氯二氮环氧醚和丁螺环酮对基础和应激条件下大鼠血浆儿茶酚胺和皮质酮水平的影响。

Endocrinologia experimentalis Pub Date : 1990-03-01
S F de Boer, J L Slangen, J van der Gugten
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引用次数: 0

摘要

研究了经典苯二氮卓类(BDZ)抗焦虑药氯二氮卓(CDP)和非BDZ抗焦虑药丁螺环酮(BUSP)对基础和应激性血浆去甲肾上腺素(NA)、肾上腺素(A)和皮质酮(CS)释放的影响。雄性Wistar大鼠置入永久性心脏导管和永久性胃导管。将大鼠放入不熟悉的笼子(新环境压力;NES),即升高的CS、NA和A作为应激源。急性给药CDP (1-27 mg/kg)可使基础血浆CS分泌增加,但对基础NA含量无影响。最大剂量的CDP引起轻度短期a升高。CDP对基础CS分泌的影响经反复药物治疗耐受,经BDZ受体拮抗剂氟马西尼急性预处理后完全阻断。急性治疗BUSP (2-20 mg/kg)引起血浆a、NA和CS水平显著且剂量依赖性升高。中剂量CDP (9 mg/kg)可降低nes诱导的CS和A升高。高剂量的CDP (27 mg/kg)增加了基础CS释放,阻止了NES进一步增加CS,并抑制了NA和A对NES的反应。BUSP(2或20 mg/kg)对nes诱导的CS、NA和A的升高没有抑制作用,而20 mg/kg剂量的BUSP反而增强了nes诱导的A反应。综上所述,BUSP没有表现出抑制应激诱导的CS、NA和A升高的bz样特性。此外,研究结果表明,在基础和应激条件下,CDP和BUSP对控制CS、NA和A释放的机制有不同的影响。
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Effects of chlordiazepoxide and buspirone on plasma catecholamine and corticosterone levels in rats under basal and stress conditions.

The effects of the classical benzodiazepine (BDZ) anxiolytic drug chlordiazepoxide (CDP) and the non-BDZ anxiolytic agent buspirone (BUSP) on basal and stress-induced plasma noradrenaline (NA), adrenaline (A) and corticosterone (CS) release were investigated. Male Wistar rats provided with a permanent heart catheter and a permanent stomach catheter were used. Placement of rats into an unfamiliar cage (novel environment stress; NES), that elevated CS, NA and A, was used as a stressor. Acute administration of CDP (1-27 mg/kg) produced dose-related increases in basal plasma CS secretion but was without effect on basal NA content. The largest dose of CDP caused a slight short-term A elevation. The CDP effect on basal CS secretion tolerated with repeated drug treatment and was completely blocked after acute pretreatment with the BDZ receptor antagonist flumazenil. Acute treatment with BUSP (2-20 mg/kg) caused a marked and dose dependent increase in the plasma levels of A, NA and CS. A medium dose of CDP (9 mg/kg) attenuated the NES-induced CS and A elevations. A high dose of CDP (27 mg/kg), that elevated basal CS release, prevented a further CS increase by NES and inhibited the NA and A response to NES. BUSP (2 or 20 mg/kg) was not effective in attenuating the NES-elicited rise of CS, NA and A. However, the 20 mg/kg dose of BUSP actually enhanced the NES-induced A response. In conclusion, BUSP did not show the BDZ-like property to inhibit stress-induced elevations in CS, NA and A. Furthermore, the findings suggest that CDP and BUSP differentially affect the mechanisms controlling CS, NA and A release during basal and stress conditions.

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