, with an endothelial cell survival that is consistent with transplant acceptability criteria. The results obtained in human corneas are below prediction and are still unsatisfactory for successful use in eye banking.

Journal Article↗

Keratocyte gap junctional communication in normal and wounded rabbit corneas and human corneas.

PURPOSE: Several studies have indicated the anatomic and biochemical presence of gap junctions in corneal keratocytes. The current study was designed to demonstrate that these gap junctions are functional in rabbit and human corneal keratocytes. This study also examined dye coupling between keratocytes migrating into the wound region of freeze-wounded rabbit corneas. METHODS: Freeze wounds were created on anesthetized rabbit corneas using a liquid nitrogen-cooled brass probe. Freeze-wounded corneas were examined at several time periods from days 0 to 5 after wounding. Nonwounded rabbit corneas also were examined. Human corneal buttons were examined immediately after removal from patients who underwent keratoplasty. Gap junctional coupling was examined by microinjecting carboxyfluorescein from microelectrodes into the basal-most keratocytes and capturing dye spread images with a cooled charge coupled device camera. RESULTS: Significant dye spread was observed between cells in the unwounded areas of corneas at wound time 0 and between cells migrating into the wound areas as early as 24 hours after wounding. In control corneas, dye spread to as many as 50 cells from the source cell. Dye spread also was seen between keratocytes in human corneas with pseudophakic bullous keratopathy and keratoconus. CONCLUSIONS: Gap junctions observed in keratocytes from normal rabbit corneas are functional. Gap junctions also are present and functional in keratocytes within unwounded and wounded regions of freeze-injured corneas. In addition, functional gap junctions are present between keratocytes in human corneas. This study confirms the long-held contention that corneal keratocytes form a large intercommunicating network within the corneal stroma.

Adult↗

Immunobiology of xenogeneic cornea grafts in mouse eyes. I. Fate of xenogeneic cornea tissue grafts implanted in anterior chamber of mouse eyes.

BACKGROUND: The cornea is an immune privileged tissue that, when grafted orthotopically, forms the anterior surface of the immune privileged anterior chamber. We have recently reported that allogeneic cornea fragments implanted in the anterior chamber of mouse eyes resist immune rejection, although such graft fragments are rejected outside the eye. We wished to determine the extent to which xenogeneic cornea fragments placed in the eyes of normal mice are vulnerable to immune rejection. METHODS: Guinea pig corneas, deprived surgically of epithelium, were cut into fragments and inserted into the anterior chamber of eyes of BALB/c and severe combined immune deficient (SCID) mice, adjacent to the central cornea of the recipient. The fate of the grafts was assessed clinically by biomicroscopy and histologically for 8 weeks postimplantation. RESULTS: The majority of guinea pig cornea fragments devoid of epithelium came to rest with the raw stroma adjacent to recipient endothelium. These fragments remained clear for the 8-week observation interval in both BALB/c and severe combined immune deficient mice. Clear grafts displayed viable guinea pig keratocytes and endothelial cell layers for 4 weeks. The endothelium was then replaced by murine cells by 8 weeks. A minority of guinea pig cornea fragments were oriented with donor endothelium adjacent to recipient endothelium. Although these grafts in severe combined immune deficient eyes eventually acquired an endothelial layer that faces the anterior chamber and remained clear, similar fragments in BALB/c eyes became opaque, failed to acquire a proper lining of endothelium that faces the anterior chamber, and incited an inflammatory reaction in adjacent recipient cornea. CONCLUSIONS: Immune privilege is afforded to xenografts of guinea pig cornea placed as stromal: endothelial cell fragments in the anterior chamber of mouse eyes, but only if the surface of the fragments that faces the anterior chamber is promptly covered with corneal endothelium. The possible roles of corneal endothelium in promoting immune privilege of corneal xenografts are discussed.

Animals↗

Effects of penetrating keratoplasty rejection on the endothelium of the donor cornea and the recipient peripheral cornea.

PURPOSE: To determine the effects of penetrating keratoplasty rejection on the recipient endothelium. METHODS: Twenty transplanted corneas of 20 keratoconus patients were enrolled in this study. Ten of the corneas had undergone allograft rejection and the other 10 grafts had an uneventful postsurgical course. The endothelium of the donor cornea and the endothelium of the recipient peripheral cornea were evaluated by wide-field specular microscopy. RESULTS: The transplanted corneas that underwent allograft rejection showed a marked decrease in endothelial cell density not only in central donor cornea but also in the recipient peripheral cornea compared with that in the uneventful transplanted corneas. Additionally, the recipient endothelium had significant pleomorphism in the rejection group. There were no morphologic differences in the peripheral donor cornea between the control group and the rejection group. CONCLUSIONS: Our findings indicate that the recipient peripheral endothelium is also affected by allograft rejection, perhaps because of the contribution of recipient endothelium to the wound healing process after allograft rejection.

Adult↗

Human cornea construct HCC-an alternative for in vitro permeation studies? A comparison with human donor corneas.

Transcorneal in vitro permeation studies of ophthalmic drugs are normally performed with either excised animal corneas or latterly corneal cell culture models. A good correlation between these models and excised animal corneas regarding permeation behaviour of drugs has already been shown. However, comparisons between corneal in vitro models containing human cells and excised human corneas do not exist yet. Therefore in the present study the transcorneal permeation of six different model drugs (pilocarpine hydrochloride, befunolol hydrochloride, hydrocortisone, diclofenac sodium, clindamycin hydrochloride and timolol maleate) across our previously described three-dimensional organotypic human cornea construct (HCC) was tested using Franz diffusion cells and compared with permeation data obtained from human donor corneas. The HCC showed a similar permeation behaviour compared with human donor cornea for all substances. The permeabilities (permeation coefficients P) of the human cornea equivalent versus the human donor cornea were the same in the case of diclofenac, clindamycin, timolol, but marginally decreased for hydrocortisone and slightly increased for pilocarpine and befunolol. These small differences of permeation coefficients were expressed as factors and only varied from 0.8 to 1.4. The results indicate that the HCC may be an alternative for in vitro permeation studies and appropriate for predicting drug absorption into the human eye.

Cell Line↗

Correspondence of Tono-Pen intraocular pressure measurements performed at the central cornea and mid-peripheral cornea.

BACKGROUND: As the awareness of the influence of central corneal thickness (CCT) on Goldmann tonometry has increased, many publications have questioned the accuracy of Goldmann intraocular pressure (IOP) measurement. The Tono-Pen, because it indents a much smaller surface area when compared to a Goldmann probe, may be less affected by corneal thickness variations when compared with Goldmann tonometry. METHODS: Forty human subjects with no history of refractive surgery participated in this study. The IOP of the right eye of each subject was measured with the Goldmann tonometer, the Tono-Pen at the central cornea, and the Tono-Pen at the mid-peripheral cornea. An ultrasonic DGH Pachette pachymeter was used to measure the central and mid-peripheral corneal thickness at the location of the IOP readings. RESULTS: Tono-Pen measurements at the central and mid-peripheral cornea highly correlated (r = 0.933), and did not significantly differ (p = 0.646). The IOP readings with the Goldmann tonometer (r= 0.406), the Tono-Pen at the central cornea (r = 0.453), and the Tono-Pen at the mid-peripheral cornea (r = 0.321) showed a positive correlation to corneal thickness. The Goldmann and Tono-Pen tonometers differed significantly in the measurement of IOP at the central cornea (p = 0.007), but were positively correlated (r = 0.674). CONCLUSIONS: The Tono-Pen IOP measurement at the central cornea highly approximated Tono-Pen IOP measurement at the mid-peripheral cornea. Furthermore, although not highly correlated, both the Goldmann and Tono-Pen tonometers showed a significantly positive correlation between IOP and corneal thickness measurements.

Adolescent↗

Gene expression profile studies of human keratoconus cornea for NEIBank: a novel cornea-expressed gene and the absence of transcripts for aquaporin 5.

PURPOSE: To increase the database of genes expressed in human cornea and to gain insights into the molecular basis of keratoconus (KC). METHODS: A cDNA library was constructed from KC corneas harvested at keratoplasty and used for expressed sequence tag (EST) analysis. Data were analyzed using grouping and identification of sequence tags (GRIST). Expression of selected clones was examined by RT-PCR. RESULTS: A total of 7680 clones was sequenced from the 5' end. After bioinformatics analysis, 4090 clusters of clones, each potentially representing individual genes, were identified. Of these, 887 genes were represented by more than one clone. The five most abundant transcripts, represented by >60 clones each, were for keratin-12, TGFBI (BIGH3), decorin, ALDH3, and enolase 1, all known markers for cornea. Many other markers for epithelial, stromal, and endothelial genes were also present. One cluster of six clones came from an apparently novel gene (designated KC6) located on chromosome 18 at p12.3. RT-PCR of RNA from several human tissues detected KC6 transcripts only in cornea. In addition, no clones were observed for the usually prominent corneal epithelial cell marker aquaporin 5 (AQP5), a water channel protein. Semiquantitative RT-PCR confirmed that expression of AQP5 is much lower in KC cornea than in non-KC cornea. CONCLUSIONS: This analysis increases the database of genes expressed in the human cornea and provides insights into KC. KC6 is a novel gene of unknown function that shows cornea-preferred expression, whereas the suppression of transcripts for AQP5 provides the first clear evidence of a molecular defect identified in KC.

Amino Acid Sequence↗