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Characterization of Tauopathy in a Rat Model of Post-Stroke Dementia Combining Acute Infarct and Chronic Cerebral Hypoperfusion

机译:急性梗塞后初步痴呆症大鼠模型中踝疗作用的特征结合急性梗塞和慢性脑低血压灌注

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摘要

Post-stroke dementia (PSD) is a major neurodegenerative consequence of stroke. Tauopathy has been reported in diverse neurodegenerative diseases. We investigated the cognitive impairment and pathomechanism associated with tauopathy in a rat model of PSD by modeling acute ischemic stroke and underlying chronic cerebral hypoperfusion (CCH). We performed middle cerebral artery occlusion (MCAO) surgery in rats to mimic acute ischemic stroke, followed by bilateral common carotid artery occlusion (BCCAo) surgery to mimic CCH. We performed behavioral tests and focused on the characterization of tauopathy through histology. Parenchymal infiltration of cerebrospinal fluid (CSF) tracers after intracisternal injection was examined to evaluate glymphatic function. In an animal model of PSD, cognitive impairment was aggravated when BCCAo was combined with MCAO. Tauopathy, manifested by tau hyperphosphorylation, was prominent in the peri-infarct area when CCH was combined. Synergistic accentuation of tauopathy was evident in the white matter. Microtubules in the neuronal axon and myelin sheath showed partial colocalization with the hyperphosphorylated tau, whereas oligodendrocytes showed near-complete colocalization. Parenchymal infiltration of CSF tracers was attenuated in the PSD model. Our experimental results suggest a hypothesis that CCH may aggravate cognitive impairment and tau hyperphosphorylation in a rat model of PSD by interfering with tau clearance through the glymphatic system. Therapeutic strategies to improve the clearance of brain metabolic wastes, including tau, may be a promising approach to prevent PSD after stroke.
机译:后卒中后痴呆(PSD)是中风的主要神经变性后果。在不同的神经退行性疾病中曾据报道过疏近病。通过造型急性缺血性卒中和依赖慢性脑低渗(CCH),调查了与PSD大鼠模型中的认知障碍和病理机制。我们在大鼠中进行了中脑动脉闭塞(MCAO)手术以模仿急性缺血性卒中,然后是双侧常见的颈动脉闭塞(BCCAO)手术以模拟CCH。我们通过组织学进行了行为测试,并专注于跨部门病变的表征。检查脑脊液(CSF)示踪剂的实质浸润检查脑内注射后的脑肿瘤液,评价甘蓝型功能。在PSD的动物模型中,当BCCAO与MCAO结合时加剧了认知障碍。表现为Tau超磷酸化的拇趾病,当CCH组合时,在Peri-Infarct区域突出。在白质中明显明显介的协同突出。神经元轴突和髓鞘中的微管与高磷酸化Tau的部分分致化,而少突胶质细胞显示出接近完全的分层化。在PSD模型中衰减CSF示踪剂的实质渗透。我们的实验结果表明,CCH可以通过干扰通过甘露晶体系干扰Tau间隙来加剧PSD大鼠模型中的认知障碍和TAU高磷酸化。改善脑代谢废物的清关的治疗策略可能是预防卒中后PSD的有希望的方法。

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