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Effects of YC-1 on Learning and Memory Functions of Aged Rats

机译:YC-1对衰老大鼠学习记忆功能的影响

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Background The aim of this study was to investigate the effects of a potent nitric oxide-guanylate cyclase activator, 3-(5’-hydroxymethyl-2’-furyl)-1-benzylindazole (YC-1), on learning and memory functions in aged rats. Material and Methods Rats were divided into 2 groups as 4-month-old and 24-month-old rats. Rats received YC-1 (1 mg/kg/day) for 2 weeks long-term. Morris water maze (MWM) and passive avoidance (PA) tests were used to determine learning and memory functions. Results In the MWM test, there is a significant increase in the acquisition latency (1–4 days) of 24-month-old rats. There is a significant reduction in the “time spent in the escape platform’s quadrant” in 24-month-old rats compared to 4-month-old rats in the probe trial of the MWM test. YC-1 treatment reversed the reduction of the “time spent in the escape platform’s quadrant” of 24-month-old rats. In the PA test, there was no significant difference in the 1st-day latency of rats in all groups. On the 2nd day, retention latency significantly decreased in the 24-month-old rats compared to 4-month-olds. YC-1 reversed the diminished retention latency in 24-month-old rats. YC-1 treatment and aging did not affect results of the locomotor activity test or the foot-shock sensitivity test, suggesting our results were not due to a change in motor activity or disability of the animals. Conclusions Our findings suggest that activation of the NO-sGC-cGMP pathway plays an important role in spatial and emotional learning and memory functions in aged rats.
机译:背景这项研究的目的是研究有效的一氧化氮-鸟苷酸环化酶激活剂3-(5'-羟甲基-2'-呋喃基)-1-苄基吲唑(YC-1)对学习和记忆功能的影响。老年大鼠。材料与方法将大鼠分为4个月大和24个月大两个组。长期接受大鼠YC-1(1 mg / kg /天)治疗2周。莫里斯水迷宫(MWM)和被动回避(PA)测试用于确定学习和记忆功能。结果在MWM测试中,24个月大大鼠的获取潜伏期(1-4天)显着增加。在MWM测试的探针试验中,与4个月大的老鼠相比,24个月大的老鼠的“在逃生平台象限中花费的时间”显着减少。 YC-1处理逆转了24个月大大鼠“在逃生平台象限中花费的时间”的减少。在PA测试中,所有组大鼠的第一天潜伏期均无显着差异。在第2天,与4个月大的大鼠相比,24个月大的大鼠的保留潜伏期显着减少。 YC-1逆转了24个月大大鼠的滞留潜伏期缩短。 YC-1的处理和衰老不会影响运动能力测试或足部震动敏感性测试的结果,这表明我们的结果并非由于运动能力或动物的残疾而改变。结论我们的发现表明,NO-sGC-cGMP途径的激活在老年大鼠的空间和情感学习与记忆功能中起着重要作用。

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