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Role(s) of the 5-HT2C receptor in the development of maximal dentate activationudin the hippocampus of anesthetized rats.

机译:5-HT2C受体在最大齿状激活过程中的作用 ud在麻醉的大鼠海马中。

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摘要

AIMS:udSubstantial evidence indicates that 5-HT2C receptors are involved in the control of neuronal network excitability and in seizure pathophysiology. Here, we have addressed the relatively unexplored relationship between temporal lobe epilepsy (TLE), the most frequent type of intractable epilepsy, and 5-HT2CRs.udMETHODS:udIn this study, we investigated this issue using a model of partial complex (limbic) seizures in urethane-anesthetized rat, based on the phenomenon of maximal dentate activation (MDA) using 5-HT2C compounds, electrophysiology, immunohistochemistry, and western blotting techniques.udRESULTS:udThe 5-HT2C agonists mCPP (1 mg/kg, i.p) and lorcaserin (3 mg/kg, i.p), but not RO60-0175 (1-3 mg/kg i.p.), were antiepileptogenic reducing the MDA response duration. The selective 5-HT2C antagonist SB242084 (2 mg/kg, i.p) unveiled antiepileptogenic effects of RO60-0175 (3 mg/kg, i.p) but did not alter those induced by mCPP and lorcaserin. Compared with control rats, electrically stimulated rats showed an increase in glutamic acid decarboxylase levels and a heterogeneous decrease in 5-HT2CR immunoreactivity in different hippocampal areas.udCONCLUSIONS:udIn our animal model of TLE, mCPP and lorcaserin were anticonvulsant; likely acting on receptor subtypes other than 5-HT2C. Epileptogenesis induced early adaptive changes and reorganization in the 5-HT2CR and GABA systems.
机译:目的:大量证据表明5-HT2C受体参与神经网络兴奋性的控制和癫痫的病理生理。在这里,我们已经解决了颞叶癫痫(TLE),顽固性癫痫的最常见类型与5-HT2CR之间的相对未知的关系。 udMETHODS: ud在本研究中,我们使用部分复杂模型(limbic ),是基于使用5-HT2C化合物的最大齿齿活化(MDA)现象,电生理学,免疫组化和Western印迹技术在尿烷麻醉的大鼠中癫痫发作。 udRESULTS: ud5-HT2C激动剂mCPP(1 mg / kg, ip)和lorcaserin(3 mg / kg,ip),而不是RO60-0175(1-3 mg / kg ip),具有抗癫痫作用,可减少MDA响应时间。选择性5-HT2C拮抗剂SB242084(2 mg / kg,i.p)揭示了RO60-0175(3 mg / kg,i.p)的抗癫痫作用,但并未改变mCPP和lorcaserin诱导的作用。与对照大鼠相比,电刺激大鼠在不同海马区的谷氨酸脱羧酶水平增加,而5-HT2CR免疫反应性异质性降低。 ud结论: ud在我们的TLE动物模型中,mCPP和lorcaserin具有抗惊厥作用;可能作用于5-HT2C以外的受体亚型。癫痫发生诱导5-HT2CR和GABA系统中的早期适应性变化和重组。

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