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find Keyword "Retinal neovascularization/drug therapy" 5 results
  • Inhibition of liposome-mediated recombinant plasmid expressing small interference RNA targeting hypoxia-induced factor-1α on retinal neovascularization in mice

    Objective To observe the inhibition of LipofectamineTM2000 (LF2000)mediated pSUPER recombinant plasmid expressing small interference RNA targeting hypoxia-induced factor (HIF)-1alpha;(pSUPERsiHIF-1alpha;) on retinal neovascularization in mice. Methods pSUPERsiHIF-1alpha; recombinant plasmid was created. Forty-eight (seven-day-old) C57BL/6J mice were randomly divided into a normal group, the control group, empty vector group and gene therapy group with 12 mice in each group. Mice in the normal group were kept in normal room air, while the other three groups retinal neovascularization was induced by hypoxia. The mice in control group were not treated. The mice in the vector group received intravitreous injection of pSUPER and LF2000 (1 mu;l), and the gene therapy group received pSUPERsiHIF-1alpha; and LF2000 (1 mu;l)one day before being returned to normal room air.Fluorescent angiography was used to assess the vascular pattern. The proliferative neovascular response was quantified by counting the nuclei of new vessels extending from the retina into the vitreous in cross-sections.HIF-lalpha;and vascular endothelial growth factor (VEGF) levels in retinas were measured by immune histochemical staining method and reverse transeriptase-polymerase chain reaction (RT-PCR). Results Fluorescent angiography showed radial branching pattern vessels in the normal group and distorted large vessels, obstructed capillaries, many neovascular tuffs, fluorescence leakage in the peripheral retina in the control group and vector group. The gene therapy group demonstrated a significant reduction in neovascular tufts and fluorescence leakage compared with the control group and the vector group. The number of vascular cell nuclei extending breaking through the internal limiting membrane(ILM) of control group and vector group increased significantly compared with normal group (F=5850.016,P<0.05), while obviously decreasing in the gene therapy group compared with control group (F=3012.469,P<0.05). Immunohistochemical staining showed the expression of HIF-1alpha; protein in nucleus and VEGF protein in cytoplasm. The expression of HIF-1alpha; protein in retina was negative, while VEGF protein was weakly positive in normal group. The expression of HIF-1alpha; and VEGF protein were both positive in control group and vector group, while weakly positive in gene therapy group. The Results of RT-PCR showed that the expression of HIF-1alpha; mRNA in retina was increased significantly in control group and vector group as compared with normal group (F=3102.326,P<0.05), while decreasing significantly in gene therapy group as compared with control group (F=3336.425,P<0.05). Conclusion Retinal neovascularization in the mice is significantly inhibited by intravitreal injection of LF2000-mediated recombinant plasmid pSUPERsiHIF-1alpha;.

    Release date:2016-09-02 05:22 Export PDF Favorites Scan
  • The inhibitory effect of Bevacizumab on retinal neovascularization in oxygen induced retinopathy in the mouse

    Objective To observe the inhibitory effect of Bevacizumab on retinal neovascularization in oxygen-induced retinopathy in the mouse. Methods 90 one-week-old C57B L/6J mice were divided into four groups at random. 15 mice in the 1st group as normal control group, 15 mice in the 2nd group as oxygen control group, 30 mice in the 3rd group as high-dose Bevacizumab treatment group, 30 mice in the 4th group as low-dose Bevacizumab treatment group. The 2nd, 3rd and 4th groups were exposed to 75% oxygen for 5 days and then to room air. At the 12th day, One eye of each mouse of two control groups were received an intravitreal injection with Be vacizumab at 2 mu;l、1 mu;l respectively, and the same volume of BSS was injected into the other eye of the mice. The adenosine diphosphatase (ADPase) histochemical technique was used for retinal flat mount to assess the oxygen-induced change s of retinal vessels. The number of the endothelium cell nuclei of proliferative neovascularization was quantified by retinal microtome chromoscopy. Real-time PCR analysis was performed to examine the expression of VEGF mRNA. Results Comparing with oxygen control group, regular distributions, reduced density of retina l vascular and reduced endothelium cell nuclei which extending retinal membrane were observed in the treatment groups(P<0.001). But the differences between two treatment groups are not statistically significant (P>0.05). The expression of VEGF mRNA was not significantly different in oxygen control group whatever it whether accepted Bevacizumab treatment or high or low dose (P>0.05). Conclusion Intravitreal injection with Bevacizumab can effectively inhibits the retinal neova scularization in oxygen-induced retinopathy in the mouse. Intravitreal injection with Bevacizumab might become to the new method to treat retinopathy of premature. (Chin J Ocul Fundus Dis,2008,24:184-188)

    Release date:2016-09-02 05:46 Export PDF Favorites Scan
  • Inhibitory effect of small interfering RNA targeting peroxisome-proliferator-activated receptor-γcoactivator-1αon retinal neovascularization in the mouse

    ObjectiveTo evaluate the inhibitory effect of small interfering RNA (siRNA) targeting peroxisome-proliferator-activated receptor-γcoactivator-1α(PGC-1α) on retinal neovascularization in the mouse. MethodsEighty seven-day-old C57BL/6J mice were divided into normal group, model blank group, model control group and PGC-1αsiRNA group, twenty mice in each group. Mice in the normal group were kept in normal room air. Mice in the model blank group, model control group and PGC-1αsiRNA group were induced for retinal neovascularization by hypoxia. Liposome with PGC-1αsiRNA (1 μl) and liposome with negative control siRNA (1 μl) were injected into the vitreous in the PGC-1αsiRNA group and model control group respectively when mice were moved out to room air from the cabin (Postnatal 12). No injection were performed in the model blank group. At postnatal 17, fluorescein angiography was used to assess the vascular pattern.The proliferative neovascular response was quantified by counting the nuclei of new vessels extending from the retina into the vitreous in cross-sections. PGC-1αand vascular endothelial growth factor (VEGF) level in retina were measured by real-time polymerase chain reaction (real-time PCR) and Western blot. Inhibition efficiency of PGC-1αsiRNA on PGC-1αand VEGF was calculated. ResultsMice in the normal group showed reticular distribution of retinal blood vessels. Central nonperfused retina, neovascular tufts and fluorescein leakage were seen in the model blank group and model control group. Neovascular tuft and fluorescein leakage were decreased in the PGC-1αsiRNA group compared to the model blank group and model control group. The neovascular nuclei were increased in the model blank group and model control group compared to the normal group (P < 0.05). The neovascular nuclei were decreased in the PGC-1αsiRNA group compared to the model blank group and model control group (P < 0.05). The expression of PGC-1αmRNA and protein in retina was increased significantly in the model blank group and model control group as compared with normal group, while decreased 54% and 53% respectively in the PGC-1αsiRNA group as compared with model blank group and model control group (P < 0.05). The expression of VEGF mRNA and protein in retina was increased significantly in the model blank group and model control group as compared with normal group, while decreased significantly in the PGC-1αsiRNA group (decreased 48% and 40% respectively) as compared with model blank group and model control group (P < 0.05). ConclusionsIntravitreal injection of PGC-1αsiRNA mediated by liposome can inhibit retinal neovascularization in the mouse effectively.

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  • Cysteine-rich 61 siRNA reduces retinal neovascularization of mice

    ObjectiveTo explore the inhibition effect of Cysteine-rich 61(CCN1;Cyr61) specific siRNA expression vector on RNV in a mouse model of oxygen-induced retinopathy (OIR). MethodsOne hundred and twenty healthy C57BL/6J mice were chosen and randomly divided into the experimental group and control group, with 60 mice in each group. The experimental group was intravitreously injected with CCN1siRNA recombinant plasmids. The control group was injected with vector plasmids. Adenosine diphosphate-ase stained retina flat-mounts was performed to assess the retinal vascular profiles, retinal section with HE staining was applied to count the number of new vascular cell nuclei and the protein and mRNA expression of CCN1 and vascular endothelial growth factor (VEGF) were detected by immunohistochemistry, Western blot and Real-time RT-PCR. ResultsCompared with control group, regular distributions, good branches and reduced density of retinal neovascularization were observed in the experimental group. The number of nucleus of vascular endothelial cells breaking through the inner limiting membrane was obviously less in the experimental group than that in the control group (t=8.756, P < 0.05). The expression of CCN1 and VEGF were obviously decreased in the experimental group compared with the control group (all P < 0.05). ConclusionThe development of RNV of ROP can be markedly inhibited by RNA interference targeting CCN1, and CCN1siRNA may provide an effective method for preventing vascular proliferative retinopathy.

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  • Optimization of treatment outcome and exploration of new indication in anti-vascular endothelial growth factor therapy

    Since anti-vascular endothelial growth factor (VEGF) therapy has recently become the first-line treatment of wet age related macular degeneration in China, as well as retinopathy of prematurity, neovascular glaucoma and macular edema secondary to diabetic retinopathy or retinal vein occlusion in other countries. It is worth thinking about that how to perform anti-VEGF treatment properly to benefit more patients. We reviewed the fields of clinical researches to explore the best role of anti-VEGF treatment in prevention and treatment of retinal disease in future.

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