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Endothelial ether lipids link the vasculature to blood pressure behavior and neurodegeneration

机译:内皮醚脂质将脉管系统连接到血压行为和神经变性

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摘要

Vascular disease contributes to neurodegeneration, which is associated with decreased blood pressure in older humans. Plasmalogens, ether phospholipids produced by peroxisomes, are decreased in Alzheimer's disease, Parkinson's disease, and other neurodegenerative disorders. However, the mechanistic links between ether phospholipids, blood pressure, and neurodegeneration are not fully understood. Here, we show that endothelium-derived ether phospholipids affect blood pressure, behavior, and neurodegeneration in mice. In young adult mice, inducible endothelial-specific disruption of PexRAP, a peroxisomal enzyme required for ether lipid synthesis, unexpectedly decreased circulating plasmalogens. PexRAP endothelial knockout (PEKO) mice responded normally to hindlimb ischemia but had lower blood pressure and increased plasma renin activity. In PEKO as compared with control mice, tyrosine hydroxylase was decreased in the locus coeruleus, which maintains blood pressure and arousal. PEKO mice moved less, slept more, and had impaired attention to and recall of environmental events as well as mild spatial memory deficits. In PEKO hippocampus, gliosis was increased, and a plasmalogen associated with memory was decreased. Despite lower blood pressure, PEKO mice had generally normal homotopic functional connectivity by optical neuroimaging of the cerebral cortex. Decreased glycogen synthase kinase-3 phosphorylation, a marker of neurodegeneration, was detected in PEKO cerebral cortex. In a co-culture system, PexRAP knockdown in brain endothelial cells decreased glycogen synthase kinase-3 phosphorylation in co-cultured astrocytes that was rescued by incubation with the ether lipid alkylglycerol. Taken together, our findings suggest that endothelium-derived ether lipids mediate several biological processes and may also confer neuroprotection in mice.
机译:血管疾病有助于神经变性,这与旧人类的血压降低有关。通过过氧缺血剂产生的乙醚磷脂,在阿尔茨海默病,帕金森病等神经退行性疾病中降低。然而,醚磷脂,血压和神经变性之间的机械连接尚不完全理解。在这里,我们表明内皮衍生的醚磷脂影响小鼠中的血压,行为和神经变性。在年轻的成年小鼠中,诱导的内皮特异性破坏PEXRAP,乙醚脂质合成所需的过氧硅基酶,意外地降低了循环偏离的偏离。 PexRap内皮敲除(PEKO)小鼠通常对后肢缺血进行反应,但血压较低,血浆肾素活性增加。在PEKO与对照小鼠相比,酪氨酸羟化酶在轨迹牛头勒斯下降,其保持血压和唤醒。 Peko Mice少睡得更少,睡得更多,并且受到关注和回忆环境事件以及温和的空间记忆缺陷。在Peko海马中,脊髓源源性增加,并且与记忆相关的血浆是下降。尽管血压较低,PEKO小鼠通常通过脑皮质的光学神经模仿通常具有正常的同型官能连接。在Peko脑皮层中检测到糖原合酶激酶-3磷酸化,是神经变性的标志物。在共同培养系统中,脑内皮细胞的PexRap敲低在共培养的星形胶质细胞中降低了通过与醚脂质烷基甘油孵育来抵抗的共培养的星形胶质细胞中的糖原合酶激酶-3磷酸化。我们的研究结果表明,内皮衍生的醚脂质介导几种生物过程,并且还可以在小鼠中赋予神经保护作用。

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