Hashimoto Kenji, Iyo Masaomi, Freedman Robert, Stevens Karen E
Division of Clinical Neuroscience, Chiba University Center for Forensic Mental Health, 1-8-1 Inohana, Chiba, Chiba 260-8670, Japan.
Psychopharmacology (Berl). 2005 Nov;183(1):13-9. doi: 10.1007/s00213-005-0142-0. Epub 2005 Oct 22.
Deficient inhibitory processing of the P50 auditory evoked potential is a pathophysiological feature of schizophrenia. Several lines of evidence suggest that alpha 7 nicotinic receptors play a critical role in this phenomenon. Similar to schizophrenic patients, DBA/2 mice spontaneously exhibit a deficit in inhibitory processing of the P20-N40 auditory evoked potential, which is thought to be a rodent analog of the human P50 auditory evoked potential.
The present study was undertaken to examine whether tropisetron, a partial agonist at alpha 7 nicotinic receptors and an antagonist at 5-hydroxytryptamine-3 receptors, improves this deficit in DBA/2 mice.
Administration of tropisetron (1 mg/kg i.p.) significantly improved the deficient inhibitory processing of the P20-N40 auditory evoked potential in DBA/2 mice. Coadministration of methyllycaconitine (MLA; 3 mg/kg i.p.), a partially selective antagonist at alpha 7 nicotinic receptors, significantly blocked the normalizing effect of tropisetron. Furthermore, MLA alone did not alter the deficient inhibitory processing of the P20-N40 auditory evoked potential in DBA/2 mice.
The data suggest that tropisetron improves the deficient inhibitory processing of the P20-N40 auditory evoked potential in DBA/2 mice by effects on alpha 7 and perhaps alpha 4 beta 2 nicotinic receptors. Tropisetron may be useful for the treatment of deficient inhibitory processing in schizophrenia.
P50听觉诱发电位的抑制性处理缺陷是精神分裂症的一种病理生理特征。多项证据表明,α7烟碱型受体在这一现象中起关键作用。与精神分裂症患者相似,DBA/2小鼠自发地表现出P20-N40听觉诱发电位抑制性处理缺陷,该电位被认为是人类P50听觉诱发电位的啮齿动物类似物。
本研究旨在检验托烷司琼(一种α7烟碱型受体部分激动剂和5-羟色胺-3受体拮抗剂)是否能改善DBA/2小鼠的这种缺陷。
腹腔注射托烷司琼(1 mg/kg)显著改善了DBA/2小鼠P20-N40听觉诱发电位的抑制性处理缺陷。同时给予甲基lycaconitine(MLA;腹腔注射3 mg/kg),一种α7烟碱型受体的部分选择性拮抗剂,显著阻断了托烷司琼的正常化作用。此外,单独使用MLA并未改变DBA/2小鼠P20-N40听觉诱发电位的抑制性处理缺陷。
数据表明,托烷司琼通过作用于α7以及可能的α4β2烟碱型受体,改善了DBA/2小鼠P20-N40听觉诱发电位的抑制性处理缺陷。托烷司琼可能对治疗精神分裂症的抑制性处理缺陷有用。