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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Brains of apolipoprotein E deficient mice fed vitamin E deficient diets show alteration in handling alpha tocopherol injected into the cerebral ventricles.
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Brains of apolipoprotein E deficient mice fed vitamin E deficient diets show alteration in handling alpha tocopherol injected into the cerebral ventricles.

机译:缺乏维生素E缺乏饮食的载脂蛋白E缺乏小鼠的大脑在处理注射到脑室的α生育酚方面表现出变化。

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Abnormal function of apolipoprotein E (apoE) has been implicated in the incidence of some neurological disorders including dementia. Our recent experiments have shown that apoE deficiency alters the dynamics of alpha tocopherol (vitamin E) handling by brain. In the current investigation, we examined the uptake and retention of tritium-labeled alpha tocopherol that was injected into the lateral cerebral ventricles of apoE-deficient and wild type mice that were fed vitamin E-deficient diet. Eighteen weeks-old, male mice were fed vitamin E-deficient diets for 28 weeks. Labeled cholesterol was injected with the radioactive tocopherol and the cholesterol counts were used as internal standard. After an equilibration time of 48 h, radioactive alpha tocopherol levels in most brain regions were higher in apoE deficient animals when compared with the wild type. Along with our other data, this suggests that the clearance of vitamin E is slower in apoE-deficient brains. Nearly all of the injected alpha tocopherol was unchanged in the brains of both apoE-deficient and wild type animals (even with the additional dietary stress of vitamin E deficiency) suggesting low turnover rate of tocopherol in brain. The data strongly suggest that apoE is a key protein involved with the transport and/or retention of alpha tocopherol in brain.
机译:载脂蛋白E(apoE)的功能异常与包括痴呆症在内的某些神经系统疾病的发生有关。我们最近的实验表明,apoE缺乏会改变大脑对α生育酚(维生素E)的处理动力学。在当前的研究中,我们检查了fed-标记的α-生育酚的摄取和保留情况,alpha-α-生育酚被注入缺乏维生素E缺乏饮食的apoE缺乏和野生型小鼠的侧脑室。 18周大的雄性小鼠接受了维生素E缺乏饮食,持续28周。将标记的胆固醇与放射性生育酚一起注射,并将胆固醇计数用作内标。经过48小时的平衡时间后,与野生型相比,apoE缺乏动物的大部分大脑区域的放射性α生育酚水平更高。连同我们的其他数据,这表明在apoE缺乏的大脑中维生素E的清除速度较慢。在apoE缺乏和野生型动物的大脑中,几乎所有注射的α-生育酚都没有变化(即使存在饮食中维生素E缺乏的额外饮食压力),表明脑中生育酚的转换率较低。数据强烈表明,apoE是与α-生育酚在大脑中的转运和/或滞留有关的关键蛋白。

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