首页> 外文期刊>Peptides: An International Journal >Anxiolytic-like effects of substance P administration into the dorsal, but not ventral, hippocampus and its influence on serotonin.
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Anxiolytic-like effects of substance P administration into the dorsal, but not ventral, hippocampus and its influence on serotonin.

机译:P物质对背侧而非腹侧海马给药的抗焦虑样作用及其对血清素的影响。

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摘要

Substance P (SP) is known to be involved in processes related to learning and memory, fear, anxiety and stress. SP and NK1 receptors are localized in the hippocampus, a brain structure involved in learning and memory as well as emotional processes. As there is evidence for differential functions of the ventral (VH) and dorsal (DH) hippocampus in a variety of behaviors, we here evaluated the effects of injections of SP into the VH and DH in rats submitted to the elevated plus-maze (EPM) and open field (OF) tests. The results obtained showed that infusions of 100 and 1000ng of SP into the DH, but not VH, increased open arm activity in the EPM and in the central zone of the OF, indicative of anxiolytic-like action. These effects were observed in the absence of significant changes in general motor activity. In an additional experiment to examine whether these effects of SP are mediated by local serotoninergic mechanisms, extracellular concentrations of this monoamine were assessed by use of in vivo microdialysis. Infusions of SP into the DH did not influence the extracellular concentration of serotonin. These data indicate that neurokinins in the DH, but not VH, are involved in mechanisms associated with anxiety and that the mediation of SP in anxiety-related behaviors is independent of local serotonergic mechanisms.
机译:已知P物质(SP)参与与学习和记忆,恐惧,焦虑和压力有关的过程。 SP和NK1受体位于海马中,海马是参与学习和记忆以及情绪过程的大脑结构。由于有证据表明在各种行为中腹侧(VH)和背侧(DH)海马的功能不同,因此我们在这里评估了将SP注入VH和DH对高迷宫(EPM)大鼠的影响)和开放字段(OF)测试。获得的结果表明,向DH(而不是VH)中注入100和1000ng SP会增加EPM和OF中央区域的开臂活性,这表明它具有抗焦虑作用。在一般运动活动没有明显变化的情况下观察到了这些影响。在检查SP的这些作用是否由局部5-羟色胺能机制介导的另一实验中,通过体内微透析评估了这种单胺的细胞外浓度。将SP注入DH不会影响血清素的细胞外浓度。这些数据表明,DH(而不是VH)中的神经激肽参与了与焦虑相关的机制,而SP在焦虑相关行为中的介导独立于局部血清素能机制。

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