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水通道蛋白4的缺失或定位错误影响小鼠灰质的扩散特性和中间代谢。

Loss or Mislocalization of Aquaporin-4 Affects Diffusion Properties and Intermediary Metabolism in Gray Matter of Mice.

作者信息

Pavlin T, Nagelhus E A, Brekken C, Eyjolfsson E M, Thoren A, Haraldseth O, Sonnewald U, Ottersen O P, Håberg A K

机构信息

Department of Circulation and Medical Imaging, Faculty of Medicine, NTNU, Trondheim, Norway.

Department of Biomedicine, Molecular Imaging Center, University of Bergen, Bergen, Norway.

出版信息

Neurochem Res. 2017 Jan;42(1):77-91. doi: 10.1007/s11064-016-2139-y. Epub 2016 Dec 30.

Abstract

The first aim of this study was to determine how complete or perivascular loss of aquaporin-4 (AQP4) water channels affects membrane permeability for water in the mouse brain grey matter in the steady state. Time-dependent diffusion magnetic resonance imaging was performed on global Aqp4 knock out (KO) and α-syntrophin (α-syn) KO mice, in the latter perivascular AQP4 are mislocalized, but still functioning. Control animals were corresponding wild type (WT) mice. By combining in vivo diffusion measurements with the effective medium theory and previously measured extra-cellular volume fractions, the effects of membrane permeability and extracellular volume fraction were uncoupled for Aqp4 and α-syn KO. The second aim was to assess the effect of α-syn KO on cortical intermediary metabolism combining in vivo [1-C]glucose and [1,2-C]acetate injection with ex vivo C MR spectroscopy. Aqp4 KO increased the effective diffusion coefficient at long diffusion times by 5%, and a 14% decrease in membrane water permeability was estimated for Aqp4 KO compared with WT mice. α-syn KO did not affect the measured diffusion parameters. In the metabolic analyses, significantly lower amounts of [4-C]glutamate and [4-C]glutamine, and percent enrichment in [4-C]glutamate were detected in the α-syn KO mice. [1,2-C]acetate metabolism was unaffected in α-syn KO, but the contribution of astrocyte derived metabolites to GABA synthesis was significantly increased. Taken together, α-syn KO mice appeared to have decreased neuronal glucose metabolism, partly compensated for by utilization of astrocyte derived metabolites.

摘要

本研究的首要目的是确定水通道蛋白4(AQP4)水通道的完全缺失或血管周围缺失如何影响小鼠脑灰质在稳态下对水的膜通透性。对全球Aqp4基因敲除(KO)小鼠和α-肌营养不良蛋白(α-syn)KO小鼠进行了时间依赖性扩散磁共振成像,在后者中,血管周围的AQP4定位错误,但仍在发挥作用。对照动物为相应的野生型(WT)小鼠。通过将体内扩散测量与有效介质理论以及先前测量的细胞外体积分数相结合,Aqp4和α-syn基因敲除小鼠的膜通透性和细胞外体积分数的影响得以解耦。第二个目的是结合体内[1-C]葡萄糖和[1,2-C]乙酸盐注射与体外C磁共振波谱,评估α-syn基因敲除对皮质中间代谢的影响。与WT小鼠相比,Aqp4基因敲除小鼠在长扩散时间下的有效扩散系数增加了5%,并且估计其膜水通透性降低了14%。α-syn基因敲除不影响所测量的扩散参数。在代谢分析中,在α-syn基因敲除小鼠中检测到[4-C]谷氨酸和[4-C]谷氨酰胺的量显著降低,以及[4-C]谷氨酸中的富集百分比降低。α-syn基因敲除小鼠的[1,2-C]乙酸盐代谢未受影响,但星形胶质细胞衍生代谢物对GABA合成的贡献显著增加。综上所述,α-syn基因敲除小鼠似乎神经元葡萄糖代谢降低,部分由星形胶质细胞衍生代谢物的利用所补偿。

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