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Diabetic eNOS-Knockout Mice Develop Accelerated Retinopathy

机译:糖尿病性eNOS基因敲除小鼠发展为视网膜病变

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Purpose.: Dysfunction of endothelial nitric oxide synthase (eNOS) has been implicated in the pathogenesis of diabetic vascular complications. This study was undertaken to determine the role of eNOS in the development of diabetic retinopathy (DR), by investigating the functional consequences of its deficiency in the diabetic state. Methods.: Diabetes was induced in eNOS-knockout (eNOSa??/a??) and C57B/6 mice by streptozotocin (STZ) injection. Retinal vasculature was evaluated by albumin extravasation, to quantitatively measure vascular permeability, and by trypsin-digested retinal vascular preparations, to quantify acellular capillaries. Gliosis was evaluated by immunofluorescent techniques. Retinal capillary basement membrane thickness was assessed by transmission electron microscopy. Total retinal nitric oxide level was assessed by measuring nitrateitrite using a fluorometric-based assay, iNOS expression was examined by real-time PCR. Results.: Diabetic eNOSa??/a?? mice exhibit more severe retinal vascular permeability than age-matched diabetic C57BL/6 mice, detectable as early as 3 weeks after diabetes induction. Diabetic eNOSa??/a?? mice also show earlier onset and an increased number of acellular capillaries, sustained gliosis, and increased capillary basement membrane thickness. Total nitric oxide (NO) level was also increased, concomitant with elevated iNOS expression in diabetic eNOSa??/a?? retina. Conclusions.: Diabetic eNOSa??/a?? mice exhibit A significantly wider range of advanced retinal vascular complications than the age-matched diabetic C57BL/6 mice, supporting the notion that eNOS-derived NO plays an essential role in retinal vascular function. This mouse model also faithfully replicates many of the hallmarks of vascular changes associated with human retinopathy, thus providing a unique model to aid in understanding the pathologic mechanisms of and to develop effective therapeutic strategies for diabetic retinopathy.
机译:目的:内皮型一氧化氮合酶(eNOS)的功能异常与糖尿病血管并发症的发病机制有关。这项研究旨在通过研究糖尿病性视网膜病变中eNOS缺乏的功能后果来确定eNOS在糖尿病性视网膜病变(DR)发生中的作用。方法:通过链脲佐菌素(STZ)注射在eNOS基因敲除(eNOSaα/aβ)和C57B / 6小鼠中诱发糖尿病。通过白蛋白外渗评估视网膜血管系统,以定量测量血管通透性,并通过胰蛋白酶消化的视网膜血管制剂评估脱细胞毛细血管。通过免疫荧光技术评估胶质变性。通过透射电子显微镜评估视网膜毛细血管基底膜的厚度。使用基于荧光的测定法测量硝酸盐/亚硝酸盐来评估总视网膜一氧化氮水平,通过实时PCR检查iNOS表达。结果:糖尿病eNOSa ?? / a ??与年龄匹配的糖尿病C57BL / 6小鼠相比,小鼠的视网膜血管通透性更强,可在诱导糖尿病后3周发现。糖尿病eNOSa ?? / a ??小鼠还显示出较早的发作和无细胞毛细血管数目增加,持续的神经胶质增生和毛细血管基底膜厚度增加。一氧化氮(NO)的总含量也增加了,与糖尿病性eNOSaα/aβ中iNOS的表达升高有关。视网膜。结论:糖尿病eNOSa ?? / a ??与年龄匹配的糖尿病C57BL / 6小鼠相比,小鼠的视网膜视网膜血管并发症范围更广,支持eNOS衍生的NO在视网膜血管功能中起重要作用的观点。该小鼠模型还忠实地复制了与人类视网膜病变相关的许多血管变化标志,从而提供了独特的模型来帮助理解糖尿病性视网膜病变的病理机制并制定有效的治疗策略。

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