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首页> 外文期刊>Neuropharmacology >Serotonergic modulation of extrapyramidal motor disorders in mice and rats: role of striatal 5-HT(3) and 5-HT(6) receptors.
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Serotonergic modulation of extrapyramidal motor disorders in mice and rats: role of striatal 5-HT(3) and 5-HT(6) receptors.

机译:小鼠和大鼠锥体束外运动障碍的血清素能调节:纹状体5-HT(3)和5-HT(6)受体的作用。

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Previous studies showed that 5-HT(1A) and 5-HT(2) receptors play an important role in controlling the extrapyramidal motor disorders. However, the functions of other 5-HT receptor subtypes remain elusive. To elucidate the role of 5-HT receptors, specifically of 5-HT(3) approximately 5-HT(7) subtypes, in modifying antipsychotic- induced extrapyramidal side effects (EPS), we studied the effects of the 5-HT stimulant 5-hydroxytryptophan (5-HTP) and various 5-HT receptor antagonists on haloperidol (HAL)-induced bradykinesia and catalepsy in mice and rats. Pretreatment of mice with 5-HTP (25-100mg/kg, i.p.) dose-dependently enhanced HAL (0.3mg/kg, i.p.)-induced bradykinesia and catalepsy. The potentiation of HAL-induced EPS by 5-HTP (50mg/kg, i.p.) was significantly inhibited by ritanserin (5-HT(2) antagonist, 0.3-3mg/kg, i.p.), ondansetron (5-HT(3) antagonist, 0.1-1mg/kg, i.p.), or SB-258585 (5-HT(6) antagonist, 1-10mg/kg, i.p.) in a dose-dependent manner. However, neither WAY-100135 (5-HT(1A) antagonist, 1-10mg/kg, i.p.), GR-125487 (5-HT(4) antagonist, 1-10mg/kg, i.p.), SB-699551 (5-HT(5A) antagonist, 1-10mg/kg, i.p.) nor SB-269970 (5-HT(7) antagonist, 1-10mg/kg, i.p.) reduced the 5-HTP and HAL-induced bradykinesia or catalepsy. In addition, both ondansetron (0.1-1mg/kg, i.p.) and SB-258585 (3 and 10mg/kg, i.p.) also alleviated bradykinesia and catalepsy induced by HAL (0.5mg/kg, i.p.) alone in mice. Furthermore, bilateral microinjection of ondansetron (5 mug (13.7 nmol) per side) or SB-258585 (5 mug (8.92 nmol) per side) into the dorsolateral striatum (dlST) attenuated haloperidol-induced catalepsy in rats. These results suggest that serotonergic stimulation augments extrapyramidal motor disorders by activating the striatal 5-HT(3) and 5-HT(6) receptors and the antagonism of these receptors effectively alleviates antipsychotic-induced EPS.
机译:先前的研究表明5-HT(1A)和5-HT(2)受体在控制锥体束外运动障碍中起重要作用。但是,其他5-HT受体亚型的功能仍然难以捉摸。为了阐明5-HT受体,特别是5-HT(3)约5-HT(7)亚型在修饰抗精神病药物诱导的锥体束外副作用(EPS)中的作用,我们研究了5-HT刺激物5的作用。 -羟基色氨酸(5-HTP)和各种5-HT受体拮抗剂对氟哌啶醇(HAL)引起的小鼠和大鼠运动迟缓和僵直。用5-HTP(25-100mg / kg,i.p.)预处理小鼠可剂量依赖性地增强HAL(0.3mg / kg,i.p.)引起的运动迟缓和僵直。利坦色林(5-HT(2)拮抗剂,0.3-3mg / kg,ip),恩丹西酮(5-HT(3)拮抗剂)显着抑制5-HTP(50mg / kg,ip)对HAL诱导的EPS的增强作用。 ,0.1-1mg / kg,ip)或SB-258585(5-HT(6)拮抗剂,1-10mg / kg,ip),呈剂量依赖性。但是,WAY-100135(5-HT(1A)拮抗剂,1-10mg / kg,ip),GR-125487(5-HT(4)拮抗剂,1-10mg / kg,ip),SB-699551(5 -HT(5A)拮抗剂1-10mg / kg,ip)或SB-269970(5-HT(7)拮抗剂1-10mg / kg,ip)降低5-HTP和HAL引起的运动迟缓或僵直。另外,恩丹西酮(0.1-1mg / kg,腹膜内)和SB-258585(3和10mg / kg,腹膜内)也减轻了单独由HAL(0.5mg / kg,腹膜内)引起的运动迟缓和僵直。此外,将恩丹西酮(每侧5杯(13.7 nmol)每侧)或SB-258585(每侧5杯(8.92 nmol)每侧)双侧显微注射减弱了氟哌啶醇诱导的大鼠僵直。这些结果表明,血清素能刺激通过激活纹状体5-HT(3)和5-HT(6)受体而加剧锥体束外运动障碍,这些受体的拮抗作用可有效缓解抗精神病药物诱导的EPS。

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