Department of Molecular Biology and Biochemistry, University of California, Irvine, Irvine, California, USA.
Institute for Immunology, University of California, Irvine, Irvine, California, USA.
J Infect Dis. 2024 Sep 10;230(Supplement_2):S165-S172. doi: 10.1093/infdis/jiae227.
Toxoplasma gondii infection of Alzheimer's disease model mice decreases amyloid β plaques. We aimed to determine if there is a brain regional difference in amyloid β reduction in the brains of T. gondii-infected compared to control mice.
Three-month-old 5xFAD (AD model) mice were injected with T. gondii or with phosphate-buffered saline as a control. Intact brains were harvested at 6 weeks postinfection, optically cleared using iDISCO+, and brain-wide amyloid burden was visualized using volumetric light-sheet imaging. Amyloid signal was quantified across each brain and computationally mapped to the Allen Institute Brain Reference Atlas to determine amyloid density in each region.
A brain-wide analysis of amyloid in control and T. gondii-infected 5xFAD mice revealed that T. gondii infection decreased amyloid burden in the brain globally as well as in the cortex and hippocampus, and many daughter regions. Daughter regions that showed reduced amyloid burden included the prelimbic cortex, visual cortex, and retrosplenial cortex. The olfactory tubercle, a region known to have increased monocytes following T. gondii infection, also showed reduced amyloid after infection.
T. gondii infection of AD mice reduces amyloid burden in a brain region-specific manner that overlaps with known regions of T. gondii infection and peripheral immune cell infiltration.
刚地弓形虫感染阿尔茨海默病模型小鼠可减少淀粉样β斑块。我们旨在确定与对照相比,感染刚地弓形虫的小鼠大脑中淀粉样β减少是否存在脑区差异。
将 3 月龄 5xFAD(AD 模型)小鼠用刚地弓形虫或磷酸盐缓冲液(对照)进行注射。感染后 6 周收获完整大脑,使用 iDISCO+光学清除,使用体积光片成像可视化全脑淀粉样负担。对每个大脑的淀粉样信号进行定量,并通过计算映射到艾伦脑科研究所脑参考图谱,以确定每个区域的淀粉样蛋白密度。
对对照和感染刚地弓形虫的 5xFAD 小鼠的大脑进行淀粉样分析表明,刚地弓形虫感染可降低大脑的淀粉样负担,包括皮质和海马体以及许多子区域。表现出淀粉样蛋白负担降低的子区域包括额前皮质、视觉皮质和后扣带皮质。嗅觉结节,即已知在刚地弓形虫感染后单核细胞增加的区域,感染后也显示出淀粉样蛋白减少。
刚地弓形虫感染 AD 小鼠以与已知的刚地弓形虫感染和外周免疫细胞浸润区域重叠的方式特异性降低大脑中的淀粉样负担。