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DYSFUNCTION OF IRON METABOLISM AND IRON-REGULATORY PROTEINS IN THE RAT HIPPOCAMPUS AFTER HEAT STROKE

机译:铁代谢的障碍和IRON-REGULATORY中暑后大鼠海马蛋白质

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摘要

Heat stroke, the most serious type of heat illness, refers to the presence of hyperthermia (core temperature >40 degrees C), accompanied by central nervous system dysfunction. The hippocampus is a particularly vulnerable region in the early stage of heat stroke. Increasing evidence suggests that dysregulation of brain iron metabolism is involved in many neurodegenerative diseases. However, whether heat stroke causes dysfunction of iron metabolism, as well as iron-regulatory proteins, in the hippocampus remains unknown. The present study was conducted to explore the effects on spatial learning and memory, as well as iron content, ferroportin 1 (Fpn1), and hepcidin expression in the hippocampus after heat stroke in rats. Compared with the Sham group, learning ability and memory declined in rats after heat stroke. Iron concentration was significantly increased in the hippocampus. Expression of Fpn1 protein significantly decreased in the hippocampus, while expression of hepcidin increased. Interestingly, Fpn1 mRNA expression in the hippocampus increased. Our data thereby indicate that heat stroke can decrease learning ability and memory in rats. The mechanism may be related to changes of iron levels, as well as Fpn1 and hepcidin expression, in the hippocampus. Furthermore, hepcidin may rapidly decrease cellular Fpn1 protein levels, even under conditions of iron loading, indicating that hepcidin is a more dominant regulator of Fpn1 than is iron.
机译:中暑,最严重类型的热量疾病,是指高热的存在(核心温度> 40摄氏度),陪同中枢神经系统功能障碍。海马是一个特别脆弱的地区早期的中暑。证据表明,大脑失调铁代谢参与了许多神经退行性疾病。中风会导致铁代谢的障碍,iron-regulatory蛋白质,海马体是未知的。进行探索对空间的影响学习和记忆、以及含铁量1 (Fpn1)运铁素的含量,hepcidin表达式海马体中暑后老鼠。与假组相比,学习能力中暑后老鼠和记忆力下降。铁浓度显著增加海马体。在海马体显著下降,而hepcidin的表达增加。在海马体Fpn1 mRNA的表达增加了。中风可降低学习能力和记忆力在老鼠身上。铁的水平,以及Fpn1 hepcidin表情,在海马。hepcidin可能迅速减少细胞Fpn1铁蛋白的水平,即使在条件加载,这表明hepcidin更主要监管机构Fpn1比铁。

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