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首页> 外文期刊>Journal of neuroinflammation >Neurological and behavioral abnormalities, ventricular dilatation, altered cellular functions, inflammation, and neuronal injury in brains of mice due to common, persistent, parasitic infection
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Neurological and behavioral abnormalities, ventricular dilatation, altered cellular functions, inflammation, and neuronal injury in brains of mice due to common, persistent, parasitic infection

机译:由于常见,持续性和寄生虫感染,小鼠的神经和行为异常,心室扩张,细胞功能改变,炎症和神经元损伤

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Background Worldwide, approximately two billion people are chronically infected with Toxoplasma gondii with largely unknown consequences. Methods To better understand long-term effects and pathogenesis of this common, persistent brain infection, mice were infected at a time in human years equivalent to early to mid adulthood and studied 5–12 months later. Appearance, behavior, neurologic function and brain MRIs were studied. Additional analyses of pathogenesis included: correlation of brain weight and neurologic findings; histopathology focusing on brain regions; full genome microarrays; immunohistochemistry characterizing inflammatory cells; determination of presence of tachyzoites and bradyzoites; electron microscopy; and study of markers of inflammation in serum. Histopathology in genetically resistant mice and cytokine and NRAMP knockout mice, effects of inoculation of isolated parasites, and treatment with sulfadiazine or αPD1 ligand were studied. Results Twelve months after infection, a time equivalent to middle to early elderly ages, mice had behavioral and neurological deficits, and brain MRIs showed mild to moderate ventricular dilatation. Lower brain weight correlated with greater magnitude of neurologic abnormalities and inflammation. Full genome microarrays of brains reflected inflammation causing neuronal damage (Gfap), effects on host cell protein processing (ubiquitin ligase), synapse remodeling (Complement 1q), and also increased expression of PD-1L (a ligand that allows persistent LCMV brain infection) and CD 36 (a fatty acid translocase and oxidized LDL receptor that mediates innate immune response to beta amyloid which is associated with pro-inflammation in Alzheimer's disease). Immunostaining detected no inflammation around intra-neuronal cysts, practically no free tachyzoites, and only rare bradyzoites. Nonetheless, there were perivascular, leptomeningeal inflammatory cells, particularly contiguous to the aqueduct of Sylvius and hippocampus, CD4+ and CD8+ T cells, and activated microglia in perivascular areas and brain parenchyma. Genetically resistant, chronically infected mice had substantially less inflammation. Conclusion In outbred mice, chronic, adult acquired T. gondii infection causes neurologic and behavioral abnormalities secondary to inflammation and loss of brain parenchyma. Perivascular inflammation is prominent particularly contiguous to the aqueduct of Sylvius and hippocampus. Even resistant mice have perivascular inflammation. This mouse model of chronic T. gondii infection raises questions of whether persistence of this parasite in brain can cause inflammation or neurodegeneration in genetically susceptible hosts.
机译:背景技术在全球范围内,约有20亿人长期感染弓形虫,其后果不明。方法为了更好地了解这种常见的持续性脑部感染的长期作用和发病机理,在成年早期至中期的人类年中,一次对小鼠进行了一次感染,并在5-12个月后进行了研究。研究了外观,行为,神经功能和脑MRI。发病机理的其他分析包括:脑重量与神经系统检查结果的相关性;以脑区域为重点的组织病理学;全基因组微阵列;表征炎症细胞的免疫组织化学;测定速殖子和缓殖子的存在;电子显微镜;和血清炎症标志物的研究。研究了遗传抗性小鼠,细胞因子和NRAMP基因敲除小鼠的组织病理学,接种分离的寄生虫的效果以及磺胺嘧啶或αPD1配体的治疗。结果感染后十二个月,相当于中老年人的时间,小鼠有行为和神经功能缺陷,脑MRI显示轻度至中度心室扩张。较低的脑重量与更大的神经系统异常和炎症相关。大脑的全基因组微阵列反映出炎症,引起神经元损伤(Gfap),对宿主细胞蛋白质加工的影响(泛素连接酶),突触重塑(补体1q)以及PD-1L(允许持续性LCMV脑部感染的配体)表达增加。 CD 36(一种脂肪酸转座酶和氧化的LDL受体,介导对β淀粉样蛋白的先天免疫应答,这与阿尔茨海默氏病的促炎症反应相关)。免疫染色未检测到神经内囊肿周围的炎症,几乎没有游离速殖子,只有罕见的缓殖子。尽管如此,在血管周围区域和脑实质中仍有血管周围的软脑膜炎细胞,特别是与西尔维斯和海马输水管,CD4 +和CD8 + T细胞以及活化的小胶质细胞相邻。具有遗传抗药性的慢性感染小鼠的炎症明显减少。结论在成年小鼠中,成年慢性弓形虫感染会导致继发于炎症和脑实质丧失的神经和行为异常。血管周围炎症特别突出,特别是与西尔维乌斯海马输水管相邻。甚至抗性小鼠也有血管周围炎症。这种慢性弓形虫感染的小鼠模型引起了这样的问题,即这种寄生虫在大脑中的持久性是否会在遗传易感宿主中引起炎症或神经退行性变。

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