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Biomedical subjects

D Kreutzer

Publications and source records attributed to D Kreutzer.

At least 19 recordsLinked to original sources

Ex ova chick chorioallantoic membrane as a novel in vivo model for testing biosensors.

A major problem with implantable sensors is their short in vivo lifetime, due to strong tissue reactions (i.e., inflammation and fibrosis) caused by the implant and the failure of sensor components. The tissue reactions to the sensor, the biocompatibility of components, and the function of the sensor must be evaluated by using in vivo models. Current methods of in vivo biosensor testing are time- and labor- intensive and expensive. In addition, the results often vary on the basis of the surgical skills of the investigator. The in ova chorioallantoic membrane (CAM) of the developing chicken embryo was previously developed in our laboratory as a novel in vivo system to test biomaterials. In this new article, we describe a novel approach for testing biosensors in vivo using the ex ova CAM model as an alternative to the traditional mammalian models. Fertilized chicken eggs were incubated for 3 days in ova and then transferred into a petri dish (ex ova) for further incubation at 37 degrees C and 80% humidity. After 1 week of incubation, acetaminophen biosensors, used as model sensors, were placed on top of the CAM and allowed to incorporate for 1 week. Biosensors were then tested for their sensitivity to acetaminophen. CAM venules were injected with 0.2 mL of a 3.6 mM acetaminophen solution. The current produced by the sensor reflected the change in blood acetaminophen levels. Sensors were also assessed by using gross and histological evaluations. We previously reported on the similarity of the tissue response of the CAM with the mammalian models. The low cost, simplicity, and possibility to continuously visualize the sensor test site through a cell culture dish make this animal model particularly attractive for the rapid in vivo screening of biosensors.

Acetaminophen↗

In vivo evaluation of a dexamethasone/PLGA microsphere system designed to suppress the inflammatory tissue response to implantable medical devices.

The purpose of this research effort was to evaluate in vivo a newly developed dexamethasone/PLGA microsphere system designed to suppress the inflammatory tissue response to an implanted device, in this case a biosensor. The microspheres were prepared using an oil/water (O/W) emulsion technique. The microsphere system was composed of drug-loaded microspheres (including newly formulated and predegraded microspheres) and free dexamethasone. The combination of the drug and drug-loaded microspheres provided burst release of dexamethasone followed by continuous release from days 2-14. Continuous release to at least 30 days was achieved by mixing predegraded and newly formulated microspheres. The ability of our mixed microsphere system to control tissue reactions to an implant then was tested in vivo using cotton thread sutures to induce inflammation subcutaneously in Sprague-Dawley rats. Two different in vivo studies were performed, the first to find the dosage level of dexamethasone that effectively would suppress the acute inflammatory reaction and the second to show how effective the dexamethasone delivered by PLGA microspheres was in suppressing chronic inflammatory response to an implant. The first in vivo study showed that 0.1 to 0.8 mg of dexamethasone at the site minimized the acute inflammatory reaction. The second in vivo study showed that our mixed microsphere system suppressed the inflammatory response to an implanted suture for at least 1 month. This study has proven the viability of microsphere delivery of an anti-inflammatory to control the inflammatory reaction at an implant site.

Animals↗

The chick chorioallantoic membrane as a novel in vivo model for the testing of biomaterials.

Current in vivo models for testing biomaterials are time and labor intensive as well as expensive. This article describes a new approach for testing biomaterials in vivo using the chorioallantoic membrane (CAM) of the developing chicken embryo, as an alternative to the traditional mammalian models. Fertilized chicken eggs were incubated for 4 days, at which time a small window was cut in the shell of the egg. After 1 week of incubation, the CAM received several test materials, including the endotoxin LPS, a cotton thread and a Silastic tubing. One day and 1 week later, the tissue response to the test materials was assessed using gross, histological, and scanning electron microscope evaluations. The inflammatory response of the chorioallantoic membrane to biomaterials was fully characterized and found to be similar to that of the mammalian response and was also seen to vary according to test materials. We also found that the structure and geometry of the test materials greatly influenced the incorporation of the samples in the CAM. The similarity of the tissue response of the CAM with the mammalian models, plus the low cost, simplicity, and possibility to continuously visualize the test site through the shell window make this animal model particularly attractive for the rapid in vivo screening of biomaterials.

Animals↗

Dexamethasone/PLGA microspheres for continuous delivery of an anti-inflammatory drug for implantable medical devices.

The purpose of this research was to develop polylactic-co-glycolic acid (PLGA) microspheres for continuous delivery of dexamethasone for over a 1-month period, in an effort to suppress the acute and chronic inflammatory reactions to implants such as biosensors, which interfere with their functionality. The microspheres were prepared using an oil-in-water emulsion technique. The oil phase was composed of 9:1 dichloromethane to methanol with dissolved PLGA and dexamethasone. Some microspheres were predegraded for 1 or 2 weeks. Ten percent of polyethylene glycol was added to the oil phase in alternative formulations to delay drug release. The in vitro release studies were performed in a constant temperature (37 C) warm room, in phosphate-buffered saline at sink conditions. Drug loading and release rates were determined by HPLC-UV analysis. The standard microsphere systems did not provide the desired release profile since, following an initial burst release, a delay of 2 weeks occurred prior to continuous drug release. Predegraded microspheres started to release dexamethasone immediately but the rate of release decreased after only 2 weeks. A mixed standard and predegraded microsphere system was used to avoid this delay and to provide continuous release of dexamethasone for 1 month.

Anti-Inflammatory Agents↗

Characterization and biocompatibility studies of novel humic acids based films as membrane material for an implantable glucose sensor.

Multilayered films of humic acids (HAs) (naturally occurring biopolymers) were investigated as a potential semipermeable membrane for implantable glucose sensors. These films were grown using a layer-by-layer self-assembly process of HAs and oppositely charged ferric ions. The growth of these assemblies exhibited strong dependence on the pH and ionic strength of HAs solutions, which correlated with the degree of ionization of the carboxyl groups and neutralization-induced surface spreading. Quartz crystal microbalance (QCM) and ellipsometric studies have shown repeatable, stepwise increase in mass (as high as 5.63 microg/cm(2)) and in film thickness (ca. 24.3 nm per layer) for these assemblies. The permeability of glucose through these membranes can be regulated by varying the number of self-assembled HAs/Fe(3+) layers. Moreover, a 200 nm thick HAs/Fe(3+) film (in its hydrated state) had a shear modulus of about 80 MPa, implying stability upon implantation. These films were determined to be biocompatible since in vivo studies indicated only mild tissue reaction along with some neovascularization.

Animals↗

Mechanisms of Actinobacillus actinomycetemcomitans-induced expression of interleukin-8 in gingival epithelial cells.

BACKGROUND: Gingival epithelial cells (GEC) are the first cells of the periodontium to encounter known periodontal pathogens, such as Actinobacillus actinomycetemcomitans (A.a.) and, therefore, the role of this pathogen in the initiation of the inflammatory response is critical. However, little is known about the interactions of A.a. with GEC. In the present study, the mechanisms by which extracts from A.a. induced expression of the chemotactic cytokine interleukin-8 (IL-8) in GEC, in vitro, were examined. METHODS: An established GEC line, PP, was co-cultured with sonicated extracts of A.a. under various in vitro experimental conditions, and the IL-8 secretion was determined with enzyme-linked immunosorbent assay. RESULTS: A.a. extracts induced a time- and dose-dependent expression of IL-8 from the cells. Dose-response studies indicated that the highest IL-8 secretion (7-fold, P < 0.01) was at the level of 50 micrograms/ml of A.a. extract. Time-course studies revealed a dramatic increase of IL-8 expression after 12 hours of continuous stimulation. Pretreatment with polymyxin B (lipopolysaccharide [LPS] inhibitor) did not reduce the IL-8 expression induced by A.a. extracts (P > 0.10). The introduction of p38 mitogen-activated protein kinase (MAPK) inhibitor SB 203580 markedly inhibited (> 75%, P < 0.01) A.a.-induced expression of IL-8. It is concluded that A.a. extracts upregulated the basal IL-8 expression in GEC. CONCLUSIONS: The effect was LPS-independent and involved a p38 MAPK signal transducing pathway. Understanding mechanisms of proinflammatory cytokine induction is important in periodontal pathology as it may lead to novel therapeutic approaches for periodontitis, thus controlling host inflammatory responses.

Aggregatibacter actinomycetemcomitans↗

Growth-related oncogene-alpha expression in human nasal polyps.

The cytokine growth-related oncogene-alpha (GRO-alpha) is a potent mediator of leukocyte recruitment and proliferation in inflammatory diseases. We hypothesized that GRO-alpha is produced in the inflammatory nasal polyp microenvironment. Evaluation of nasal polyps from 27 patients for distribution and content of GRO-alpha antigen, by use of immunohistochemical techniques and ELISA, revealed its presence in all 27 tissue samples. It was found predominantly within the eosinophils and neutrophils, with tissue levels ranging from 34 pg/mg total protein (TP) to 1746 pg/mg TP, with a mean value of 631 +/-98 pg/mg TP. Control tissues contained between 82 pg/mg TP and 316 pg/mg TP (mean 176+/-38 pg/mg TP). These results were statistically significant (P<0.03). Clinical correlations and statistical comparisons were calculated. These data suggest that GRO-alpha may be an important factor in the recruitment and activation of leukocytes in nasal polyposis, making it a potential target for therapeutic intervention.

Adult↗

Angiogenesis and neuroblastomas: interleukin-8 and interleukin-8 receptor expression in human neuroblastoma.

PURPOSE: Studies have demonstrated that the pro-angiogenic cytokine interleukin-8 (IL-8) and the IL-8 receptors likely have a role in the growth and metastasis of various solid tumors. We hypothesized that in vivo neuroblastoma expresses IL-8 and the IL-8 receptors A and B, and that factors known to regulate IL-8 expression are present and active in the neuroblastoma microenvironment. MATERIALS AND METHODS: To confirm the presence of IL-8/IL-8 receptors in neuroblastoma, immunohistochemical analysis for IL-8 and its receptors was performed on 10 archival specimens, including benign adrenal and well to poorly differentiated neuroblastoma samples. Immunohistochemical analysis was also performed for interleukin-1beta (IL-1beta) and tumor necrosis factor-alpha. Cultured neuroblastoma cells SK-N-MC and SK-N-SH were stimulated with 10 ng./ml. IL-1beta or tumor necrosis factor-alpha and control media (15 each). Cell culture supernatants were analyzed with enzyme-linked immunosorbant assay for IL-8 levels at 24 and 48 hours. RESULTS: Minimal expression of IL-8 was noted in benign adrenal tissue but expression for IL-8 was present in all neuroblastoma specimens. Microvessel staining was present in 30% of the specimens. All tumor specimens expressed IL-8 receptor B, and both receptors were expressed in the tumor microvasculature. Immunohistochemical analysis confirmed the presence of IL-1beta and tumor necrosis factor in the neuroblastoma microenvironment. In vitro studies demonstrated that SK-N-MC and SK-N-SH cells express low levels of IL-8 under normal conditions and that IL-1beta and tumor necrosis factor-alpha significantly increased expression of IL-8 at 24 and 48 hours. CONCLUSIONS: Our results indicate that IL-8 and its receptors are expressed in neuroblastoma tumor specimens. In addition, the fact that IL-1beta and tumor necrosis factor-alpha are expressed in the neuroblastoma microenvironment combined with our in vitro results suggests that these cytokines may be involved in in vivo regulation of IL-8 in human neuroblastoma. Understanding the angiogenic factors and regulatory cascade promoting angiogensis in neuroblastoma may lead to the development of effective anti-angiogenic strategies.

Enzyme-Linked Immunosorbent Assay↗

Differential expression of interferon gamma by mitogen-stimulated peripheral blood mononuclear cells among Kuwaiti psoriasis patients.

Most diseases exhibit characteristic profiles of cytokine expression, broadly subdivided into Th1, involving primarily cell-mediated responses, of which Interferon-gamma (INF-gamma), Interleukin-2 (IL-2) and Tumor Necrosis Factor-alpha (TNF-alpha) are hallmarks, and Th2 processes, which often involve activation of the humoral arm of the immune system, resulting in elevated levels of IL-4, IL-5 and IL-10. Psoriasis, a disorder characterized by disfiguring skin lesions and elevated levels of activated CD4+ T helper lymphocytes in both peripheral blood and lesional tissue, exhibits a profile of cytokine expression that includes high levels of TNF-alpha and IFN-gamma, with low IL-5 and IL-10, indicating that immunologically, the pathogenesis of the disease is Th1. In this study, we report the results of an investigation of peripheral blood mononuclear cell cytokine expression among Kuwaiti psoriasis patients; we demonstrated two patterns of IFN-gamma production which may suggest differing pathogeneses. Whole, haparinized blood was donated by 17 patients with active psoriasis and 11 healthy control subject. Mononuclear cells were isolated by density centrifugation and cultured for 3 days in the presence or absence of a mitogen (PHA). Supernatants were assayed for IFN-gamma (a Th1 marker) and IL-10 (a Th2 marker) by enzyme-linked immunoabsorption assay (ELISA). IFN-gamma expression by both PHA-stimulated and unstimulated cultures from psoriatics significantly exceeded that of controls (p < 0.001), whereas no significant differences in IL-10 expression were noted between psoriatic and control subjects. Stimulation indices (cytokine concentration in PHA-stimulated/unstimulated cultures, SI) for psoriatic subjects were significantly higher than those of controls for IFN-gamma (p = 0.000), but not for IL-10. Ratios of SI (SI IFN-gamma/SL IL-10) for the psoriatic subjects also were significantly greater for the psoriatic subjects than for the controls (p = 0.003). However, within the psoriatic group, eight patients failed to show the expected elevation of IFN-gamma/IL-10 ratio as a result of high unstimulated levels of IFN-gamma production. The divergence of IFN-gamma expression within the psoriatic group may indicate two different modes of T lymphocyte activation contributing to the pathogenesis of psoriasis in this study.

Adult↗

Angiogenesis in normal tissue adjacent to colon cancer.

BACKGROUND AND OBJECTIVES: Angiogenesis in malignant neoplasms, as measured by microvessel density, has been shown to correlate with survival or stage in some studies of breast, gastric, and colorectal cancer. We hypothesized that aggressive cancers promote angiogenesis in normal tissue adjacent to the invading neoplasm. METHODS: To test this hypothesis, 36 specimens of colon adenocarcinoma curatively resected between 1986 and 1990 were sectioned and stained for factor VIII-related antigen, vascular endothelial growth factor (VEGF), and interleukin-8 (IL-8). Microvessel density was measured within the colon cancer and in adjacent, histologically normal tissue. Clinical/pathological variables were examined using multivariate analysis and Student t-test. RESULTS: Microvessel density was higher in the neoplasms (26.0+/-1.66/ 0.25 mm2) than in the surrounding normal tissue (22.3+/-1.88/0.25 mm2) (P=0.03). The difference was primarily due to smaller neoplasms (T1 and T2) which had vessel counts of 10.6+/-0.74/0.25 mm2 in the adjacent normal tissue compared to vessel counts of 18.9+/-3.02/0.25 mm2 within these tumors (P=0.02). T3 and T4 neoplasms had equivalent amounts of angiogenesis within the lesion (26.9+/-1.81/0.25 mm2) and in the histologically normal margin (24.2+/-1.98/0.25 mm2) (P=0.12). VEGF was present in the tumor microenvironment in 100% and IL-8 in 45% of specimens stained for these angiogenic cytokines. Microvessel density did not correlate with 5-year survival. CONCLUSIONS: Our data suggest that colon cancers that invade through the muscularis propria may have a greater ability to induce angiogenesis in adjacent normal tissue.

Adenocarcinoma↗

Characterization of the eosinophil chemokine RANTES in nasal polyps.

Previous studies have demonstrated that the cytokine RANTES (Regulated And Normal T cell Expressed and Secreted) has been shown to be a potent mediator of eosinophil chemotaxis in vitro and of leukocyte recruitment. Because eosinophils are the hallmark cells in nasal polyposis, we hypothesize that RANTES is locally produced within the nasal polyp microenvironment and is responsible for the eosinophil recruitment seen in nasal polyposis. To begin to test this hypothesis, we evaluated nasal polyps from 17 patients and 3 control specimens for distribution and content of RANTES using immunohistochemical techniques and enzyme-linked immunosorbent assay technology. Our immunohistochemical studies demonstrated that in nasal polyposis, RANTES antigen staining occurred predominantly within eosinophils and epithelial cells. To quantify the relative levels of RANTES in normal and nasal polyp specimens, tissue homogenates were prepared, quantified, and normalized to protein levels. We detected RANTES in all 17 nasal polyp tissue homogenates (566 +/- 16 pg/mg total protein). The RANTES levels in nasal polyp homogenates were nearly 40-fold higher than the RANTES levels in normal tissue (15.7 +/- 28.2 pg/mg total protein). Thus, it appears that increased expression of RANTES by eosinophils and epithelial cells within the nasal polyp microenvironment promotes eosinophil recruitment and activation within nasal polyps. We hypothesize that RANTES induces increased recruitment and activation of eosinophils, presumably contributing to the increased tissue changes associated with nasal polyposis.

Adult↗

Expression of basic fibroblast growth factor and its receptors by head and neck squamous carcinoma tumor and vascular endothelial cells.

BACKGROUND: Basic fibroblast growth factor (bFGF) is a potent angiogenic factor implicated in tumor growth and metastasis. To determine if bFGF and basic fibroblast growth factor receptor 1 (bFGFR1) and 2 (bFGFR2) are upregulated in head and neck squamous cell carcinoma (HNSCC), we measured the distribution and levels of each in HNSCC specimens and control specimens. METHODS: Head and neck squamous cell carcinoma and control tissue specimens were analyzed qualitatively (40 patients, 10 controls) using immunohistochemistry, and quantitatively (26 patients, 8 controls) using immunoassays and graded immunohistochemistry. Control tissue consisted of palatal tissue obtained during uvulopalatopharyngoplasty (UPPP). RESULTS: Immunohistochemical analysis revealed that bFGF, bFGFR1, and bFGFR2 antigens were strongly associated with cancer and vascular endothelial cells in HNSCC. Control tissue had moderate staining of vascular endothelium and no stromal staining. Quantitative analysis of bFGF in tissue homogenates indicated that bFGF levels in cancer specimens were significantly elevated compared with control tissues (420.3 +/- 360.9 ng/mg total protein versus 49.2 +/- 48.7, respectively, P < or =0.05). When analyzed by clinical stage, bFGF levels were significantly higher in stage III patients as compared with stage IV patients (P < or =0.01). When immunohistochemistry results were correlated with clinical stage, bFGF (P < or =0.01), bFGFR1 (P < or =0.001), and bFGFR2 (P < or =0.0001) staining was significantly more intense in the cancer cells of stage III versus stage IV patients. CONCLUSION: Enhanced expression of bFGF and bFGF receptors by cancer and vascular endothelial cells is present in HNSCC, and may contribute to tumor growth and metastasis in HNSCC by mediating angiogenesis. Strategies aimed at decreasing the expression of bFGF and its receptors may be of therapeutic benefit in HNSCC, particularly at an early stage of disease.

Carcinoma, Squamous Cell↗

Interleukin-8 expression in human nasal polyps.

The cytokine interleukin 8 (IL-8) has been shown to be a potent mediator of leukocyte recruitment and neovascularization in inflammatory and neoplastic diseases. In this study we hypothesize that IL-8 produced in the nasal polyp microenvironment is responsible for the leukocyte recruitment seen in nasal polyposis. To test this hypothesis we evaluated nasal polyps for distribution and content of IL-8 antigen with immunohistochemical techniques and radioimmunoassay to determine tissue levels of IL-8. The immunohistochemical results demonstrated that IL-8 antigen staining occurred predominantly within inflammatory cells and epithelium. IL-8 was detected in all nasal polyp tissue homogenates (a mean value of 1767 +/- 1633 pg/mg total protein (TP) with a range of 134 to 3668 pg/mg TP vs control specimens with a mean value of 77 pg/mg TP with a range of 0.09 to 255 pg/mg TP). These data demonstrate the presence and distribution and levels of IL-8 antigen in nasal polyps in vivo, supporting our hypothesis that local production of IL-8 could be an important factor in the sustained recruitment of leukocytes in nasal polyposis. Thus IL-8 likely plays a significant role in the pathogenesis of this disease process and therefore is a potential target for therapeutic intervention.

Adult↗

Interferon gamma expression in human nasal polyps.

One feature among nasal polyps (NPs) is the predominance of lymphocytes and eosinophils. We hypothesize that elevated levels of interferon gamma (IFN-gamma) activate lymphocytes and eosinophils within the NP microenvironment. Nasal polyps were evaluated for distribution and levels of IFN-gamma in specimens from 27 patients with nasal polyposis and 4 controls. Immunohistochemical study revealed IFN-gamma staining of eosinophils, glandular cells, and epithelium (27 of 27 patients). ELISA analysis indicated elevated IFN-gamma levels in total NP tissues (25.6 +/- 7.23 pg/mg total protein [TP]) compared with controls (16.27 +/- 6.54 pg/mg TP). Three subpopulations were identified based on IFN-gamma levels: low IFN-gamma group (10.7 +/- 5.51 pg/mg TP); medium IFN-gamma group (25.70 +/- 5.90 pg/mg TP); and high IFN-gamma group (52.58 +/- 10.29 pg/mg TP). The latter levels were approximately 3.5 times the control levels (P<0.0025). Patients with previous polypectomy surgery showed higher levels of IFN-gamma compared with controls (P<0.0423). A trend was found with increased IFN-gamma levels and allergy, asthma, and topical steroid use.

Adult↗

Murine model of otitis media with effusion: immunohistochemical demonstration of IL-1 alpha antigen expression.

Recent studies have suggested that cytokines likely play a central role in the formation and maintenance of otitis media with effusion (OME). Currently, there is no immunologically defined animal model for the study of cytokines as they contribute to the formation of OME. In the present study, a murine model of OME, using eustachian tube blockage via an external surgical approach, was developed. The murine model temporal bone histology appears to mimic the histology found in chronic otitis media with effusion in humans. Additionally, using this murine model, interleukin-1 alpha (IL-1 alpha) expression was detected in the middle ear using standard immunohistochemical techniques. IL-1 alpha seemed localized to the epithelial lining of the middle ear as well as 5% to 10% of inflammatory cells. This model should provide the necessary tool to further study the immunologic aspects of OME.

Animals↗

Elevated interleukin-1 expression in human neonatal neutrophils.

Newborn infants have an increased morbidity and mortality from infection caused in part by diminished polymorphonuclear leukocyte (PMN) function and impaired recruitment of PMN to sites of inflammation. Recent studies in our laboratory and others have demonstrated the in vitro expression of several cytokines, including IL-1-beta, in adult human peripheral blood PMN. Because newborn infants have an impaired inflammatory response, we sought to compare the synthetic capability and regulation of cytokine expression in neonatal and adult PMN. In our present studies, we found that tumor necrosis factor-alpha and lipopolysaccharide could induce IL-1-beta expression in both neonatal and adult PMN and that neonatal PMN produced significantly more IL-1-beta when compared with adult PMN. The PMN chemotactic peptide fMet-Leu-Phe did not induce IL-1-beta expression in either adult or neonatal PMN. Elevated cytokine expression by neonatal PMN may play an important role in the regulation of the immune and inflammatory systems at sites of injury and infection in neonates.

Adult↗

Demonstration of interleukin 6 in middle ear effusions.

In response to infection in the middle ear, inflammatory cells produce cytokines--potent regulators and mediators of the immune response. In an earlier study, we demonstrated that levels of the cytokine interleukin 1 were higher in middle-ear effusions from younger children, while levels of the cytokine tumor necrosis factor were higher in middle-ear effusions from older children and in those requiring tympanostomy on multiple occasions. In this study, we evaluated middle-ear effusions for levels of the cytokine interleukin 6. Activities of interleukin 6 include stimulation of bone erosion and production of antibodies and fever. Using an enzyme-linked immunosorbent assay system, significant levels of interleukin 6 (greater than 0.2 pg/mL) were found in 14 (36%) of 39 middle-ear effusions from 25 children with otitis media with effusion. The mean (+/- SE) level of interleukin 6 in middle-ear effusions was 173.9 +/- 74.7 pg/mg of total protein. Like interleukin 1, levels of interleukin 6 were higher in younger children. Tumor necrosis factor may be an important regulator of the local immune response in the middle-ear cleft during persistence of otitis media with effusion, while interleukin 1 and interleukin 6 may be important regulators during the early stages of otitis media with effusion.

Child, Preschool↗

Cytokine regulation of C3 and C5 production by human corneal fibroblasts.

Recent investigations have suggested that cytokines play important roles during inflammation and host defense, primarily by regulating the diverse functions of immunologic cells (e.g. lymphocytes and monocytes). However, much less is known about the capacity of cytokines to also regulate the functions of resident tissue cells. We hypothesize that during inflammation, cytokines (e.g. monokines and lymphokines) directly regulate the expression of inflammatory precursors and mediators, such as the third and fifth complement components, by resident ocular cells and are therefore important in the local regulation of ocular inflammation. To test this hypothesis we developed an in vitro culture system utilizing isolated human corneal fibroblasts and examined the effects of specific cytokines, i.e. interleukins and interferons, on the production of the third and fifth components of the complement system. Human corneal fibroblasts were cultured in the presence of varying concentrations (1-500 U ml-1) of interleukin 1 alpha, interleukin 1 beta, interleukin 2, interferon alpha and interferon gamma for 48 hr at 37 degrees C, 5% CO2. The supernatants were then evaluated for antigen levels for the third and fifth components of complement using specific enzyme-linked immunospecific assays. These studies revealed that both interleukin 1 alpha and interleukin 1 beta induced seven to tenfold increases in the levels of the third component. Similarly interferon alpha and interferon gamma stimulated an approximate four and ninefold dose-dependent increase, respectively, in the production of the third component. Analysis of the effect of interleukin 2 on third component production demonstrated that higher concentrations (100 U ml-1) were required to induce a fivefold increase in the production of the third component.(ABSTRACT TRUNCATED AT 250 WORDS)

Cells, Cultured↗