苯环利定和谷氨酸激动剂LY379268刺激多巴胺D2高受体:D2基础精神分裂症。

Philip Seeman, Hong-Chang Guan
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引用次数: 40

摘要

先前有报道称,谷氨酸嗜离子拮抗剂苯环利定直接抑制培养的垂体前叶细胞中催乳素的释放,提示苯环利定对催乳素释放细胞具有多巴胺(DA)样作用。也有报道称谷氨酸代谢激动剂LY379268可以刺激[35S] gtp - γ - s并入DA D2Long受体。本研究旨在研究这些谷氨酸能药物是否对DA d2短受体有类似的作用。本研究结果表明,苯环利定、氯胺酮和LY379268也能刺激[35S] gtp - γ - s进入D2Short受体。NaCl处理显著降低了D2Long和D2Short受体处于高亲和状态的比例。苯环利定和LY379268均能刺激gtp - γ - s进入D2Long和D2Short受体,但NaCl能降低这种刺激,且D2Short比D2Long对NaCl的抑制更敏感。通过静脉注射苯环利定和LY379268直接证实了苯环利定和LY379268在体内与D2High受体的结合,在体外分别以0.25和1.5 mg/kg的剂量对[3H]PHNO与纹状体的结合有50%的抑制作用。结果证实谷氨酸激动剂和拮抗剂对DA D2High受体具有显著的亲和力。苯环利定的致心性作用可能源于谷氨酸受体拮抗剂和DA D2拮抗剂的联合或协同作用。此外,LY379268同系物如LY404039的抗精神病临床作用可能与谷氨酸受体刺激的联合或协同作用以及部分DA激动剂作用减少内源性DA神经传递有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phencyclidine and glutamate agonist LY379268 stimulate dopamine D2High receptors: D2 basis for schizophrenia.

It has previously been reported that the glutamate ionotropic antagonist phencyclidine directly inhibits the release of prolactin in anterior pituitary cells in culture, suggesting that phencyclidine has a dopamine (DA)-like action on prolactin-releasing cells. It has also been reported that the glutamate metabotropic agonist LY379268 can stimulate the incorporation of [35S]GTP-gamma-S into DA D2Long receptors. The present study was done to examine whether such glutamatergic drugs had similar actions on the DA D2Short receptor. The present results show that phencyclidine, ketamine, and LY379268 also stimulated the incorporation of [35S]GTP-gamma-S into D2Short receptors. The proportion of D2Long and D2Short receptors existing in the high-affinity state were both markedly reduced by NaCl. While phencyclidine and LY379268 each stimulated the incorporation of GTP-gamma-S into D2Long and D2Short receptors, this stimulation was reduced by NaCl, with D2Short being much more sensitive than D2Long to the inhibition by NaCl. The binding of phencyclidine and LY379268 to D2High receptors in vivo was directly confirmed by the i.v. injection of phencyclidine and LY379268 in which 50% inhibited the binding of [3H]PHNO to the striatum ex vivo at 0.25 and 1.5 mg/kg, respectively. The results confirm that glutamate agonists and antagonists have a significant affinity for DA D2High receptors. The psychotogenic action of phencyclidine may stem from a combination or synergistic action of glutamate receptor antagonism and DA D2 agonism. In addition, the antipsychotic clinical action of LY379268 congeners such as LY404039 may be related to a combined or synergistic action of glutamate receptor stimulation together with a partial DA agonist action that reduces endogenous DA neurotransmission.

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