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Modifications in muscarinic, dopaminergic and serotonergic receptors concentrations in the hippocampus and striatum of epileptic rats

机译:癫痫大鼠海马和纹状体中毒蕈碱,多巴胺能和血清素能受体浓度的变化

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摘要

The present study was undertaken in order to investigate the muscarinic (M-1), dopaminergic (D-1 and D-2) and serotonergic (5-HT2) receptors densities in hippocampus and striatum of Wistar rats after status epilepticus (SE) induced by pilocarpine. The control group was treated with 0.9% saline. An other group of rats received pilocarpine (400 mg/kg, s.c.) and both groups were sacrificed I h after treatment. The results have shown that pilocarpine administration and resulting SE produced a downregulation of M-1 receptor in hippocampus (4 1 %) and striatum (5 1 %) and an increase in the dissociation constant (K-d) values in striatum (42%) alone. In both areas the 5-HT2 receptor density remained unaltered, but a reduction (50%) and an increase (15%) in the Kd Values were detected in striatum and hippocampus, respectively D, and D2 receptor densities in hippocampus and striatum remained unaltered meanwhile Kd values for D, receptor declined significantly, 33% in hippocampus and 26% in striatum. Similarly, K-d values for D-2 decreased 55% in hippocampus and 52% in striatum. From the preceding results, it is clear that there is a possible relation between alterations in muscarimic receptor density and others systems studied as well as they suggest that changes in dissociation constant can be responsible for the establishment of pilocarpine-induced SE by altering the affinity of neurotransmitters such as acetylcholine, dopamine and serotonine. (c) 2005 Elsevier Inc. All rights reserved.
机译:进行本研究是为了研究Wistar大鼠在癫痫持续状态(SE)诱发后海马和纹状体中毒蕈碱(M-1),多巴胺能(D-1和D-2)和血清素能(5-HT2)受​​体的密度由毛果芸香碱。对照组用0.9%生理盐水治疗。另一组大鼠接受毛果芸香碱(400 mg / kg,皮下注射),治疗后1 h处死两组。结果表明,毛果芸香碱的施用和由此产生的SE会单独降低海马(4 1%)和纹状体(5 1%)中的M-1受体,并增加纹状体中的解离常数(Kd)值(42%) 。在这两个区域中,5-HT2受体密度均未改变,但纹状体和海马中的D值分别降低了(50%)和Kd值增加了(15%),海马和纹状体中的D2受体密度均未改变。同时,D,受体的Kd值显着下降,海马为33%,纹状体为26%。同样,海马中D-2的K-d值降低了55%,纹状体中则降低了52%。从前面的结果中可以明显看出,毒蕈碱受体密度的变化与其他研究系统之间可能存在关联,并且它们表明解离常数的变化可以通过改变毛果芸香碱诱导的SE的亲和力来建立毛果芸香碱诱导的SE。神经递质,例如乙酰胆碱,多巴胺和5-羟色胺。 (c)2005 Elsevier Inc.保留所有权利。

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