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AAV delivery of shRNA against IRS1 in GABAergic neurons in rat hippocampus impairs spatial memory in females and male rats

机译:AAV在大鼠海马加工神经元中的ShRNA对抗IRS1损害女性和雄性大鼠的空间记忆

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Brain insulin resistance is a major factor leading to impaired cognitive function and it is considered as the onset of Alzheimer ' s disease. Insulin resistance is intimately linked to inflammatory conditions, many studies have revealed how pro-inflammatory cytokines lead to insulin resistance, by inhibiting IRS1 function. Thus, the dysfunction of insulin signaling is concomitant with inflammatory biomarkers. However, the specific effect of IRS1 impaired function in otherwise healthy brain has not been dissected out. So, we decided in our study, to study the specific role of IRS1 in the hippocampus, in the absence of comorbidities. To that end, shRNA against rat and human IRS1 was designed and tested in cultured HEK cells to evaluate mRNA levels and specificity. The best candidate sequence was encapsulated in an AAV vector (strain DJ8) under the control of the cytomegalovirus promoter and together with the green fluorescent protein gene as a reporter. AAV-CMV-shIRS1-EGFP and control AAV-CMV-EGFP were inoculated into the dorsal hippocampus of female and male Wistar rats. One month later, animals undertook a battery of behavioral paradigms evaluating spatial and social memory and anxiety. Our results suggest that females displayed increased susceptibility to AAV-shIRS1 in the novel recognition object paradigm; whereas both females and males show impaired performance in the T maze when infected with AAV-shIRS1 compared to control. Anxiety parameters were not affected by AAV-shIRS1 infection. We observed specific fluorescence within the hilum of the dentate gyrus, in immuno-characterized parvalbumin and somatostatin neurons. AAV DJ8 did not enter astrocytes. Intense green fibers were found in the fornix, mammillary bodies, and in the medial septum indicating that hippocampal efferent had been efficiently targeted by the AAV DJ8 infection. We observed that AAV-shIRS1 reduced significantly synaptophysin labeling in hippocampal-septal projections compared to controls. These results support that, small alterations in the insulin/IGF1 pathway in specific hippocampal circuitries can underlie alterations in synaptic plasticity and affect behavior, in the absence of inflammatory conditions
机译:脑胰岛素抵抗是导致认知功能受损的主要因素,并且被认为是阿尔茨海默病的发作。胰岛素抵抗与炎性病症密切相关,许多研究表明,通过抑制IRS1功能,促炎细胞因子如何导致胰岛素抵抗。因此,胰岛素信号传导的功能障碍伴随着炎症生物标志物。然而,IRS1受损功能在其他健康大脑中的特定效果尚未解剖。因此,我们在我们的研究中决定,研究IRS1在海马中的特定作用,在没有合并症的情况下。为此,在培养的HEK细胞中设计并测试了对大鼠和人IRS1的shRNA,以评估mRNA水平和特异性。在CytomeGalovirus启动子的控制下,将最佳候选序列包封在AAV载体(菌株DJ8)中,并与绿色荧光蛋白基因一起作为报告。 Aav-CMV-Shirs1-EGFP和对照AAV-CMV-EGFP接种到雌性和雄性Wistar大鼠的背部海马中。一个月后,动物进行了一部用于评估空间和社会记忆和焦虑的行为范例的电池。我们的研究结果表明,女性在新颖的识别对象范式中显示了对AAV-Shirs1的易感性增加;而女性和男性在与对照相比,患有AAV-Shirs1的T迷宫中表现出损害。 Aav-Shirs1感染的焦虑参数不受影响。我们在免疫表征的帕瓦尔白蛋白和生长抑制素神经元中观察到牙齿型转象的Hilum内的特异性荧光。 AAV DJ8没有进入星形胶质细胞。在穹窿,哺乳动物体和内侧隔膜中发现了强烈的绿色纤维,表明海马炫耀已被AAV DJ8感染有效地靶向。与对照相比,我们观察到AAV-Shirs1在海马 - 隔膜突起中减少了显着的突触蛋白标记。这些结果支持,在没有炎症条件的情况下,特定海马电路中胰岛素/ IGF1途径中的胰岛素/ IGF1途径的小改动可以提高突触塑性和影响行为的改变

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