Riblet L A, Taylor D P, Eison M S, Stanton H C
J Clin Psychiatry. 1982 Dec;43(12 Pt 2):11-8.
Biochemically, buspirone is unlike the benzodiazepines in that it neither stimulates nor inhibits 3H-benzodiazepine binding, does not affect the influence of GABA or halide anion on 3H-benzodiazepine binding, and does not interfere with GABA binding or uptake. Buspirone lacks anticonvulsant activity, interacts minimally with CNS depressants, and does not cause muscle relaxation. Its tranquilizing activity is characterized by the ability to (1) tame aggressive rhesus monkeys, (2) block conditioned avoidance responding in the rat, (3) inhibit shock-induced fighting in the mouse, and (4) attenuate shock-induced suppression of drinking in the rat. In vitro binding experiments indicate that buspirone lacks significant activity at several binding sites. It appears to interact only with the dopaminergic system and possesses properties that are similar to both dopamine agonists and dopamine antagonists.
从生化角度来看,丁螺环酮与苯二氮䓬类药物不同,它既不刺激也不抑制3H-苯二氮䓬类药物结合,不影响γ-氨基丁酸(GABA)或卤化物阴离子对3H-苯二氮䓬类药物结合的影响,也不干扰GABA结合或摄取。丁螺环酮缺乏抗惊厥活性,与中枢神经系统抑制剂的相互作用极小,且不会引起肌肉松弛。其镇静活性的特点是能够:(1)驯服有攻击性的恒河猴;(2)阻断大鼠的条件性回避反应;(3)抑制小鼠的电击诱导攻击行为;(4)减轻大鼠电击诱导的饮水抑制。体外结合实验表明,丁螺环酮在几个结合位点缺乏显著活性。它似乎仅与多巴胺能系统相互作用,具有与多巴胺激动剂和多巴胺拮抗剂相似的特性。