Vidrio H
Department of Pharmacology, School of Medicine, National University of Mexico, Mexico, D.F.
J Pharmacol Exp Ther. 1994 Oct;271(1):171-5.
After the observation that in anesthetized rats the antitubercular agent isoniazid potentiates the hypotensive effect of the vasodilator hydralazine (H) and transforms the accompanying reflex tachycardia to bradycardia, a number of hydrazine (HYD) derivatives were tested for this interaction in pentobarbital-anesthetized rats. All HYDs studied elicited this response in varying degrees, isoniazid, thiosemicarbazide and thiocarbohydrazide being the most active. Experiments were then carried out to explore the possibility of an influence of the HYDs on reflex reactions to H due to interaction with pyridoxal, inhibition of glutamic acid decarboxylase and decreased levels of brain gamma-aminobutyric acid. Although the H-HYDs interaction was prevented by vagotomy, it was unaffected by exogenous pyridoxal, did not occur with the alpha adrenergic antagonist prazosin and was not mimicked by non-HYD pyridoxal reactors. In other experiments, pharmacokinetic interactions and monoamine oxidase inhibition were ruled out as alternative explanations for this phenomenon. It was concluded that the H-HYDs interaction is not related to a possible influence of these drugs on central gamma-aminobutyric acid cardiovascular regulation and that other presently unknown mechanisms are involved.
在观察到在麻醉大鼠中抗结核药异烟肼可增强血管扩张剂肼屈嗪(H)的降压作用,并将伴随的反射性心动过速转变为心动过缓后,对多种肼(HYD)衍生物在戊巴比妥麻醉的大鼠中进行了这种相互作用的测试。所有研究的HYD均不同程度地引发了这种反应,异烟肼、氨基硫脲和硫代碳酰肼最为活跃。随后进行了实验,以探讨HYD通过与吡哆醛相互作用、抑制谷氨酸脱羧酶和降低脑γ-氨基丁酸水平,对H的反射反应产生影响的可能性。尽管迷走神经切断术可阻止H-HYD相互作用,但外源性吡哆醛对其无影响,α肾上腺素能拮抗剂哌唑嗪不会出现这种相互作用,非HYD吡哆醛反应剂也不会模拟这种相互作用。在其他实验中,排除了药代动力学相互作用和单胺氧化酶抑制作为该现象的替代解释。得出的结论是,H-HYD相互作用与这些药物对中枢γ-氨基丁酸心血管调节的可能影响无关,而是涉及其他目前未知的机制。