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Chronic dietary creatine enhances hippocampal-dependent spatial memory bioenergetics and levels of plasticity-related proteins associated with NF-κB

机译:慢性饮食肌酸可增强海马依赖性空间记忆生物能和与NF-κB相关的可塑性相关蛋白的水平

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摘要

The brain has a high demand for energy, of which creatine (Cr) is an important regulator. Studies document neurocognitive benefits of oral Cr in mammals, yet little is known regarding their physiological basis. This study investigated the effects of Cr supplementation (3%, w/w) on hippocampal function in male C57BL/6 mice, including spatial learning and memory in the Morris water maze and oxygen consumption rates from isolated mitochondria in real time. Levels of transcription factors and related proteins (CREB, Egr1, and IκB to indicate NF-κB activity), proteins implicated in cognition (CaMKII, PSD-95, and Egr2), and mitochondrial proteins (electron transport chain Complex I, mitochondrial fission protein Drp1) were probed with Western blotting. Dietary Cr decreased escape latency/time to locate the platform (P < 0.05) and increased the time spent in the target quadrant (P < 0.01) in the Morris water maze. This was accompanied by increased coupled respiration (P < 0.05) in isolated hippocampal mitochondria. Protein levels of CaMKII, PSD-95, and Complex 1 were increased in Cr-fed mice, whereas IκB was decreased. These data demonstrate that dietary supplementation with Cr can improve learning, memory, and mitochondrial function and have important implications for the treatment of diseases affecting memory and energy homeostasis.
机译:大脑对能量的需求很高,其中的肌酸(Cr)是重要的调节剂。研究记录了口服铬对哺乳动物的神经认知益处,但对其生理基础知之甚少。这项研究调查了添加铬(3%,w / w)对雄性C57BL / 6小鼠海马功能的影响,包括实时了解Morris水迷宫中的空间学习和记忆以及分离的线粒体的耗氧率。转录因子和相关蛋白(CREB,Egr1和IκB表示NF-κB活性),与认知有​​关的蛋白(CaMKII,PSD-95和Egr2)和线粒体蛋白(电子转运链复合体I,线粒体裂变蛋白)的水平用蛋白质印迹法检测Drp1)。膳食铬减少了逃逸潜伏期/定位平台的时间(P <0.05),并增加了在莫里斯水迷宫中目标象限所花费的时间(P <0.01)。这伴随着孤立海马线粒体中耦合呼吸的增加(P <0.05)。在Cr喂养的小鼠中,CaMKII,PSD-95和复合物1的蛋白质水平升高,而IκB降低。这些数据表明,膳食中补充铬可以改善学习,记忆和线粒体功能,对治疗影响记忆和能量稳态的疾病具有重要意义。

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