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Biomedical subjects

S G Elner

Publications and source records attributed to S G Elner.

At least 37 records · Page 2Linked to original sources

Human retinal pigment epithelial cell interleukin-8 and monocyte chemotactic protein-1 modulation by T-lymphocyte products.

PURPOSE: The purpose of the study was to examine the effect of T-lymphocyte products on human retinal pigment epithelial (HRPE) cell interleukin-8 (IL-8) and monocyte chemotactic protein-1 (MCP-1) secretion and gene expression. METHODS: HRPE cells were stimulated for 2, 4, 8, or 24 hours with 20% conditioned media (CM) from T-lymphocytes stimulated with CD3 or CD28 monoclonal antibodies (mAbs) or phorbol myristic acid. In some experiments, CM from CD3 mAb-stimulated T-lymphocytes was preincubated with neutralizing anti-(alpha)-tumor necrosis factor (TNF), alpha-interferon-gamma (IFN-gamma), or alpha-interleukin-1 (IL-1) mAb (control) to determine the contributions of each of these cytokines to HRPE chemokine induction by stimulated T-lymphocyte CM. HRPE cells were stimulated for 8 and 24 hours with IL-1 beta (0.2 to 20.0 ng/ml) (positive control), TNF-alpha (0.2 to 20.0 ng/ml) (positive control), IFN-gamma (1 to 1000 U/ml), IFN-gamma + IL-1 beta, IFN-gamma + TNF-alpha. Interleukin-2 (IL-2; 100 ng/ml) alone or in combination with IL-1 beta, TNF-alpha, or IFN-gamma also was tested. Enzyme-linked immunosorbent assay (ELISA) and Northern blot analyses were performed to determine secreted IL-8 and MCP-1 and their steady state mRNA expression, respectively. RESULTS: ELISA showed significant increases in HRPE IL-8 and MCP-1 secretion by CM from T-lymphocytes stimulated with CD3 or CD3 + CD28 mAb. Smaller, but significant, increases in IL-8 and MCP-1 resulted from CM phorbol myristic acid-stimulated T-lymphocytes. CM preincubated with neutralizing alpha-TNF or alpha-IFN-gamma mAb induced significantly less HRPE IL-8 and MCP-1, whereas preincubation of CM with neutralizing alpha-IL-1 mAb failed to inhibit CM-induced IL-8 or MCP-1. Northern blot analysis showed increased HRPE IL-8 and MCP-1 mRNA expression within 2 hours of stimulation and was maintained up to 24 hours. CM from T-lymphocytes stimulated with CD3 mAb or CD3 + CD28 mAb produced the greatest increases in IL-8 and MCP-1 mRNA. IFN-gamma induced dose-dependent increases in HRPE MCP-1, but not IL-8, IFN-gamma potentiated IL-1 beta and TNF-alpha-induced MCP-1 production, but showed little modulation of IL-1 beta and TNF-alpha-induced IL-8 production. IL-2 did not induce HRPE IL-8 or MCP-1, nor did it modulate the effects of the other cytokines. Northern blot analysis confirmed the ELISA results. CONCLUSIONS: T-lymphocyte secretions induce HRPE IL-8 and MCP-1 gene expression and secretion. TNF and IFN-gamma appear to be necessary components of T-lymphocyte CM for the induction of HRPE IL-8 and MCP-1. IFN-gamma alone induces HRPE MCP-1, albeit to a lesser extent than would IL-1 beta or TNF-alpha, and potentiates IL-1 beta- and TNF-alpha-induced HRPE MCP-1. IL-2 does not appear to modulate cytokine-induced HRPE IL-8 or MCP-1.

Antibodies, Monoclonal↗

Glycated serum albumin induces chemokine gene expression in human retinal pigment epithelial cells.

Chronic hyperglycemia is thought to be important in the development of diabetic neovascularization but the mechanisms involved remain poorly understood. Interleukin-8 (IL-8) is a leukocyte chemokine and activating agent with angiogenic properties that is present in diabetic vitreous and may play a role in diabetic vasculopathy. We studied IL-8 and monocyte chemotactic protein-1 (MCP-1) production by human retinal pigment epithelial (hRPE) cells exposed to glycated human serum albumin (GHSA). Enzyme-linked immunoassay GHSA (500 micrograms/mL)-treated hRPE cells secreted levels of IL-8 and MCP-1 detectable within 4 h and reached 26.0 +/- 1.3 and 42.2 0.4 ng/10(6) cells/mL after 24 h, respectively. Induction of IL-8 and MCP-1 by GHSA at concentrations ranging from 62.5 to 3,000 micrograms/mL exhibited dose-dependent kinetics. The GHSA-induced chemokine secretion by hRPE was almost completely inhibited by actinomycin D and cycloheximide, suggesting that de novo mRNA and protein synthesis are necessary for the GHSA-induced IL-8 and MCP-1 production. Northern blot analysis of GHSA-induced hRPE IL-8 and MCP-1 mRNA expression corresponded to the time- and dose-dependent increases measured by enzyme-linked immunosorbent assay. High concentrations of glucose (20 mM; 360 mg/dl) increased GHSA-induced hRPE IL-8 and MCP-1 secretion, whereas added insulin (0.5 ng/mL) inhibited IL-8 but not MCP-1 protein secretion and mRNA expression. GHSA also induced hRPE to secrete GRO-alpha, RANTES, and NAP-2 chemokines. GHSA induction of hRPE chemokines further suggests a role for the hRPE in leukocyte infiltration, vascular injury, and neovascularization.

Cells, Cultured↗

Interleukin-7 (IL-7) induces retinal pigment epithelial cell MCP-1 and IL-8.

The neuroectodermally-derived retinal pigment epithelium (RPE) forms part of the blood-retina barrier where it is strategically-positioned to regulate leukocyte infiltration in retinal diseases. Activated human RPE cells possess several functions enabling them to perform this role including expression of HLA-DR antigens, production of intercellular adhesion molecule-1, and secretion of monocyte chemotactic protein-1 and interleukin-8. In this study, we examined the ability of interleukin-7 to induce RPE-derived monocyte chemotactic protein-1 and interleukin-8 and assessed the potentiating effects of interleukin-7 on interleukin-1 beta- and tumor necrosis factor-alpha-induced RPE monocyte chemotactic protein-1 and interleukin-8 production. Human RPE cells incubated with interleukin-7 (1-100 ng ml-1) for 24 hr secreted significant levels of antigenic RPE monocyte chemotactic protein-1 and interleukin-8 in a dose-dependent fashion interleukin-7 (P < 0.05). RPE costimulation with interleukin-7 and interleukin-1 beta (2 ng ml-1) or tumor necrosis factor-alpha (2 ng ml-1) resulted in additive increases (P < 0.05) in secreted monocyte chemotactic protein-1 and interleukin-8. Steady-state RPE monocyte chemotactic protein-1 mRNA was substantially increased by interleukin-7 (1-100 ng ml-1), while RPE interleukin-8 mRNA was mildly elevated by higher doses of interleukin-7 (10-100 ng ml-1). Time-dependent increases in RPE monocyte chemotactic protein-1 and interleukin-8 mRNA were noted. RPE monocyte chemotactic protein-1 mRNA peaked at 2 hr and decreased over 8 hr and 24 hr. Whereas, RPE interleukin-8 mRNA was perceptible at 2 hr, maximal at 8 hr, and reduced by 24 hr. Interleukin-7 potentiated interleukin-1 beta-induced monocyte chemotactic protein-1 and interleukin-8 steady-state mRNA expression at all interleukin-7 concentrations. Interleukin-7 potentiated tumor necrosis factor-alpha-induced RPE monocyte chemotactic protein-1 steady-state mRNA expression at all doses of interleukin-7 while only high dose interleukin-7 (100 ng ml-1) enhanced tumor necrosis factor-alpha-induced RPE interleukin-8 steady-state gene expression. Our data show that interleukin-7 is a primary stimulus of RPE monocyte chemotactic protein-1 and interleukin-8. This is one of the first reports demonstrating: (1) interleukin-7 induction of monocyte chemotactic protein-1 in any cell type, and (2) interleukin-7 induction of interleukin-8 in resident, tissue-based cells. These studies suggest that interleukin-7 potentiation of interleukin-1 beta and tumor necrosis factor-alpha-induced RPE monocyte chemotactic protein-1 and IL-8 may be important for the elicitation of leukocyte chemotaxins in diseased retinal tissue when only low ambient levels of individual pro-inflammatory cytokines are present.

Cells, Cultured↗

Differential expression of immunoreactive HLA-DR and ICAM-1 in human cultured orbital fibroblasts and orbital tissue.

Intercellular adhesion molecule-1 (ICAM-1) and class II major histocompatibility complex antigens (MHC II, HLA-DR), are two cell-surface ligands known to be critical to the initiation and propagation of immune-mediated inflammation. Their expression in tissue is induced by proinflammatory mediators, principally interferon-gamma, tumor necrosis factor-alpha, and interleukin-1 beta. We examined human orbital fibroblasts and intact human orbital tissue exposed to these mediators for the presence of immunoreactive ICAM-1 and HLA-DR antigen. These ligands were detectable on stimulated fibroblasts and on fibroblasts and vascular endothelium in samples of orbital fat and muscle. ICAM-1 reactivity was diffuse and occurred in response to all three proinflammatory mediators. In contrast, HLA-DR reactivity was intense but limited to fewer numbers of cells. Our results, demonstrating the differential expression of these two ligands, may help further to elucidate the underlying pathogenetic mechanisms involved in the initiation and perpetuation of immune-mediated orbital inflammatory diseases.

Adipose Tissue↗

The integrin superfamily and the eye.

Integrins may have many different roles in the eye, from influencing ocular development, cell migration in wound healing or pathologic processes, and modulating inflammation and thrombosis in ocular tissue. With the variety of integrins expressed on ocular cells, great versatility and redundancy are afforded in integrin interactions. Elucidation of the functional roles of specific integrins may answer important questions regarding tumor invasion, metastasis, and ocular development. The roles of integrins in inflammation is a rapidly advancing field that soon may lead to anti-inflammatory pharmacologic agents. Potent integrin antagonists, such as cyclic RGD peptides isolated from viper venom, may prove to be useful as anti-inflammatory, anti-metastatic, or anti-thrombotic agents for the treatment of ocular disease.

Amino Acid Sequence↗

Visual outcome and ocular survival after penetrating trauma. A clinicopathologic study.

PURPOSE: Ocular trauma is a leading cause of blindness in the United States. This study was undertaken to identify clinical and histopathologic factors that predict ocular survival and final visual acuity after penetrating ocular trauma. METHODS: One hundred seventy-six cases of ruptured globe were reviewed. Factors analyzed included (1) initial visual acuity, (2) wound location, (3) wound length, (4) mechanism of injury (sharp, blunt, or missile), (5) presence of intraocular foreign body, (6) type of ocular wound (perforating versus nonperforating), (7) performance of vitrectomy, and (8) histopathologic features (n = 40). Data were analyzed using univariate and multivariate logistic regression analysis. RESULTS: Predictors of excellent final visual acuity (20/60 or better) were initial visual acuity of 20/200 or better, wound location anterior to the plane of insertion of the four rectus muscles, wound length 10 mm or less, and sharp mechanism of injury. In contrast, predictors of poor vision were initial visual acuity of light perception or no light perception, wounds extending posterior to rectus muscle insertion plane, would length greater than 10 mm, and blunt or missile injury. Vitrectomy did not improve final vision. Factors predicting enucleation were similar to those predicting poor vision; however, vitrectomy decreased the likelihood of enucleation. Histopathologic review showed fibrous ingrowth in 93% of eyes enucleated more than 14 days after injury, and none of those enucleated within 2 weeks. CONCLUSION: Significant predictive factors of final visual acuity after penetrating trauma include visual acuity, wound location and length, and mechanism of injury. Establishment of predictors of ocular survival and visual function may assist clinicians in selecting salvageable eyes for surgical repair.

Adolescent↗

Cytokines in proliferative diabetic retinopathy and proliferative vitreoretinopathy.

We determined whether interleukin-8, monocyte chemotactic protein-1, and macrophage-colony stimulating factor are present in the vitreous of patients with proliferative diabetic retinopathy (PDR) or proliferative vitreoretinopathy (PVR). The levels of these cytokines were measured by specific enzyme-linked immunoassays in vitreous from 30 patients with PDR, 13 patients with PVR, and 26 control individuals, including 10 cadaver eyes and 16 patients with idiopathic macular holes, idiopathic macular puckers, vitreous hemorrhages, or uncomplicated retinal detachments. Detectable levels of interleukin-8 were found in 90% of vitreous samples of patients with PDR, 85% with PVR, and 58% of control samples. IL-8 was significantly increased in PDR (mean +/- SEM; 25.0 +/- 5.3 ng/ml; p = 0.01), but not in PVR (11.9 +/- 3.9 ng/ml; p = 0.50) compared to control human vitreous (8.5 +/- 2.5 2.5 ng/ml). MCP-1 was detected in 90% of vitreous samples of patients with PDR, 92% with PVR, and 81% of control samples. MCP-1 was significantly increased in PDR (6.2 +/- 0.9 ng/ml, p = 0.001) and PVR (7.7 +/- 2.5 ng/ml, p = 0.001) over the levels in control vitreous (1.2 +/- 0.2 ng/ml). M-CSF was detected in 94% of vitreous samples of patients with PDR, 88% with PVR, and 92% from control vitreous. M-CSF was significantly elevated in PDR (32.3 +/- 8.3 ng/ml, p = 0.03), but not in PVR (23.6 +/- 12.8 ng/ml, p = 0.4) compared to control (10.7 +/- 3.5 ng/ml). Our results suggest that IL-8, MCP-1, and M-CSF participate in the pathogenesis of PDR and PVR.

Chemokine CCL2↗

Interleukin-10 inhibition of HLA-DR expression in human herpes stromal keratitis.

PURPOSE: Human herpes stromal keratitis (HSK) is an important cause of visual loss and morbidity. The presentation of corneal and/or viral antigens is thought to activate T lymphocytes, resulting in aberrant cell-mediated immune responses that are central to the pathogenesis of HSK. Aberrant cellular expression of HLA-DR and intercellular adhesion molecule-1 (ICAM-1), both of which are necessary for optimal antigen-induced T-lymphocyte responses, is present in lesions of HSK, but little is known concerning endogenous cytokines that may inhibit HLA-DR or ICAM-I expression in human disease. In this study, the authors investigated the effects of interleukin-10 (IL-10) on HLA-DR and ICAM-1 expression in human HSK. METHODS: Penetrating keratoplasty specimens removed from 5 patients with HSK were divided to provide adjacent sections that were incubated with control medium or the same medium containing IL-10 (100 U/ml) for 48 hours. Immunoperoxidase staining was performed on each control and IL-10-treated corneal specimen to determine HLA-DR and ICAM-1 antigen expression. RESULTS: Interleukin-10 treatment resulted in profound reduction in immunoreactive HLA-DR, but not ICAM-1, in corneal cells and infiltrating leukocytes of all five HSK specimens. CONCLUSIONS: This study suggests that HLA-DR antigens may be selectively inhibited by cytokines released during inflammation in HSK. These results are the first to demonstrate cytokine suppression of HLA-DR in a human disease. Pharmacologic doses of IL-10 may inhibit HLA-DR-dependent immune responses that underlie a variety of destructive ocular inflammatory diseases.

Adult↗

Interleukin-8 as a macrophage-derived mediator of angiogenesis.

Angiogenic factors produced by monocytes-macrophages are involved in the pathogenesis of chronic inflammatory disorders characterized by persistent angiogenesis. The possibility was tested that interleukin-8 (IL-8), which is a cytokine that is chemotactic for lymphocytes and neutrophils, is also angiogenic. Human recombinant IL-8 was potently angiogenic when implanted in the rat cornea and induced proliferation and chemotaxis of human umbilical vein endothelial cells. Angiogenic activity present in the conditioned media of inflamed human rheumatoid synovial tissue macrophages or lipopolysaccharide-stimulated blood monocytes was equally blocked by antibodies to either IL-8 or tumor necrosis factor-alpha. An IL-8 antisense oligonucleotide specifically blocked the production of monocyte-induced angiogenic activity. These data suggest a function for macrophage-derived IL-8 in angiogenesis-dependent disorders such as rheumatoid arthritis, tumor growth, and wound repair.

Animals↗

Interleukin-6 (IL-6) gene expression and secretion by cytokine-stimulated human retinal pigment epithelial cells.

Retinal and choroidal inflammatory lesions are important causes of visual loss, but the mechanisms regulating intraocular inflammation remain poorly understood. By virtue of its position at the blood-retina barrier, the retinal pigment epithelium (RPE) cells may be critical to the initiation and propagation of ocular inflammation. Previously we showed that cytokine-stimulated RPE cells produce interleukin-8, a well-defined chemotactic factor for neutrophils and lymphocytes. In this study, we found that human RPE cells stimulated by human recombinant interleukin-1-beta (rIL-1 beta) or tumor necrosis factor-alpha (rTNF-alpha) produce interleukin-6 (IL-6). Using a plasmacytoma proliferation assay, significant levels of IL-6 were found in media of RPE cells stimulated with either rIL-1 beta or rTNF-alpha for 4 hr. Progressive accumulation of IL-6 in media overlying stimulated RPE cells occurred over the subsequent 20 hr. IL-1 beta was a significantly more potent stimulator of RPE IL-6 production than TNF-alpha, RPE IL-6 production in response to each of these cytokines was also dose-dependent over a range of 20 pg to 20 ng ml-1. Specific anti IL-6 antibody, but not control immunoglobulin, neutralized RPE-derived IL-6 activity in the plasmacytoma proliferation assays. RPE IL-6 mRNA levels were detectable 1 hr after cytokine stimulation, plateaued within 8 hr in 24-hr assays, and demonstrated dose-dependent kinetics in 6 hr assays. Lipopolysaccharide failed to induce RPE IL-6 mRNA expression or RPE IL-6 production.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence↗

CD68 antigen expression by human retinal pigment epithelial cells.

Although a primary role of the retinal pigment epithelium (RPE) is the phagocytosis of aged outer segment membranes, the RPE may also phagocytize particulates via several specific receptors that are characteristically present on mononuclear phagocytes of bone marrow origin. In recent immunophenotypic studies, CD68 monoclonal antibodies (mAb) have been shown to react selectively with a specific 110 kDa cytoplasmic glycoprotein present in mononuclear phagocytes from various sources. Designated as anti-macrophage antibodies that react with this macrophage-associated antigen, CD68 antibodies are now widely used for immunohistochemical identification of mononuclear phagocytes. Using a panel of CD68 mAb (KP1, EMB11, Ki-M6, Y1/82A, and Y2/131) we performed immunohistochemistry on three cytospin preparations of freshly isolated human RPE cells, three primary human RPE cultures, and 12 human RPE cell lines maintained in culture for up to 40 passages. Cytospin preparations of freshly isolated RPE cells demonstrated heavy reactivity in 5% of cells. Five- to 7-day-old primary RPE cultures exhibited uniform, heavy staining of all cells. Strong immunohistochemical reactivity persisted in all 12 cell lines at various passages up to and including passage 40. Stimulation of cultured RPE cells with interferon-gamma (100 U ml-1) for 24 and 48 hr did not produce observable differences in CD68 staining. RPE cells failed to stain when control mAb or mouse serum were substituted for the primary antibody. The constitutive expression of CD68 by neuroectodermally-derived RPE cells extends their immunophenotypic similarities with mesenchymally-derived mononuclear phagocytes and provides an additional antigenic marker to identify RPE cells in vitro.

Antigens, CD↗

Intercellular adhesion molecule-1 (ICAM-1) and HLA-DR antigens in herpes keratitis.

PURPOSE: Intercellular adhesion molecule-1 (ICAM-1) is a cell surface glycoprotein that binds leukocyte function antigen-1 receptor on leukocytes, thereby regulating leukocyte trafficking and function at sites of inflammation. Recently, the authors demonstrated ICAM-1 in human corneas exposed to proinflammatory cytokines, but ICAM-1 has not been reported in corneal disease. In this study, the presence of ICAM-1 in human disciform herpes simplex virus (HSV) keratitis is investigated. METHODS: Immunohistochemistry was performed for ICAM-1 on 4 keratoplasty specimens from patients with corneal scarring due to disciform HSV keratitis and 1 corneoscleral biopsy of a patient with active HSV keratoscleritis using specific, characterized monoclonal antibody to ICAM-1. Negative immunohistochemical controls included monoclonal antibodies to other vascular endothelial adhesion molecules or mouse serum. RESULTS: All 5 specimens demonstrated intense ICAM-1 immunoreactivity of keratinocytes, stromal keratocytes, and endothelial cells, predominantly in regions of leukocytic infiltration. Diffuse, intense HLA-DR positivity was detected throughout the corneas. The specimens failed to react with control antibodies. CONCLUSION: These results are the first to demonstrate ICAM-1 in human corneal disease and suggest important roles for ICAM-1 and HLA-DR co-expression in generating immune responses in HSV keratitis. Increased ICAM-1 expression in regions of leukocytic infiltration may regulate leukocyte-corneal cell binding, thereby promoting immune responses and damage by activated leukocytes.

Adult↗

Cryptococcal endophthalmitis: case report and review.

Cryptococcus neoformans is an opportunistic fungus with a predilection for infecting the meninges. Ocular sequelae of cryptococcal infections of the CNS usually include cranial nerve palsies or papilledema secondary to increased intracranial pressure. Intraocular cryptococcosis occurs less frequently, and over the last 23 years, only 27 cases have been reported, including the case presented here. Intraocular infection was most often manifested by chorioretinal lesions and vitritis. Underlying diseases were detected in only 11 (41%) of the 27 patients. Of note, ocular lesions preceded symptomatic meningitis in six (27%) of 22 patients with CNS involvement. For seven patients, the diagnosis was made by histologic examination of specimens of aqueous or vitreous humor; for another eight patients, the diagnosis was made after enucleation or at autopsy. Ocular involvement frequently led to severe visual loss; return of vision to normal was unusual. Early recognition and treatment may improve outcome for these patients.

Aged↗

Effects of steady electric fields on human retinal pigment epithelial cell orientation and migration in culture.

Low-level, steady electric fields of 6-10 volts/cm stimulated directional orientation and translocation of cultured human retinal pigment epithelial cells. The orientative movements (galvanotropism) consisted of somatic elongation of the cells into spindle shapes, followed by pivotal alignment orthogonal to the field. The anodal edges of the cells underwent retraction of their plasmalemmal extensions, while the cathode edges and the longitudinal ends developed lamellipodia and ruffled membranes. These tropic movements were followed by a translocational movement (galvanotaxis) of the cells towards the cathode. Staining of these migrating cells for actin showed the accumulation of stress fibers at the leading (cathodal) edge, as well as at the longitudinal ends of the elongated somata. These results suggest that endogenous, biologically-generated electric fields (eg., injury currents) may play a role in the guidance and migration of retinal pigment epithelial cells after retinal injury.

Actins↗

Interleukin-8. A corneal factor that induces neovascularization.

A rabbit corneal pocket model was used to demonstrate that physiologic concentrations of human recombinant (r) IL-8 may induce corneal neovascularization. Computer-assisted analysis of sequential fluorescein angiograms showed that rIL-8 doses ranging from 2 to 40 ng/cornea (P = 0.01), but not high dose rIL-8 (400 ng/cornea), results in neovascularization within 14 days. Repeat fluorescein angiograms 6 weeks after placing angiogenic doses of rIL-8 demonstrated significant regression (P = 0.01) of the vascularity present at 2 weeks, suggesting that IL-8 angiogenesis undergoes dynamic modulation similar to that normally seen in wound healing. To our knowledge, this is the first study showing an angiogenic role for IL-8, a finding that emphasizes the interplay between inflammation and wound healing. Our results imply that corneal-derived IL-8 may be important in corneal neovascularization, in particular, and that IL-8 may modulate wound healing in general. Finally, these results raise the possibility that corneal-derived cytokines, such as IL-8, may obfuscate the effects of agents tested in experimental corneal pocket models.

Angiography↗

Modulation and function of intercellular adhesion molecule-1 (CD54) on human retinal pigment epithelial cells.

As part of the blood-retina barrier, the neuroectodermally-derived retinal pigment epithelial (RPE) monolayer is strategically positioned to interact with circulating leukocytes and regulate their access to the retina. We, therefore, studied whether human RPE cells express intercellular adhesion molecule-1 (ICAM-1), a specialized cell surface glycoprotein that binds the leukocyte function antigen-1 receptor present on all leukocytes. Using specific monoclonal antibody to ICAM-1, immunohistochemical staining of freshly-isolated primary and fourth passaged human RPE cells resulted in delicate reaction product that increased dramatically upon exposure to human recombinant (r) interferon-gamma (rIFN-gamma), interleukin-1-beta (rIL-1 beta), or tumor necrosis factor-alpha (rTNF-alpha). Fluorescence-activated cell sorting analysis demonstrated 2-fold increases in constitutive RPE ICAM-1 expression within 6 hours of exposure to physiologic concentrations of rIFN-gamma, rIL-1 beta, or rTNF-alpha. In standardized leukocyte adherence assays, cultured RPE cells showed avid binding of neutrophils that increased significantly after stimulation with rIFN-gamma, rIL-1 beta, or rTNF-alpha (p less than 0.001). In parallel assays, monoclonal antibody to either ICAM-1 on RPE cells, or subunits of leukocyte function antigen-1 receptors on leukocytes significantly blocked leukocyte binding to unstimulated (p less than 0.001) or rIFN-gamma-stimulated RPE cells (p less than 0.001). To demonstrate RPE ICAM-1 expression in intact human tissue, fresh uveoretinal explants were exposed to rIFN-gamma, rIL-1 beta, or rTNF-alpha and stained using mAb to ICAM-1. Tissue sections of cytokine-stimulated explants revealed dramatic increases in RPE ICAM-1 immunoreactivity over the low levels observed in unstimulated uveoretinal tissue. Our results indicate that: (a) ICAM-1 is expressed at low levels on unstimulated RPE cells, (b) RPE ICAM-1 may be augmented by inflammatory cytokines, and (c) RPE ICAM-1 is a functional receptor mediating leukocyte binding. ICAM-1 on RPE cells at the blood-retina barrier may regulate leukocytic infiltration in ocular diseases in which leukocytes are important pathogenetically and may be important to the generation of ocular immune responses.

Cell Adhesion↗

Differential expression of human corneal and perilimbal ICAM-1 by inflammatory cytokines.

The mechanisms that regulate corneal infiltration by circulating leukocytes in inflammatory diseases are poorly understood. In this study, we investigated the effects of pro-inflammatory cytokines on corneal endothelial (CE) and stromal (CS) expression of intercellular adhesion molecule-1 (ICAM-1), a specialized cell surface glycoprotein that binds the leukocyte function antigen-1 (LFA-1) receptor present on all leukocytes and enhances immune responses. Using specific monoclonal antibody (mAb) to ICAM-1, immunohistochemical staining of intact human corneas resulted in discrete, granular reaction product in CE and CS cells as well as perilimbal vascular endothelium that increased dramatically when exposed to human recombinant interleukin-1-beta (rIL-1 beta), tumor necrosis factor-alpha (rTNF-alpha), and interferon-gamma (rIFN-gamma). Immunoreactive ICAM-1 in CE and CS cells was differentially increased by each of these cytokines. In contrast, immunoreactive endothelial-leukocyte adhesion molecule-1 and vascular cell adhesion molecule-1 were not detected in any CE or CS cells of unstimulated or cytokine-stimulated corneas. In standardized leukocyte adherence assays, neutrophil binding to CE surfaces of whole corneas increased significantly upon exposure to rIL-1 beta, rTNF-alpha, or rIFN-gamma (P less than 0.001). In parallel assays, mAb to ICAM-1 on CE cells or subunits of LFA-1 receptors on leukocytes, but not control mAb, significantly blocked leukocyte binding to unstimulated (P less than 0.01) or rIFN-gamma-stimulated corneas (P less than 0.001). Our results indicate that: (1) ICAM-1 is expressed at low levels on unstimulated CE cells, CS cells, and perilimbal vascular endothelium; (2) ICAM-1 may be augmented differentially in corneal and perilimbal tissue by pro-inflammatory cytokines; and (3) ICAM-1 is a functional ligand mediating corneal-leukocyte binding. Differential expression of ICAM-1 within corneal tissue may regulate keratitic precipitate formation, leukocyte trafficking and accumulation, and localized generation of immune responses.

Cell Adhesion Molecules↗

Human and monkey corneal endothelium expression of low-density lipoprotein receptors.

Receptors for low-density lipoprotein are necessary for high-affinity uptake of lipid and protein essential to cell structure and function. Distinct receptors for acetoacetylated low-density lipoprotein internalize oxidized or enzymatically modified low-density lipoprotein and extracellular matrix components. We identified low-density lipoprotein receptors on cultured human and monkey corneal endothelial cells by the avid incorporation of fluorescently labeled low-density lipoprotein that was competitively inhibited by excess unlabeled low-density lipoprotein but not by unlabeled acetoacetylated low-density lipoprotein. Specific uptake of labeled low-density lipoprotein was greatest in nonconfluent, growing cells and increased after low-density lipoprotein deprivation. Intact endothelial monolayers of whole human cornea also incorporated low-density lipoprotein but not acetoacetylated low-density lipoprotein. After scratch injury of human corneas, spreading endothelium adjacent to areas of cell loss internalized more fluorescent low-density lipoprotein than cells distant from the injury. Blood-aqueous barrier breakdown occurring in ocular diseases and after surgical and nonsurgical trauma may allow leakage of circulating low-density lipoprotein, which provides a rich supply of lipid and protein for endothelial use. Efficient, receptor-mediated, low-density lipoprotein uptake may facilitate repair of damaged corneal endothelial membranes and regeneration of intact, functional cell monolayers.

Acetoacetates↗