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首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >Neuron-specific deletion of VEGF or its receptor Flk-1 impairs recognition memory
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Neuron-specific deletion of VEGF or its receptor Flk-1 impairs recognition memory

机译:特异性缺失VEGF或其受体FLK-1损害识别记忆

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Vascular endothelial growth factor (VEGF, also known as VEGF-A) is a pleiotropic factor which is expressed by neurons, astrocytes and perivascular macrophages, as well as endothelial cells, in the brain. Recently, VEGF signaling has been implicated in learning and memory, and several clinical and preclinical studies demonstrate that VEGF inhibitors induce cognitive impairment. However, the role of endogenous neuronal VEGF signaling in recognition memory remains unclear. Recently, we have developed mice with forebrain excitatory neuron-specific deletion of VEGF or its receptor, fetal liver kinase 1 (Flk-1) by crossing Camk2a-Cre mice with Vegfa(flox/flox) and Flk-1(flox/flox) mice, respectively. Using these conditional knockout mice, the present study addressed the influence of forebrain excitatory neuron-specific deletion of VEGF or Flk-1 on recognition memory in the novel object recognition test. The results show that both short-term (2 h) and long-term (24 h) recognition memory are impaired by neuron-specific deletion of either Flk-1 or VEGF. These findings indicate the physiological importance of endogenous neuronal VEGF-Flk-1 signaling in recognition memory. In addition, the current results also suggest that the impairment of neuronal VEGF-Flk-1 signaling can be a cause of anti-VEGF chemotherapy-induced cognitive impairment. (C) 2019 Published by Elsevier B.V.
机译:血管内皮生长因子(VEGF,也称为VEGF-A)是由神经元,星形胶质细胞和血管外巨噬细胞以及脑中的内皮细胞表达的脂肪ropic因素。最近,VEGF信号传导一直涉及学习和记忆,并且几个临床和临床前研究表明VEGF抑制剂诱导认知障碍。然而,在识别记忆中的内源神经元VEGF信号传导的作用仍不清楚。最近,我们通过使用VEGFA(FLOX / FLOX)和FLK-1(FLOX / FLOX)(FLOX / FLOX)通过穿越CAMK2A-CRE小鼠,开发了具有预脑兴奋性神经元特异性缺失的VEGF或其受体,胎儿肝激酶1(FLK-1)的小鼠小鼠分别。使用这些条件敲除小鼠,本研究解决了在新型对象识别试验中对VEGF或FLK-1对VEGF或FLK-1的识别记忆的影响。结果表明,短期(2小时)和长期(24小时)识别记忆由FLK-1或VEGF的神经元特异性缺失损害。这些发现表明识别记忆中内源神经元VEGF-FLK-1信号传导的生理重要性。此外,目前的结果还表明神经元VEGF-FLK-1信号传导的损害可以是抗VEGF化疗引起的认知障碍的原因。 (c)2019年由elestvier b.v发布。

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