The pattern of hippocampal neuronal, LTP and unilateral labyrinthectomy in male rats: the role of exercise and curcumin

IF 0.6 Q3 VETERINARY SCIENCES
N. Khalaji, G. Aminpour, B. Pourheydar, N. Abdollahzade, Houman Parsaie, L. Derafshpour
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引用次数: 0

Abstract

A wide range of cognitive disorders, long-term potentiation (LTP) disorders, and biochemical changes have been reported in labyrinthectomy situations in the hippocampus of rodents. In order to investigate whether exercise and/or curcumin induce LTP and increase neurons in the hippocampus of unilateral labyrinthectomy male rats, after undergoing labyrinthectomy, animals were subjected to treadmill exercises after the intraperitoneal injection of curcumin five days per week, for 30 days. An increase of LTP and neuron count of the hippocampus was observed in unilateral labyrinthectomy rats. Interestingly the combination of exercise and curcumin did not enhance LTP in unilateral labyrinthectomy rats. These findings demonstrated that treadmill exercise and curcumin individually, significantly affect reinforcement of many of the pathological processes playing a role in increasing memory in unilateral labyrinthectomy situations.
运动和姜黄素对雄性大鼠海马神经元、LTP和单侧迷路切除的影响
啮齿类动物迷路切除术后海马出现了广泛的认知障碍、长期增强(LTP)障碍和生化变化。为了研究运动和/或姜黄素是否诱导单侧迷路切除雄性大鼠海马LTP和神经元增加,在迷路切除后,动物在每周5天腹腔注射姜黄素后进行跑步机运动,连续30天。单侧迷路切除大鼠海马LTP和神经元数量增加。有趣的是,运动和姜黄素的组合并没有提高单侧迷路切除大鼠的LTP。这些发现表明,跑步机运动和姜黄素分别显著影响了许多病理过程的强化,这些病理过程在单侧迷路切除术中起着增加记忆的作用。
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来源期刊
Comparative Exercise Physiology
Comparative Exercise Physiology VETERINARY SCIENCES-
CiteScore
1.50
自引率
11.10%
发文量
37
期刊介绍: ''Comparative Exercise Physiology'' is the only international peer-reviewed scientific journal specifically dealing with the latest research in exercise physiology across all animal species, including humans. The major objective of the journal is to use this comparative approach to better understand the physiological, nutritional, and biochemical parameters that determine levels of performance and athletic achievement. Core subjects include exercise physiology, biomechanics, gait (including the effect of riders in equestrian sport), nutrition and biochemistry, injury and rehabilitation, psychology and behaviour, and breeding and genetics. This comparative and integrative approach to exercise science ultimately highlights the similarities as well as the differences between humans, horses, dogs, and other athletic or non-athletic species during exercise. The result is a unique forum for new information that serves as a resource for all who want to understand the physiological challenges with exercise.
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