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Indirect treatment of peripheral retinal neovascularization.

Indirect (scatter) cryotherapy and photocoagulation treatments successfully obliterated peripheral neovascularization in patients with sickle cell retinopathy and talc retinopathy. Fifteen of 17 neovascular fronds in seven eyes of five patients were obliterated. This type of treatment is analogous to panretinal photocoagulation for diabetic retinopathy. Because low energy levels are used, indirect treatment of peripheral neovascularization may be a safe and effective alternative to focal treatment of feeder vessels.

Adult↗

Peripheral retinal neovascularization in sarcoidosis with thalassemia.

A black youth with peripheral retinal (sea fan) neovascularization had both sarcoidosis and alpha-thalassemia. The possibility that both of these disease entities were responsible for the observed pathology is explored. Most of the pathology present, the stasis, the hypoxia, and the vasoproliferation, is presumed to be due to the sarcoidosis. No definite relationship was established in this case for the alpha-thalassemia, a rare genetic abnormality of hemoglobin production.

Adolescent↗

Unilateral congenital corneal staphyloma with retinal neovascularization. A case report.

I present the light microscopic and ultrastructural findings in an unusual case of unilateral congenital corneal staphyloma. The anterior segment exhibited features of extensive Peters' anomaly whereas the posterior segment showed marked preretinal neovascularization and lack of axons as well as outer segments. These retinal changes might be secondary due to raised intraocular pressure and traction phenomena, but the complexity and extent of the described malformation argue against this.

Anterior Eye Segment↗

Squalamine improves retinal neovascularization.

PURPOSE: Modalities for inhibiting neovascularization may be one avenue to the development of effective therapies for retinopathy. The effect of squalamine, an antiangiogenic amino sterol, on oxygen-induced retinopathy (OIR) was assessed in a mouse model. METHODS: OIR was induced in C57BL6 mice by a 5-day exposure to 75% oxygen from postnatal day (P)7 through P12. Squalamine (25 mg/kg, subcutaneous)treated animals received either daily doses for five days from P12 to P16 or one dose just after removal from oxygen on P12. Each set of animals was killed at P17 to P21. Retinopathy was assessed with a retinopathy scoring system evaluation of retinal wholemounts and by quantification of neovascular nuclei on retinal sections. RESULTS: Animals receiving 5 days of squalamine after a 5-day exposure to oxygen had total retinopathy scores (expressed as median score with 25th and 75th quartiles in parentheses) of 4(3, 5) versus oxygen-only-reared animals with scores of 8(7, 9; P < 0.001). Animals reared in room air and animals exposed to squalamine only had similar retinopathy scores: 1(1, 2) and 1(0, 2). Oxygen-reared animals receiving single-dose squalamine also showed improvement, with a median retinopathy score of 4(4, 6.75) versus oxygen-only-reared animals with median retinopathy score of 9(7, 10; P < 0.001). There was a decreased number of neovascular nuclei extending beyond the inner limiting membrane on retinal sections in animals treated with 5 days (P < 0.01) and 1 day (P < 0.001) of squalamine. CONCLUSIONS: Squalamine significantly improved retinopathy and may be a novel agent for effective treatment of ocular neovascularization.

Animals↗

Altered retinal neovascularization in TNF receptor-deficient mice.

PURPOSE: Tumor necrosis factor alpha (TNF-alpha) has been shown to play an integral role in inflammation, apoptosis, and angiogenesis. We induced retinopathy in tumor necrosis factor receptor-deficient mice (TNFR-) in order to examine the role TNF-alpha plays in the pathogenesis of retinopathy of prematurity. METHODS: On postnatal day (P) 7, TNFR-knockout mice and their congenic controls, B6129JF1 (B6129) mice, were exposed to 75% oxygen for up to 5 days and then allowed to recover in room air. Retinopathy was qualitatively assessed by examining fluorescein (FITC) angiography. Furthermore, retinal vascular changes were quantified by immunolabeling retinal vessels in cross sections with an anti-type IV collagen antibody. Disease pathology was quantified by counting preretinal neovascular nuclei. TUNEL analysis was performed to determine if TNFR-mice exhibited a reduced number of apoptotic cells after oxygen-induced retinopathy. RESULTS: FITC-perfused retinas qualitatively demonstrated similar degrees of vascular development and vaso-obliteration on P12 in the room air and hyperoxia-exposed TNFR- and B6129 mice. On P17, the hyperoxia-exposed TNFR- and B6129 mice qualitatively appeared to develop a similar degree of retinal neovascularization. However, FITC-perfused retinal flat mounts on P21 suggested that the hyperoxia-exposed TNFR-mice had a prolonged neovascular response compared to the hyperoxia-exposed B6129 mice. Type IV collagen staining revealed delayed development of the deep intraretinal vessels in the TNFR-room control mice and hyperoxia-exposed TNFR-mice, as compared with B6129 controls. On P17, the average number of preretinal nuclei was similar between the hyperoxia-exposed TNFR-mice and B6129 mice. However, on P21, the neovascularization in the B6129 mice had regressed (3.9 +/- 0.57, preretinal nuclei), whereas neovascularization in the TNFR-mice remained prominent (25.6 +/- 6.3, preretinal nuclei). On P21, the B6129 mice exhibited increased apoptosis in preretinal vascular tufts as compared with TNFR- mice. CONCLUSIONS: TNFR- mice had both an altered development of the intraretinal vessels and altered angiogenic response after hyperoxia. Therefore, absence of the TNF-alpha pathway appears to disrupt the local microenvironment promoting angiogenesis in the deep retinal vascular network, as well as altering tuft regression by modifying endothelial cell apoptosis.

Animals↗

Sub-retinal neovascular membrane in exudative macular degeneration.

Age-related macular degeneration is a major cause of serious vision loss. The earliest stages of age-related maculopathy may be defined by the size of the drusen present in the macula and the effects on vision. Further manifestations may include soft drusen, choroidal neovascularisation, macular haemorrhage and cicatricial or disciform degeneration of the macula. This report describes a patient with a macular haemorrhage, a choroidal neovascular membrane and serious loss of vision. In addition, the pathogenesis, diagnosis and treatment options of macular degeneration are reviewed.

Aged↗

Proliferating endothelial cell-specific expression of IGF-I receptor ribozyme inhibits retinal neovascularization.

Insulin-like growth factor-I (IGF-I) and its receptor (IGF-IR) are essential for normal ocular development and are expressed in numerous ocular cell types including lens epithelial cells, retinal pigment epithelial cells, Müller cells and endothelial cells. Endothelial cell proliferation is a common feature of proliferative retinopathies and involves abnormal growth of blood vessels within and on the surface of the retina. In an effort to inhibit the formation of these aberrant blood vessels, we cloned an IGF-IR ribozyme into an expression vector that limits expression of the ribozyme to proliferating endothelial cells. An endothelin enhancer and Cdc6 promoter chimera drives expression of the IGF-IR ribozyme. This promoter limited retinal expression of the reporter gene to proliferating endothelial cells in two mouse models of proliferative retinopathy. In addition, expression of the IGF-IR ribozyme by this promoter inhibited aberrant retinal angiogenesis in both models while preserving normal vessels. These results demonstrate the feasibility of IGF-IR ribozyme expression in a selective manner for safer treatment of abnormal angiogenesis associated with retinopathy.

Animals↗