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R N Frank

Publications and source records attributed to R N Frank.

At least 19 recordsLinked to original sources

Antioxidants attenuate early up regulation of retinal vascular endothelial growth factor in streptozotocin-diabetic rats.

AIMS/HYPOTHESIS: A strong positive correlation has been found between lipid peroxidation product and vascular endothelial growth factor concentrations in the vitreous of patients with proliferative diabetic retinopathy. To establish a causal relation between diabetes-associated enhanced oxidative stress and vascular endothelial growth factor production, we evaluated two antioxidants, DL-alpha-lipoic acid and taurine, on retinal vascular endothelial growth factor protein and mRNA expression and on parameters of oxidative stress in streptozotocin-diabetic rats. METHODS: Our experiments were on control rats and streptozotocin-diabetic rats with a 6-week duration of diabetes, treated with or without DL-alpha-lipoic acid (100 mg x kg(-1) x d(-1), i.p.) or taurine (1% in the diet) starting from induction of diabetes. Vascular endothelial growth factor protein in retinal homogenates was assessed by sandwich ELISA with an affinity-purified polyclonal antibody and vascular endothelial growth factor mRNA by ribonuclease protection assay. Retinal lipid peroxidation products i.e. malondialdehyde plus 4-hydroxyalkenals were quantified with N-methyl-2-phenylindole. Retinal reduced and oxidized glutathione, ascorbate, dehydroascorbate, and sorbitol pathway intermediates were measured spectrofluorometrically, and taurine by reverse-phase HPLC. RESULTS: Vascular endothelial growth factor protein concentration (means +/- SD) was increased in diabetic rats compared with control rats (33+/-7 vs 19+/-5 pg/mg total protein, p < 0.01) This increase was attenuated by taurine (26+/-8, p < 0.05) and prevented by DL-alpha-lipoic acid (21+/-4, p < 0.01). Vascular endothelial growth factor mRNA abundance was reduced by 1.4-fold in diabetic rats compared with control rats and this decrease was attenuated but not completely prevented by both antioxidants. Malondialdehyde plus 4-hydroxyalkenal concentration was increased in diabetic rats compared with control rats, and both antioxidants arrested accumulation of lipid peroxidation products. Taurine, reduced glutathione, oxidized glutathione, ascorbate, dehydroascorbate and sorbitol pathway intermediate concentrations as well as oxidized glutathione/reduced glutathione and dehydroascorbate/ascorbate ratios were similar in control and diabetic rats treated with or without taurine. CONCLUSION/INTERPRETATION: Oxidative stress is directly involved in up regulation of vascular endothelial growth factor protein in the retina during early diabetes.

Alternative Splicing↗

Glucose-specific regulation of aldose reductase in human retinal pigment epithelial cells in vitro.

PURPOSE: To test the hypothesis that pathophysiological levels of glucose regulate aldose reductase (AR2) gene expression, protein production, and activity in human retinal pigment epithelial (RPE) cells in vitro. METHODS: Primary cultures of human RPE cells were grown for up to 72 hours in media supplemented with various concentrations of glucose (5, 20, or 75 mM), or in 5 mM glucose containing media supplemented with one of the following: galactose, the transported but nonmetabolized glucose analogue 3-O-methylglucose (3-OMG), or the impermeant hexitol mannitol-so that the final hexose concentrations were equimolar to those of the various glucose concentrations used. Changes in the transcript levels for AR2 mRNA, AR2 protein content, and AR2 enzyme activity were determined. RPE glucose utilization and lactate production were determined in media containing 5 and 20 mM glucose. RESULTS: Glucose utilization and lactate production increased 4.8-fold and 4.4-fold, respectively, when RPE cells were grown in media containing 20 mM versus 5 mM glucose. Glucose was more effective than any other hexose in the induction of AR2 mRNA or increased AR2 protein expression. When RPE cells were grown in media containing 20 mM mannitol, 3-OMG, or galactose they had lower levels of AR2 mRNA expression than when cells were grown in medium containing 5 mM glucose. RPE cells grown in medium supplemented with 20 or 75 mM galactose did not show a greater increase in AR2 protein expression than cells grown in medium containing 5 mM glucose. Hyperosmotic induction of AR2 mRNA was the same in medium containing 75 mM glucose or 75 mM mannitol, but was at least 50% lower when RPE cells were grown in 75 mM galactose or 3-OMG. CONCLUSIONS. These data indicate that elevations in ambient glucose result in greater metabolism of glucose through glycolysis and polyol metabolism. Induction of AR2 was greatest when RPE cells were grown in pathophysiological concentrations of glucose. Hyperosmolar stress is not a necessary determinant of AR2 mRNA, AR2 protein, or AR2 protein activity in cells that form the outer blood-retinal barrier. Increased facilitative glucose transport or glucose metabolism appears to be requisite for glucose-specific and nonosmotic regulation of AR2 in the RPE cell in vitro.

3-O-Methylglucose↗

Race, iris color, and age-related macular degeneration.

PURPOSE: While most observers agree that age-related macular degeneration (AMD) is much more common in white persons than in persons of black African ancestry, the influence of iris color has been more controversial. We reexamined relationships between race, iris color, and AMD in a series of patients from our retina clinic. METHODS: We evaluated, in masked fashion, stereoscopic photographs of the retinas and irides in 306 sequential patients 60 years of age or older from our retina clinics. Four readers judged whether AMD was present, absent, or questionable in the retinal photographs and labeled iris color as blue, hazel, or brown. Presence or absence of AMD and presence and severity of the various macular lesions were determined by "majority vote" of the readers. We evaluated inter-rater agreement using the kappa statistic. We compared the prevalence of AMD and of specific AMD lesions as a function of race, sex, and iris color by contingency table analysis. RESULTS: The kappa statistic showed good inter-observer agreement, being 0.466 (P < 10(-6)) for definite or questionable AMD and ranging from 0.185 to 0.522 (P = 0.0047 to P < 10(-6)) for most lesions. We found significantly more AMD in white patients than in black patients (X2 = 27.54, P < 10(-4)). There was no significant difference in AMD prevalence by sex. In white patients, AMD was significantly more prevalent in individuals with blue or hazel irides than in those with brown irides (X2 = 15.04, P = .02). CONCLUSIONS: We confirm previous findings of a higher prevalence of AMD in white persons than in black persons. We also agree with those observers who claim that white subjects with light-colored irides have a higher prevalence of AMD than those with dark-colored irides. We suggest that differences in the association between iris pigmentation and AMD in different studies using different research methods may reflect genetic difference in the groups being studied.

Black or African American↗

Antioxidant enzymes in the macular retinal pigment epithelium of eyes with neovascular age-related macular degeneration.

PURPOSE: To test the hypothesis that neovascular age-related macular degeneration is related to oxidative stress involving the macular retinal pigment epithelium. This study investigated, as a function of age, levels of enzymes that defend tissues against oxidative stress in the macular retinal pigment epithelium of human eyes with this disease. METHODS: Surgical specimens of macular choroidal neovascular membranes from eyes with age-related macular degeneration and the macular regions of whole donor eyes with neovascular age-related macular degeneration or without evident ocular disease were studied by quantitative electron microscopic immunocytochemistry with colloidal gold-labeled second antibodies. Relative levels in retinal pigment epithelium cell cytoplasm and lysosomes were determined of five enzymes believed to protect cells from oxidative stress, as well as levels of the retinal pigment epithelium marker cytoplasmic retinaldehyde-binding protein, for comparison with the enzymes. RESULTS: Copper, zinc superoxide dismutase immunoreactivity increased and catalase immunoreactivity decreased with age in cytoplasm and lysosomes from macular retinal pigment epithelium cells of normal eyes and eyes with age-related macular degeneration. Cytoplasmic retinaldehyde-binding protein immunoreactivity showed no significant relationship to age or the presence of neovascular age-related macular degeneration. Glutathione peroxidase immunoreactivity was absent from human retinal pigment epithelium cells. Both heme oxygenase-1 and heme oxygenase-2 had highly significantly greater immunoreactivity in retinal pigment epithelium cell lysosomes than in cytoplasm, differing from the much greater cytoplasmic immunoreactivity of the other proteins studied. This immunoreactivity decreased with age, particularly in the lysosomes of retinal pigment epithelium cells from eyes with neovascular age-related macular degeneration. These decreases were of borderline significance (P = .067 for heme oxygenase-1; P = .12 for heme oxygenase-2) when eyes with age-related macular degeneration were compared with normal eyes by multivariable logistic regression. CONCLUSIONS: The high heme oxygenase-1 and heme oxygenase-2 lysosomal antigen levels in macular retinal pigment epithelium cells of eyes with neovascular age-related macular degeneration suggest that oxidative stress causes a pathologic upregulation of these enzymes. Increased lysosomal disposal may indicate that the reparative functions of these enzymes are accompanied by deleterious effects, necessitating their rapid removal from the cell. The much higher heme oxygenase-1 and heme oxygenase-2 antigen levels in macular retinal pigment epithelium cells from younger individuals suggest that protective mechanisms against oxidation and, hence, presumably to the development of age-related macular degeneration, decrease with age.

Adult↗

Subnormal retinal oxygenation response precedes diabetic-like retinopathy.

PURPOSE: Determining which patients are at risk for the development of diabetic retinopathy is expected to greatly improve existing prevention and treatment options. In this study, using an animal model of diabetic retinopathy, the hypothesis was tested that magnetic resonance imaging (MRI) and a carbogen inhalation challenge provides important diagnostic information regarding the risk of developing diabetic retinopathy. METHODS: MRI was used to measure noninvasively the change in oxygen tension along the entire inner retina (i.e., from superior ora serrata to inferior ora serrata) during a carbogen (95% O2/5% CO2) inhalation challenge (IOVS 1996;37:2089). Two animal groups were examined by this MRI method at two time points: (1) rats fed either normal rat chow (n = 20) or a 50% galactose diet (n = 20) for 3.5 months (i.e., before the appearance of extensive retinal lesions) or (2) rats fed either normal rat chow (n = 3) for 15 months or a 30% galactose diet (n = 4) for 15 to 18 months (i.e., when lesions are present). Retinal biochemical and morphometric measurements were also obtained. RESULTS: After 3.5 months of galactosemia, before the appearance of extensive retinal morphologic lesions, a significant (P < 0.05) reduction in the panretinal oxygenation response was observed in the galactosemic group compared with its age-matched control. These galactose-fed animals also displayed a significantly (P < 0.05) larger oxygenation response in the inferior hemiretina than in the superior hemiretina. After 15 to 18 months of galactosemia, during the period when lesions are present, the panretinal oxygenation response remained significantly (P < 0.05) lower in the galactose-fed animals than in their age-matched controls. In contrast to the 3.5-month results, the oxygenation response in galactosemic animals at 15 to 18 months was significantly (P < 0.05) larger in the superior than in the inferior hemiretina. Hemiretinal oxygenation responses were not different in normal controls at either duration. CONCLUSIONS: MRI measurement of the retinal oxygenation response to a carbogen challenge appears to be a powerful new and noninvasive approach that may be useful for assessing aspects of pathophysiology underlying the development of diabetic retinopathy in galactosemic rats. These results support our working hypothesis and suggest that further research into the diagnostic potential of this MRI approach for predicting the development of diabetic retinopathy is warranted.

Animals↗

An aldose reductase inhibitor and aminoguanidine prevent vascular endothelial growth factor expression in rats with long-term galactosemia.

OBJECTIVE: To study the effects of an aldose reductase inhibitor (ARI-509, Wyeth-Ayerst, Princeton, NJ) and aminoguanidine (AMG), agents that have been reported to prevent or delay diabetic retinopathy, on retinal vascular abnormalities and the immunocytochemical expression in the retina of vascular endothelial growth factor (VEGF) in rats maintained for up to 2 years on a 50% galactose diet. METHODS: Albino rats were placed on a control diet, a diet containing 50% galactose, or the 50% galactose diet containing either ARI-509 or AMG. Treatment with ARI-509 or AMG was initiated at the beginning of the experiment or after 12 months of galactose feeding. After 22 to 24 months, the rats were killed and the retinal vasculature from half of one eye was isolated by trypsin-elastase digestion for semiquantitative evaluation of retinal vascular lesions. The other half of the retina was prepared for immunocytochemistry and stained for the presence of VEGF, factor VIII, vimentin, and glial fibrillary acidic protein. Red blood cells, sciatic nerves, and a portion of the retina from the second eye were assayed for glucose, galactose, fructose, sorbitol, galactitol, and myo-inositol. Red blood cells were also assayed for galactosylated hemoglobin. RESULTS: Galactose-fed animals developed a vascular retinopathy characterized by severe cellular loss in the retinal capillaries and intensification of periodic acid-Schiff staining of the vascular basement membranes. Some animals also displayed dilation and hypercellularity of vessels in the posterior retina. These changes were substantially reduced in animals receiving ARI-509 from the beginning of the galactose diet, but were unaffected in all of the other treatment groups. None of the rats receiving ARI-509 or AMG treatment, whether initiated from the onset or after 12 months of galactosemia, demonstrated VEGF immunoreactivity. With the exception of the animals receiving ARI-509 from the beginning of the experiment, all of the galactose-fed animals developed dense cataracts within 6 weeks of the beginning of the galactose diet. Galactitol levels in animals receiving ARI-509 were 86% to 93% lower in red blood cells, retina, and sciatic nerve than those in the other galactose-fed groups. CONCLUSIONS: Although ARI-509 and AMG have different abilities to delay or prevent the diabetic-like retinopathy in galactosemic rats, even when substantial retinal microvascular acellularity occurs, both drugs prevent the immunocytochemical expression of VEGF. These results suggest that factors other than hypoxia may be responsible for VEGF expression in the retina, and that aldose reductase inhibitors and AMG have potential roles in preventing such expression and, thus, perhaps preventing retinal neovascularization.

Aldehyde Reductase↗

Growth factors in age-related macular degeneration: pathogenic and therapeutic implications.

PURPOSE: To investigate the role of growth factors in choroidal neovascularization in humans with age-related macular degeneration (ARMD) and in rats with choroidal neovascularization produced by krypton laser photocoagulation. METHODS: Autoradiography using 3H-thymidine in laser-treated rats. Light- and electron-microscopic immunocytochemistry using antibodies to several different growth factors and to the fibroblast growth factor (FGF) receptor. Tissues studied included the retinas of rats that had received krypton red laser photocoagulation, which induces formation of choroidal neovascularization 6-8 weeks after laser treatment, choroidal neovascular membranes (CNVMs) removed surgically from humans with ARMD and whole human eyes obtained postmortem with macular choroidal neovascular lesions from ARMD. RESULTS: Nuclei of retinal pigment epithelium (RPE) and choriocapillary cells in laser-treated rats were labeled with 3H-thymidine up to 80 days after photocoagulation, maximally at 2-7 days after laser treatment. At all intervals, RPE cells in treated areas immunolabeled for aFGF and bFGF. Labeling was strongest within lysosomes. RPE cells in untreated regions did not immunolabel for growth factors. RPE cells from CNVMs in the maculas of humans with ARMD also immunolabeled for aFGF and bFGF. Some choriocapillary endothelial cells in human CNVMs became labeled in a regular array along their anteluminal and luminal plasma membranes with anti-bFGF antibodies and, in a similar pattern, with antibodies to the FGF receptor. Finally, serial sections from some CNVMs in ARMD patients were immunostained alternately for bFGF and for vascular endothelial growth factor (VEGF). RPE cells and choriocapillary endothelial cells in these membranes immunostained for VEGF. Many immunostained for both bFGF and VEGF. In whole human eyes with macular CNVMs RPE cells in regions of normal retina did not immunostain for these growth factors. CONCLUSIONS: Several growth factors are not expressed at detectable levels by immunocytochemistry in normal RPE cells in rats or humans but do appear following photocoagulation or the development of CNVMs in ARMD. This suggests that these growth factors have a pathogenic role in choroidal neovascularization. Possibly, bFGF and VEGF act synergistically to accelerate neovascularization. The up-regulation of VEGF in CNVMs is of special interest because up-regulation of this growth factor in other systems appears to be stimulated by tissue hypoxia. Till now, hypoxia has not been considered a major pathogenic agent in the development of CNVMs in ARMD or other macular diseases.

Aged↗

Vascular endothelial growth factor is present in glial cells of the retina and optic nerve of human subjects with nonproliferative diabetic retinopathy.

PURPOSE: To determine whether vascular endothelial growth factor (VEGF) and basic fibroblast growth factor (bFGF), which have been implicated in the development of retinal and choroidal neovascularization, are present in the retinas and optic nerves of patients with diabetes before proliferative retinopathy appears. METHODS: Light microscopic immunocytochemistry using antibodies to VEGF, bFGF, vimentin, glial fibrillary acidic protein (GFAP), and factor VIII on frozen sections from eyes of patients with diabetes without proliferative retinopathy, eyes of patients without diabetes and without known ocular disease, and eyes with disciform age-related macular degeneration (ARMD). Retinal vascular digest preparations to evaluate microvascular abnormalities. RESULTS: Based on morphology and on GFAP and vimentin immunopositivity, retinas from all subjects with diabetes immunostained strongly to VEGF in elongated processes that appeared to be Müller cells. Glial cells within septa surrounding axons in the anterior optic nerve also immunostained for VEGF, as did endothelial cells of some posterior retinal blood vessels and some retinal pigment epithelial cells. Retinas from eyes with disciform ARMD immunostained for VEGF, though less extensively than did those of subjects with diabetes. Retinas and optic nerves from subjects without ocular disease were VEGF negative. Basic fibroblast growth factor was expressed minimally in the inner retinal layers of subjects with and without diabetes, but it was substantial in the photoreceptor layer of all eyes. Vascular endothelial growth factor immunopositivity was present in eyes with no, or little, retinal vascular anatomic abnormality in digest preparations. CONCLUSIONS: Vascular endothelial growth factor expression precedes retinal neovascularization in the retinas and the optic nerves of humans with diabetes. Its localization to glial cells of the inner retina and the anterior optic nerve suggests a relationship to neovascularization in these sites. That VEGF immunopositivity may occur when there is no anatomic evidence of retinal nonperfusion and little likelihood of retinal neovascularization suggests the possibility that ischemia may not be the sole stimulus for VEGF expression.

Aged↗

Basic fibroblast growth factor and vascular endothelial growth factor are present in epiretinal and choroidal neovascular membranes.

PURPOSE: To determine whether vascular endothelial growth factor and basic fibroblast growth factor, which may be critical mitogens for neovascularization, are present together in human retinal and choroidal neovascular membranes. METHODS: Light microscopic immunocytochemistry using antibodies against vascular endothelial growth factor, basic fibroblast growth factor, and several cellular "marker" proteins on frozen sections from three choroidal neovascular membranes from patients with age-related macular degeneration, seven surgically excised epiretinal membranes from patients with proliferative diabetic retinopathy, and six epiretinal membranes from patients with nonischemic proliferative retinopathies. RESULTS: All three choroidal neovascular membranes and all seven epiretinal membranes stained positive for vascular endothelial growth factor. Two choroidal neovascular membranes and six of the epiretinal membranes were positive for basic fibroblast growth factor. The same cells were often positive for both antigens. None of the epiretinal membranes from patients with nonischemic proliferative retinopathies were positive for either growth factor. Many of the cells that demonstrated growth factors were glial cells, vascular endothelial cells, and retinal pigment epithelial cells. CONCLUSIONS: Colocalization of two growth factors in the same cells of ocular neovascular membranes suggests that more than one growth factor may contribute to pathologic angiogenesis. Growth factors in neovascular tissues are not localized exclusively in the vascular endothelium. Because expression of some growth factors is stimulated by hypoxia, their localization within choroidal neovascular membranes suggests that hypoxia may be an etiologic factor for choroidal as well as for retinal neovascularization.

Adult↗

Vasoactive agonists do not change the caliber of retinal capillaries of the rat.

The pericytes of the retinal capillaries are considered to be contractile cells, based on indirect evidence. We attempted to detect pericyte contractility directly using a morphometric method following intravitreal injection of vasoconstricting (endothelin-1, norepinephrine) and vasodilating (forskolin, prostaglandin E1) agonists in rats. The technique involved measuring changes in the ratio of the (lumenal perimeter x mean lumenal radius) to the lumenal area (rP/A ratio, which we defined as "caliber"). Following intravitreal injection of endothelin-1 or norepinephrine there is an ophthalmoscopically visible constriction of the larger retinal arterioles. This constriction is also clearly demonstrable morphometrically (P = 0.001 for endothelin-1 and P = 0.047 for norepinephrine). However, neither for the vasoconstricting nor for the vasodilating agonists is there evidence of a significant change of the caliber of the capillaries. At least in the retina of the rat, therefore, we have no evidence that the pericytes perform a contractile function that alters flow in the capillaries.

Alprostadil↗

Long-term outcomes after the surgical removal of advanced subfoveal neovascular membranes in age-related macular degeneration.

BACKGROUND: The poor results of laser photocoagulation in patients with age-related macular degeneration who have subfoveal neovascular membranes, as reported by the Macular Photocoagulation Study Group, have posed the question as to whether the surgical removal of the neovascular membranes by subfoveal surgery might provide superior functional results, possibly in subgroups of patients. METHODS: The authors' first ten patients treated by subfoveal surgery were followed prospectively. Follow-up of a mean duration of 2 years is presented, with particular emphasis on visual and anatomic outcomes. Preoperative subfoveal choroidal neovascular membranes and postoperative retinal pigment epithelial defects were measured using digitized planimetry. RESULTS: Initial visual acuities were equal to or less than 20/400, with a mean duration of visual loss of 8 months. The mean choroidal neovascular membrane size was 7 disc areas. Eight of ten patients improved one to two lines of Snellen visual acuity postoperatively. One patient achieved visual acuity of 20/60 at 15 months before declining because of recurrent neovascularization. Surgically induced retinal pigment epithelial defects were invariable; the mean defect was 14 standard disc areas in size. Choriocapillaris atrophy and focal losses of deeper choroidal tissue also occurred. Surgical complications were frequent but responded to routine management. The authors observe a 2-year recurrence rate of 40%. Recurrences often are atypical, fibrous, and poorly vascularized. CONCLUSIONS: Although substantial visual improvements are common, long-term reading vision has not been achieved. Retinal pigment epithelial incorporation into late subfoveal membranes remains a major limiting factor. The role of early surgery and the role of surgery for patient subgroups need to be compared directly with the results of foveal laser treatment, using several visual outcomes.

Aged↗

Growth factor localization in choroidal neovascular membranes of age-related macular degeneration.

PURPOSE: Because several polypeptide growth factors are known to influence capillary endothelial cell mitogenesis, the authors investigated the presence of some of these molecules in choroidal neovascular membranes (CNVMs) removed surgically from human subjects with age-related macular degeneration (ARMD). METHODS: The authors performed immunoelectron microscopic studies on surgically removed submacular CNVMs from nine subjects with ARMD and from one subject with ARMD whose eye was studied after death. These were compared with retinal pigment epithelial (RPE) and choroidal tissue from eight normal subjects whose eyes were received after death and one received after massive trauma. RESULTS: RPE cells from the CNVMs were strongly immunoreactive for acidic and basic fibroblast growth factor (aFGF and bFGF) and for transforming growth factor beta (TGF beta). Some of the immunoreactivity was intracytoplasmic, but most was intralysosomal. In addition, some choriocapillary endothelial cells located close to the RPE layer in these CNVMs were immunopositive for bFGF and for FGF receptor. Reaction product for these two substances was located at regular intervals along the endothelial plasma membrane on both the anteluminal and the luminal side of the cells, suggesting a physiological reaction between the growth factor and its receptor. Choriocapillary endothelial cells deeper within the stroma were unreactive to bFGF and FGF receptor antibodies. There was little immunoreactivity for the growth factors in RPE or choriocapillary endothelial cells from normal eyes. The aFGF and bFGF immunoreactivity was highly specific because aFGF positivity was abolished when the antibody was incubated with 10(-6) M aFGF but not a with the same concentration of bFGF, whereas bFGF immunoreactivity was abolished by incubation of the antibody with bFGF but not with aFGF. RPE cells from normal eyes and from eyes affected by ARMD showed strong cytoplasmic immunoreactivity to antibodies for cytoplasmic retinaldehyde-binding protein and superoxide dismutase and weak reactivity to antibodies for vimentin. CONCLUSIONS: These results are consistent with the hypothesis that one or both FGFs are causally related to the development of choroidal neovascularization. The authors have reported similar observations in experimental choroidal neovascularization in pigmented rats after red krypton laser photocoagulation. TGF beta may serve to modulate the effects of these mitogens. The authors suggest that growth factor production is induced in RPE cells after physical or chemical damage. Because of the damage to these cells, FGF molecules can be released from the cells despite the absence of a "signal sequence" in the DNA coding for FGF production.

Aged↗