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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Brain region-specific immunolocalization of the lipolysis-stimulated lipoprotein receptor (LSR) and altered cholesterol distribution in aged LSR +/- mice
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Brain region-specific immunolocalization of the lipolysis-stimulated lipoprotein receptor (LSR) and altered cholesterol distribution in aged LSR +/- mice

机译:脂解刺激脂蛋白受体(LSR)的脑区域特异性免疫定位和改变的LSR +/-小鼠胆固醇分布

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Brain lipid homeostasis is important for maintenance of brain cell function and synaptic communications, and is intimately linked to age-related cognitive decline. Because of the blood-brain barrier's limiting nature, this tissue relies on a complex system for the synthesis and receptor-mediated uptake of lipids between the different networks of neurons and glial cells. Using immunofluorescence, we describe the region-specific expression of the lipolysis-stimulated lipoprotein receptor (LSR), in the mouse hippocampus, cerebellum Purkinje cells, the ependymal cell interface between brain parenchyma and cerebrospinal fluid, and the choroid plexus. Colocalization with cell-specific markers revealed that LSR was expressed in neurons, but not astrocytes. Latency in arms of the Y-maze exhibited by young heterozygote LSR +/- mice was significantly different as compared to control LSR +/+, and increased in older LSR +/- mice. Filipin and Nile red staining revealed membrane cholesterol content accumulation accompanied by significantly altered distribution of LSR in the membrane, and decreased intracellular lipid droplets in the cerebellum and hippocampus of old LSR +/- mice, as compared to control littermates as well as young LSR +/- animals. These data therefore suggest a potential role of LSR in brain cholesterol distribution, which is particularly important in preserving neuronal integrity and thereby cognitive functions during aging.
机译:脑脂质稳态对维持脑细胞功能和突触通讯很重要,并且与年龄相关的认知功能下降密切相关。由于血脑屏障的局限性,该组织依赖复杂的系统在神经元和神经胶质细胞的不同网络之间合成和受体介导的脂质摄取。使用免疫荧光,我们描述了在小鼠海马,小脑浦肯野细胞,脑实质和脑脊液之间的室管膜细胞界面以及脉络丛中脂解刺激的脂蛋白受体(LSR)的区域特异性表达。与细胞特异性标记的共定位显示LSR在神经元中表达,但在星形胶质细胞中不表达。与对照LSR + / +相比,年轻的杂合子LSR +/-小鼠表现出的Y迷宫臂延迟显着不同,而在较大的LSR +/-小鼠中则有所增加。与对照同窝仔和年轻的LSR +相比,Filipin和Nile红色染色显示了膜胆固醇含量的积累,伴随着LSR在膜中分布的显着改变,以及小LSR +/-小鼠的小脑和海马中的细胞内脂质滴减少。 /- 动物。因此,这些数据表明了LSR在脑胆固醇分布中的潜在作用,这在保持神经元完整性以及衰老过程中的认知功能中尤其重要。

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