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[δ9-四氢大麻酚对中枢心血管调节的作用:机制与定位]

[Action of delta 9 tetrahydrocannabinol on the central cardiovascular regulation : mechanism and localization].

作者信息

Daskalopoulos N, Schmitt H, Laubie M

出版信息

Encephale. 1975;1(2):121-32.

PMID:240671
Abstract

Delta9-tetrahydrocannabinol (30-300 mug.kg-1 i.v.) induced in cats and dogs a decrease in blood pressure and heart rate. This decrease appears to be centrally mediated. In fact, the splanchnic and cardiac discharges were reduced in intact animals as well as in debuffered cats ruling out a reflexly mediated action. The mechanism of this central decrease in the sympathetic tone appears to be different from the mechanism of the reduction induced by clonidine or by narcotic analgesics agents. In fact, piperoxan (1 mg.kg-1 i.v.), an alpha adrenoceptor blocking agent, antagonized or reversed the centrally mediated reduction in the sympathetic tone induced by clonidine or L-dopa, but did not change the effects of narcotic analgesic agents and of delta9-tetrahydrocannabinol. Naloxone (30 mug.kg-1 i.v.) prevented or reversed the cardiovascular effects of fentanyl and the reduction in splanchnic discharges induced by this agent, but no change was found after naloxone in the effects of clonidine or delta9-tetrahydrocannabinol. The pressor response to high frequency stimulation of the medulla oblongata was abolished by small doses of delta9-tetrahydrocannabinol. This agent did not reduce the pressor response to stimulation of the posterior hypothalamus induced by supramaximal stimulation and did not alter the hypertensive effect induced by stimulation of the cervical spinal cord. Medulla oblogata appears therefore to be the main site of action.

摘要

Δ⁹-四氢大麻酚(静脉注射30 - 300微克/千克)可使猫和狗的血压及心率降低。这种降低似乎是由中枢介导的。事实上,在内脏完整的动物以及去缓冲的猫中,内脏和心脏的放电活动均减少,排除了反射介导的作用。交感神经张力这种中枢性降低的机制似乎与可乐定或麻醉性镇痛药所诱导的降低机制不同。实际上,α肾上腺素受体阻断剂哌罗克生(静脉注射1毫克/千克)可拮抗或逆转可乐定或左旋多巴所诱导的交感神经张力的中枢介导性降低,但不改变麻醉性镇痛药和Δ⁹-四氢大麻酚的作用。纳洛酮(静脉注射30微克/千克)可预防或逆转芬太尼的心血管效应以及该药物所诱导的内脏放电减少,但纳洛酮对可乐定或Δ⁹-四氢大麻酚的作用无影响。小剂量的Δ⁹-四氢大麻酚可消除对延髓高频刺激的升压反应。该药物不会降低对下丘脑后部超最大刺激所诱导的刺激的升压反应,也不会改变颈髓刺激所诱导的高血压效应。因此,延髓似乎是主要作用部位。

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