首页> 外文期刊>Alzheimer s Research & Therapy >ApoA-I deficiency increases cortical amyloid deposition, cerebral amyloid angiopathy, cortical and hippocampal astrogliosis, and amyloid-associated astrocyte reactivity in APP/PS1 mice
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ApoA-I deficiency increases cortical amyloid deposition, cerebral amyloid angiopathy, cortical and hippocampal astrogliosis, and amyloid-associated astrocyte reactivity in APP/PS1 mice

机译:ApoA-I缺乏会增加APP / PS1小鼠的皮质淀粉样蛋白沉积,脑淀粉样血管病,皮质和海马星形胶质增生以及淀粉样蛋白相关的星形胶质细胞反应性

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Alzheimer’s disease (AD) is defined by amyloid beta (Aβ) plaques and neurofibrillary tangles and characterized by neurodegeneration and memory loss. The majority of AD patients also have Aβ deposition in cerebral vessels known as cerebral amyloid angiopathy (CAA), microhemorrhages, and vascular co-morbidities, suggesting that cerebrovascular dysfunction contributes to AD etiology. Promoting cerebrovascular resilience may therefore be a promising therapeutic or preventative strategy for AD. Plasma high-density lipoproteins (HDL) have several vasoprotective functions and are associated with reduced AD risk in some epidemiological studies and with reduced Aβ deposition and Aβ-induced inflammation in 3D engineered human cerebral vessels. In mice, deficiency of apoA-I, the primary protein component of HDL, increases CAA and cognitive dysfunction, whereas overexpression of apoA-I from its native promoter in liver and intestine has the opposite effect and lessens neuroinflammation. Similarly, acute peripheral administration of HDL reduces soluble Aβ pools in the brain and some studies have observed reduced CAA as well. Here, we expand upon the known effects of plasma HDL in mouse models and in vitro 3D artery models to investigate the interaction of amyloid, astrocytes, and HDL on the cerebrovasculature in APP/PS1 mice. APP/PS1 mice deficient or hemizygous for Apoa1 were aged to 12?months. Plasma lipids, amyloid plaque deposition, Aβ protein levels, protein and mRNA markers of neuroinflammation, and astrogliosis were assessed using ELISA, qRT-PCR, and immunofluorescence. Contextual and cued fear conditioning were used to assess behavior. In APP/PS1 mice, complete apoA-I deficiency increased total and vascular Aβ deposition in the cortex but not the hippocampus compared to APP/PS1 littermate controls hemizygous for apoA-I. Markers of both general and vascular neuroinflammation, including Il1b mRNA, ICAM-1 protein, PDGFRβ protein, and GFAP protein, were elevated in apoA-I-deficient APP/PS1 mice. Additionally, apoA-I-deficient APP/PS1 mice had elevated levels of vascular-associated ICAM-1 in the cortex and hippocampus and vascular-associated GFAP in the cortex. A striking observation was that astrocytes associated with cerebral vessels laden with Aβ or associated with Aβ plaques showed increased reactivity in APP/PS1 mice lacking apoA-I. No behavioral changes were observed. ApoA-I-containing HDL can reduce amyloid pathology and astrocyte reactivity to parenchymal and vascular amyloid in APP/PS1 mice.
机译:阿尔茨海默氏病(AD)由淀粉样蛋白(Aβ)斑块和神经原纤维缠结定义,并具有神经变性和记忆力减退的特征。大多数AD患者在脑血管中也存在Aβ沉积,称为脑淀粉样血管病(CAA),微出血和血管合并症,提示脑血管功能障碍是AD病因的原因。因此,增强脑血管弹性可能是AD的有希望的治疗或预防策略。血浆高密度脂蛋白(HDL)具有多种血管保护功能,在某些流行病学研究中与降低AD风险有关,并与3D工程化人脑血管中Aβ沉积和Aβ诱导的炎症减少有关。在小鼠中,HDL的主要蛋白质成分apoA-I缺乏会增加CAA和认知功能障碍,而从其天然启动子在肝脏和肠中过度表达apoA-I则具有相反的作用,并减轻了神经炎症。同样,急性末期给予HDL会减少大脑中的可溶性Aβ库,一些研究也观察到了CAA的减少。在这里,我们扩展了小鼠模型和体外3D动脉模型中血浆HDL的已知作用,以研究淀粉样蛋白,星形胶质细胞和HDL对APP / PS1小鼠脑血管系统的相互作用。 Apoa1缺陷或半合子的APP / PS1小鼠的年龄为12个月。使用ELISA,qRT-PCR和免疫荧光法评估血浆脂质,淀粉样蛋白斑块沉积,Aβ蛋白水平,神经炎症蛋白和mRNA标志以及星形胶质瘤。上下文和暗示的恐惧条件被用来评估行为。在APP / PS1小鼠中,与APP / PS1同窝对照的apoA-I半合子相比,完全apoA-I缺乏增加了总皮层和血管Aβ在皮质中的沉积,但没有增加海马体。在apoA-I缺失的APP / PS1小鼠中,包括Il1b mRNA,ICAM-1蛋白,PDGFRβ蛋白和GFAP蛋白在内的普通和血管神经炎症标记物均升高。此外,apoA-I缺陷型APP / PS1小鼠的皮质和海马血管相关ICAM-1水平升高,皮层中血管相关GFAP水平升高。令人惊讶的观察是,在缺乏apoA-I的APP / PS1小鼠中,与充满Aβ或与Aβ斑块相关的脑血管相关的星形胶质细胞显示出增加的反应性。没有观察到行为变化。含ApoA-I的HDL可降低APP / PS1小鼠的淀粉样蛋白病理学和星形胶质细胞对实质和血管淀粉样蛋白的反应性。

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