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Occlusive retinal arteriolitis with neovascularization.

A 34-year-old white woman who had used oral contraceptives for six years showed an occlusive bilateral retinal arteriolitis that resulted in a branch arteriolar occlusion in the right eye and retinal neovascularization. Three years later, we observed active arteriolitis in the left eye with successive occlusion of several branch arterioles. The disease has shown spontaneous remissions and exacerbations. An extensive medical evaluation revealed only old pulmonary granulomatous disease and an elevated sedimentation rate in association with exacerbations of the arteriolitis.

Adult↗

Raised platelet thiobarbituric acid-reacting substances in proliferative Eales' disease.

BACKGROUND: Platelets are an elective site for oxidative stress owing to their high content of polyunsaturated fatty acid. Increased lipid peroxidation and elevated platelet thiobarbituric acid-reacting substances (TBARS) signal oxidative stress. This possibly leads to retinal neovascularization in Eales' disease. METHODS: TBARS levels were estimated in consecutive cases of Eales' disease with neovascularisation (n = 26), Eales' disease without neovascularisation (n = 17) and healthy controls (n = 17). RESULTS: Platelet TBARS levels in the cases of Eales' disease with neovascularisation, Eales' disease without neovascularisation, and healthy controls were 0.66 +/- 0.1, 0.57 +/- 0.11 and 0.42 +/- 0.14 n moles TBARS formed/hour/10(8) platelets respectively. Student's t-test showed a significant increase in platelet TBARS levels in cases with neovascularisation as compared to cases without neovascularization (p < 0.05) and healthy controls (p < 0.01). CONCLUSION: The increase in platelet TBARS levels in proliferative Eales' disease is consistent with an emerging view that lipid peroxides may be associated with retinal neovascularisation.

Adolescent↗

Role of NF-kappaB-mediated interleukin-8 expression in intraocular neovascularization.

PURPOSE: To investigate the role of interleukin (IL)-8 in intraocular neovascularization and the mechanism of its production. METHODS: Interleukin-8 was measured with enzyme-linked immunosorbent assays in vitreous and aqueous fluid obtained from patients with neovascular diseases. Localization of IL-8 was examined by immunohistochemistry. An in vitro angiogenesis assay was performed on collagen gels, by using bovine aortic endothelial cells to determine the effect of the vitreous fluid. In bovine retinal glial cells under hypoxia, NF-kappaB activation was evaluated by immunoblot analysis and by electrophoretic mobility shift assay, and IL-8 and vascular endothelial growth factor (VEGF) mRNA expression was determined by semiquantitative reverse transcription-polymerase chain reaction. RESULTS: The concentration of IL-8 in vitreous fluid of patients with retinal neovascularization was significantly higher than that of patients without neovascular disease. Interleukin-8 immunostaining was detected in vascular endothelial cells and glial cells in the retinas with neovascularization. Vitreous fluid with high concentrations of IL-8 induced tubular morphogenesis in endothelial cells, and this effect was inhibited to a similar extent by neutralizing antibodies to IL-8 or to VEGF. In glial cells, in vitro, hypoxia induced NF-kappaB activation and increased IL-8 and VEGF mRNA. Furthermore, pyrrolidine dithiocarbamate, a specific inhibitor of NF-kappaB activation, prevented the induction of the IL-8 gene, but not that of the VEGF gene. CONCLUSIONS: These results suggest that IL-8 induced by hypoxia and mediated by NF-kappaB may contribute to the pathogenesis of intraocular neovascularization.

Animals↗

The 67-kd laminin receptor is preferentially expressed by proliferating retinal vessels in a murine model of ischemic retinopathy.

Endothelial cell association with vascular basement membranes is complex and plays a critical role in regulation of cell adhesion and proliferation. The interaction between the membrane-associated 67-kd receptor (67LR) and the basement membrane protein laminin has been studied in several cell systems where it was shown to be crucial for adhesion and attachment during angiogenesis. As angiogenesis in the pathological setting of proliferative retinopathy is a major cause of blindness in the Western world we examined the expression of 67LR in a murine model of hyperoxia-induced retinopathy that exhibits retinal neovascularization. Mice exposed to hyperoxia for 5 days starting at postnatal day 7 (P7) and returned to room air (at P12) showed closure of the central retinal vasculature. In response to the ensuing retinal ischemia, there was consistent preretinal neovascularization starting around P17, which persisted until P21, after which the new vessels regressed. Immunohistochemistry was performed on these retinas using an antibody specific for 67LR. At P12, immunoreactivity for 67LR was absent in the retina, but by P17 it was observed in preretinal proliferating vessels and also within the adjacent intraretinal vasculature. Intraretinal 67LR immunoreactivity diminished beyond P17 until by P21 immunoreactivity was almost completely absent, although it persisted in the preretinal vasculature. Control P17 mice (not exposed to hyperoxia) failed to demonstrate any 67LR immunoreactivity in their retinas. Parallel in situ hybridization studies demonstrated 67LR gene expression in the retinal ganglion cells of control and hyperoxia-exposed mice. In addition, the neovascular intra- and preretinal vessels of hyperoxia-treated P17 and P21 mice labeled strongly for 67LR mRNA. This study has characterized 67LR immunolocalization and gene expression in a murine model of ischemic retinopathy. Results suggest that, although the 67LR gene is expressed at high levels in the retinal ganglion cells, the mature receptor protein is preferentially localized to the proliferating retinal vasculature and is almost completely absent from quiescent vessels. The differential expression of 67LR between proliferating and quiescent retinal vessels suggests that this laminin receptor is an important and novel target for future chemotherapeutic intervention during proliferative vasculopathies.

Animals↗

Retinal and disc neovascularization in Behçet's disease and efficacy of laser photocoagulation.

BACKGROUND: The vaso-occlusive episodes resulting from Behçet's disease can cause capillary dropout and vascular remodeling. Retinal and disc neovascularizations, which occur as a result of occlusive vasculitis, can cause recurrent vitreal hemorrhages and neovascular glaucoma leading to severe visual impairment. METHODS: 1080 eyes of 540 patients with Behçet's disease were examined between 1973 and 1993. Of the 912 eyes with posterior segment involvement, laser photocoagulation could be performed in 13 of 25 eyes with disc neovascularization (NVD), 12 of 22 eyes with retinal neovascularization (NVE), and 4 of 6 eyes with NVD and NVE. Laser was directed at areas of NVE and retinal capillary nonperfusion. In cases of NVD, panretinal photocoagulation was performed. RESULTS: The rate of regression of NVD was significantly greater in laser-treated eyes than in the untreated group. The results were similar in cases of NVD with NVE. In eyes with NVE which underwent laser photocoagulation, the NVE regressed. None of the treated eyes developed neovascular glaucoma during the follow-up period. Vitreous hemorrhage occurred in two laser-treated eyes. CONCLUSION: Laser photocoagulation is successful in preventing complications of retinal and disc neovascularizations. Thus, in cases of occlusive vasculitis associated with Behçet's disease, laser photocoagulation should be considered for prevention of complications such as vitreous hemorrhage and neovascular glaucoma.

Adult↗

Altered distribution of basic fibroblast growth factor in diabetic retinopathy.

Basic fibroblast growth factor (FGF) is a potent endothelial cell mitogen that has been proposed to play a role in proliferative diabetic retinopathy and other neovascular processes. Our understanding of the in vivo role of basic FGF in the pathogenesis of these disorders is limited. We studied the immunolocalization of basic FGF in 16 clinical cases of diabetic retinopathy to determine whether the normal retinal distribution of basic FGF changed during the development of diabetic retinopathy and correlated with the onset of retinal neovascularization. By using monoclonal and affinity-purified polyclonal antibodies against basic FGF and heparan sulfate proteoglycan (HSPG), we found that basic FGF colocalized with HSPG to vascular basement membranes. As the basement membranes thickened during the progression of diabetic retinopathy, the intraretinal stores of immunoreactive basic FGF and HSPG expanded. With the development of neovascularization, the colocalization of basic FGF and HSPG changed; HSPG localized to basement membranes, while basic FGF localized intracellularly, with only minimal basement membrane immunoreactivity. Incubations of the neovascular fronds with exogenous basic FGF demonstrated multiple HSPG glycosaminoglycan-binding sites for basic FGF, indicating that basic FGF had not been released from the matrix of neovascular fronds by heparitanase digestion.

Antibodies, Monoclonal↗

Range of retinal diseases potentially treatable by AAV-vectored gene therapy.

Viable strategies for retinal gene therapy must be designed to cope with the genetic nature of the disease and/or the primary pathologic process responsible for retinal malfunction. For dominant gene defects the aim must be to destroy the presumably toxic gene product, for recessive gene defects the direct approach aims to provide a wild-type copy of the gene to the affected retinal cell type, and for diseases of either complex or unknown genetic origin, more general cell survival strategies that deal with preserving affected retinal cells are often the best and only option. Hence examples of each type of therapy will be briefly discussed in several animal models, including ribozyme therapy for autosomal dominant retinitis pigmentosa in the transgenic P23H opsin rat, beta-PDE gene augmentation therapy for autosomal recessive retinitis pigmentosa in the rd mouse, glial cell-derived neurotrophic factor (GDNF) gene therapy for autosomal dominant RP in the transgenic S334ter opsin rat and pigment epithelial cell-derived neurotrophic factor (PEDF) gene therapy for neovascular retinal disease in rodents. Each employs a recombinant AAV vectored passenger gene controlled by one of several promoters supporting either photoreceptor-specific expression or more general retinal cell expression depending on the therapeutic requirements.

Animals↗

Iris neovascularization after central retinal artery obstruction despite previous panretinal photocoagulation for diabetic retinopathy.

Five consecutive patients with proliferative diabetic retinopathy who were treated successfully with panretinal photocoagulation subsequently developed a central retinal artery obstruction. Iris neovascularization developed in the affected eye within one to three months after the obstruction in four of the five patients despite the previous laser treatment. Additional retinal ischemia, as occurs in central retinal artery obstruction, appears to promote marked iris neovascularization in a large percentage of patients, even when successful photocoagulation for proliferative retinopathy has been previously administered.

Adult↗

[Retinopathy in dermatomyositis].

The authors describe a patient with acute onset dermatomyositis, "probable", according to criteria of Bohan and Peter, as well as the development of the disease in the course of 21 months. A special feature was the decline of visual acuity (practically to the level of blindness). The cause was severe retinopathy with dominance of macular oedema, "cotton wool" spots and haemorrhages, as apparent from photographs of the fundus and findings obtained by fluorescein angiography. The problem of initial treatment was resistance to megadoses of glucocorticoid (i.v. pulses). A favourable change occurred only after i.v. administration of polyvalent immunoglobulin in a total dose of 600 mg/kg body weight. Then the authors observed the unique phenomenon of regression of retinal oedema incl. the macula, of the haemorrhages and "cotton wool" spots. Consistent with it vision off the right eye improved to 1.0 and the left eye to 0.66 in the course of 11 months. Stabilized retinal neovascularizations persist. On account of the latter the authors treated the retina by laser panretinocoagulation.

Adult↗

The functional role of blood platelet components in angiogenesis.

The process of neovascularization greatly depends on the induction of the angiogenic phenotype of endothelial cells that is strictly controlled by humoral factors as well as by cellular communications in the vascular system. Although blood platelets contain several secretable pro- and antiangiogenic components, their overall role in angiogenesis remains poorly understood. In a mouse model of hypoxia-induced retinal angiogenesis, the situation of thrombocytopenia as well as inhibition of platelet aggregation by a highly specific alphaIIbbeta3-integrin antagonist or acetyl salicylic acid (Aspirin) administration, respectively, resulted in about 35-50% reduction of retinal neovascularization, compatible with a significant contribution of blood platelets in angiogenesis. Platelet remnants and microvesicles were found at sites of angiogenic sprouts. In vitro isolated platelets incorporated in a fibrin gel induced capillary sprouting of microvascular endothelial cells. Similarly, platelet releasate elevated the permeability of confluent endothelial cell monolayers to the same extent as hypoxia did. Platelet-derived VEGF as well as butanol-extractable lipid mediators were identified as predominant activators of angiogenesis, particularly of microvascular endothelial cell proliferation and migration. In addition, a synergistic effect between platelet-derived VEGF and bFGF in capillary sprouting and endothelial cell proliferation was found. Based on this proangiogenic role of platelets in neovascularization, anti-platelet substances can be considered as potent inhibitors of angiogenesis.

Animals↗

Occlusive retinal vascular disease in systemic lupus erythematosus.

Ocular involvement in patients with systemic lupus erythematosus (SLE) is most commonly noted in the form of retinal hemorrhage, exudates and cotton wool spots resulting from occlusion of small retinal blood vessels. Less frequently, SLE is associated with extensive obliteration of larger retinal vessels, as demonstrated in the 2 cases reported here. In both cases large parts of the retina lost their function due to extensive occlusions of retinal arteries and veins. Marked retinal neovascularizations developed in one of the 2 cases. Awareness and early detection of retinal vascular occlusive disease and its complications are important in averting serious visual loss in SLE.

Adolescent↗

Prophylactic laser photocoagulation in hereditary snowflake vitreoretinal degeneration. A family report.

Examination of 37 members of a family revealed that 17 had snowflake vitreoretinal degeneration. All those affected showed some evidence of vitreous degeneration and 13 had retinal changes with differing degrees of severity. Vitreal changes may thus present as an early stage when hardly any retinal pathology is apparent. Peripheral retinal neovascularization was seen in four patients. Rhegmatogenous retinal detachment developed in two eyes and retinal breaks in six additional eyes. Because of the poor surgical prognosis in such cases, prophylactic treatment with argon laser photocoagulation is recommended for any type of retinal break.

Adolescent↗

Retinal emboli in patients with mitral valve prolapse.

Small fibrin-platelet emboli caused by prolapsed mitral valves may cause retinal occlusive disease with a wide range of ophthalmic manifestations, including amaurosis fugax in young people, retinal or choroidal arteriolar occlusion, and retinal neovascularization (atypical Eales' disease). Six patients with retinal occusive disease underwent extensive noninvasive cardiac and systemic tests and were found to have prolapsed mitral valves. Patients with unexplained ocular emboli should be examined by a cardiologist for possible mitral valve prolapse.

Adolescent↗

Preretinal neovascularization induced by experimental retinal vein occlusion in albino rats.

Retinal ischemia and neovascularization have been demonstrated in several animal models. To determine 1) whether the retinal or preretinal neovascularization can be induced in albino rats by retinal vein occlusion and 2) the type and rate of occurrence on neovascularization, we occluded retinal veins in albino rats by photodynamic thrombosis. After anesthesia, each of 36 rats received an injection of rose bengal photosensitive dye, and their veins underwent argon green laser treatment. Half or all the major retinal veins were occluded in 12 eyes and in 24 eyes, respectively. Ten control rats underwent the same procedures but the laser beam was directed between major retinal vessels. In 46 control eyes, rose bengal dye was seen to have perfused without laser treatment. Retinal detachment developed in most vein occluded eyes within one day of venous occlusion, which was confirmed by fluorescein angiography. On follow-up at two weeks, only four of 24 eyes (16.7%) had undergone occlusion of all retinal veins showed new preretinal vessels on the optic disc. In these four eyes, severe disturbance of both retinal arterial and venous blood flow was observed, but no other eyes showed such severe combined disturbance. These data suggest that preretinal neovascularization in albino rats can be induced by this minimally traumatic method and that venous occlusion is severe enough to compromise arterial blood flow for a certain threshold period, thus inducing the development of preretinal neovascularization.

Animals↗

Somatostatin analogues as drug therapies for retinopathies.

Proliferative retinopathies account for the majority of cases of vision loss throughout the world. Currently accepted therapy for retinopathy consists of retinal ablation by panretinal laser photocoagulation or cryotherapy. This technique is not without deleterious effects to patients, including diminished night vision, reduced peripheral vision and loss of precise vision, decreasing visual acuity by one to two lines in magnitude. One promising area of research into pharmacotherapeutics for retinopathies, especially proliferative diabetic retinopathy, involves the use of synthetic analogues of somatostatin. The rationale for somatostatin as a therapeutic agent for retinal neovascularization is discussed. Somatostatin analogues such as octreotide have shown promise as a safe and effective treatment for severe proliferative diabetic retinopathy by blocking the local and systemic production of growth hormone and insulin-like growth factor type 1 associated with angiogenesis and endothelial cell proliferation. There are also observations suggesting an autocrine and paracrine effect of somatostatin, perhaps directly on retinal cells, which are known to express somatostatin receptors (SSTR). SSTR2 and SSTR3 are the most important receptor subtypes mediating growth hormone secretion and endothelial cell cycle arrest, retinal endothelial cell apoptosis and release of insulin. Thus, analogues that target these receptor subtypes may prove more useful. Long-acting somatostatin analogues are currently being tested for treatment of diabetic retinopathy and are, in fact, the only therapeutic alternative for patients who fail panretinal photocoagulation. Whether such a therapy may also prove effective for other retinal vascular proliferative diseases such as retinopathy of prematurity and age-related macular degeneration remains an open question that deserves attention, given our new understanding of the cellular and molecular mechanisms by which somatostatin may exert its antiangiogenic effects.

Angiogenesis Inhibitors↗

Triamcinolone as adjunctive treatment to laser panretinal photocoagulation for proliferative diabetic retinopathy.

OBJECTIVE: To evaluate intravitreal injection of triamcinolone acetonide before laser panretinal photocoagulation (PRP) in the treatment of proliferative diabetic retinopathy. METHODS: This interventional case series included 9 patients with bilateral proliferative diabetic retinopathy. One eye received intravitreal triamcinolone before PRP (injected eye) and the other, PRP alone (control eye). The main outcome measures were the change in planimetric area of fluorescein leakage from retinal neovascularization and in central macular thickness on optical coherence tomography at 3, 6, 9, and 12 months. Secondary end points were change in vision, intraocular pressure, and cataract progression. RESULTS: All patients completed 9 months and 5 patients, 12 months of follow-up. Initial mean (SD) planimetric area of fluorescein leakage and central macular thickness were 7.22 (5.70) mm(2) and 372.11 (91.88) microm in injected eyes and 9.08 (6.17) mm(2) and 355.33 (115.23) microm in control eyes, respectively. At the 9- and 12-month intervals, the planimetric area of fluorescein leakage decreased by 86% and 88% in injected eyes and 33% and 50% in controls, respectively. Central macular thickness significantly decreased in injected eyes and increased in control eyes. Vision slightly improved in injected eyes and worsened in control eyes. CONCLUSION: Intravitreal injection of triamcinolone before PRP may be useful in improving the effects of PRP in eyes with proliferative diabetic retinopathy by reducing neovascularization and macular thickening.

Adult↗

Fibrovascular response to retinal tacks in the rabbit and monkey eye.

In order to evaluate the tissue response to metal retinal tacks experiments were carried out on 4 monkey eyes and compared to those on 4 rabbits. Non-magnetic retinal tacks (Grieshaber, Switzerland) and tacks made of 24 carat gold (our own brand) were inserted into the ocular fundus under microscopic control. The animals were kept for 3 months. In monkey eyes, histological examination disclosed a considerable fibrovascular proliferation around the retinal tack canal, including an inflammatory response, formation of collagenous tissue and glial proliferation. There was a local intra-retinal and epi-retinal neovascularization. In the rabbit retina, only a slight inflammation and thin collagenous tissue developed. Thus the tissue response was much more severe in the primate eye than in the avascular rabbit retina.

Animals↗

Down-regulation of vascular endothelial growth factor and up-regulation of pigment epithelium-derived factor: a possible mechanism for the anti-angiogenic activity of plasminogen kringle 5.

We have previously shown that intravitreal injection of plasminogen kringle 5 (K5), a potent angiogenic inhibitor, inhibits ischemia-induced retinal neovascularization in a rat model. Here we report that K5 down-regulates an endogenous angiogenic stimulator, vascular endothelial growth factor (VEGF) and up-regulates an angiogenic inhibitor, pigment epithelium-derived factor (PEDF) in a dose-dependent manner in vascular cells and in the retina. The regulation of VEGF and PEDF by K5 in the retina correlates with its anti-angiogenic effect in a rat model of ischemia-induced retinopathy. Retinal RNA levels of VEGF and PEDF are also changed by K5. K5 inhibits the p42/p44 MAP kinase activation and nuclear translocation of hypoxia-inducible factor-1alpha, which may be responsible for the down-regulation of VEGF. Down-regulation of endogenous angiogenic stimulators and up-regulation of endogenous angiogenic inhibitors, thus leading toward restoration of the balance in angiogenic control, may represent a mechanism for the anti-angiogenic activity of K5.

Active Transport, Cell Nucleus↗