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首页> 外文期刊>Experimental Eye Research >Inhibition of experimental choroidal neovascularization in mice by anti-VEGFA/VEGFR2 or non-specific siRNA.
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Inhibition of experimental choroidal neovascularization in mice by anti-VEGFA/VEGFR2 or non-specific siRNA.

机译:抗VEGFA / VEGFR2或非特异性siRNA抑制小鼠实验性脉络膜新血管形成。

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Choroidal neovascularization (CNV) is one of the severe pathological consequences of the end-stage of age-related macular degeneration (AMD). Several lines of evidence implicate increased levels of vascular endothelial growth factor (VEGF) in the retinas of AMD patients. Current available agents for the inhibition of VEGF protein such as bevacizumab show significant promise for the treatment of exudative AMD. However, this compound still has limited efficacy and requires multiple administrations; thus, it is associated with a variety of ocular complications, including endophthalmitis and retinal detachment. In this study, we used anti-VEGFA/VEGFR2 or non-specific siRNA and evaluated their suppression of laser-induced choroidal neovascularization (CNV) in mice. Male adult C57BL/6J mice were used in the study. The mice were subjected to laser rupture of Bruch's membrane to induce CNV and then randomized to five groups with six mice per group. The five groups were blank control, vehicle control (5% glucose solution, GS), VEGFA.siRNA, VEGFR2.siRNA, and non-specific siRNA. Two days after laser photocoagulation, each group, with the exception of the blank control group, received 1 microl of the appropriate agent by intravitreal injection to both eyes. Seven days later, after taking fundus photography and fundus fluorescein angiography (FFA), the mice were killed for tissue sampling. Six eyes from three mice in each group were used for choroidal flatmounts to examine CNV. Six eyes from three mice in each group were subjected to RNA extraction for VEGF mRNA quantification by qRT-PCR. Retinal tissue from 2 mice without laser treatment was harvested as the assay reference. The incidence of burns which showed fluorescein leakage was 80.0% in blank control, 75.0% in GS, 55.0% in VEGFA.siRNA, 40.0% in VEGFR2.siRNA and 30.0% in non-specific siRNA group. The flatmounted specimens showed that the retinal pigment epithelium (RPE) was visualized as a uniform hexagonal array in nonlasered areas. On day 7 after laser burn, well-defined isolectin-B4 labeled CNV networks were shown within the burn spots of the 2 control groups. The inhibitory effects of the 3 siRNAs on CNV formation were statistically significant as compared to the 2 control groups. Compared to the control groups, the ocular expression of VEGF mRNA was decreased significantly in the 3 siRNA treated groups. The areas of CNV correlated with the expression of VEGF mRNA. Anti-VEGFA/VEGFR2 or non-specific siRNA can inhibit CNV and attenuate VEGF mRNA expression in a laser-induced mouse model of CNV. We conclude that the siRNAs may be an option for treating patients with exudative AMD, and more studies are needed to test the possible side-effects of the treatment.
机译:脉络膜新生血管形成(CNV)是年龄相关性黄斑变性(AMD)终末期的严重病理后果之一。有几条证据表明AMD患者视网膜中血管内皮生长因子(VEGF)水平升高。目前可用于抑制VEGF蛋白的药物(例如贝伐单抗)显示出治疗渗出性AMD的重大前景。但是,该化合物仍具有有限的功效,需要多次给药。因此,它与多种眼部并发症有关,包括眼内炎和视网膜脱离。在这项研究中,我们使用了抗VEGFA / VEGFR2或非特异性siRNA,并评估了它们对小鼠激光诱导的脉络膜新生血管形成(CNV)的抑制作用。雄性成年C57BL / 6J小鼠用于研究。使小鼠经受布鲁赫膜的激光破裂以诱导CNV,然后将其随机分为五组,每组六只小鼠。这五组分别是空白对照,载体对照(5%葡萄糖溶液,GS),VEGFA.siRNA,VEGFR2.siRNA和非特异性siRNA。激光光凝后两天,除空白对照组外,各组均通过玻璃体内注射给两只眼睛接受1微升适当试剂。七天后,在进行眼底照相和眼底荧光血管造影(FFA)后,处死小鼠进行组织采样。每组三只小鼠的六只眼用于脉络膜平片检查CNV。将来自每组三只小鼠的六只眼进行RNA提取,以通过qRT-PCR定量VEGF mRNA。收集来自2只未经激光治疗的小鼠的视网膜组织作为测定参考。空白对照中发现荧光素渗漏的烧伤发生率是80.0%,GS是75.0%,VEGFA.siRNA是55.0%,VEGFR2.siRNA是40.0%,非特异性siRNA组是30.0%。扁平样品显示视网膜色素上皮(RPE)在非激光区域可视为均匀的六边形阵列。激光烧伤后第7天,在2个对照组的烧伤斑内显示了定义明确的isolectin-B4标记的CNV网络。与2个对照组相比,这3种siRNA对CNV形成的抑制作用具有统计学意义。与对照组相比,在3个siRNA治疗组中VEGF mRNA的眼部表达显着降低。 CNV的面积与VEGF mRNA的表达相关。在激光诱导的CNV小鼠模型中,抗VEGFA / VEGFR2或非特异性siRNA可以抑制CNV并减弱VEGF mRNA的表达。我们得出的结论是,siRNA可能是治疗渗出性AMD患者的一种选择,还需要更多的研究来检验该治疗的可能副作用。

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