颈动脉闭塞引起的血管舒张性张力和血压的急性升高是由血小板活化因子(PAF)独立于一氧化氮释放调节的

Rodrigo A.B Lopes-Martins, Vanessa Estato, Cláudia V Araújo, Marcelo Catelli, Renato S.B Cordeiro, Eduardo Tibiriçá
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引用次数: 2

摘要

本研究的目的是探讨一氧化氮(NO)参与血小板活化因子(PAF, 1- o -十六烷基-2-乙酰基- asn -甘油-3-磷酸胆碱)的调节作用,血小板活化因子是内皮细胞合成的一种血管活性磷脂介质,对血管张力和动脉血压的调节作用。在戊巴比妥麻醉的家兔中,双侧颈动脉闭塞使颈动脉窦压力感受器脱落,引起全身血管阻力反射性升高,用PAF受体拮抗剂WEB 2086([3-4-(2-氯苯-)-9-甲基- 6h -噻吩-3,2-f-1,2,4-三唑-4,3-α-1,4-二氮平-2-基-(4-morpholinyl)-l-propanone]预处理后,血管阻力明显增强;5 mg/kg,静脉注射)。相反,n ω-硝基-l-精氨酸甲酯(l-NAME)对NO合成酶生物合成NO的抑制作用既不影响颈动脉闭塞引起的全身血管收缩,也不改变WEB 2086的增强作用。通过连续输注直接作用血管扩张剂硝普钠或二氮氧化合物来纠正l-NAME引起的血流动力学改变。本研究的结果证实了我们组之前的研究,即PAF参与了一种负反馈机制,有效地调节了麻醉家兔血管舒缩性张力的局部调节,但排除了NO参与这一过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The acute increases in vasomotor tone and blood pressure induced by carotid artery occlusion are modulated by platelet-activating factor (PAF) independently of nitric oxide release

The purpose of the present study was to investigate the involvement of nitric oxide (NO) in the modulatory role of platelet-activating factor (PAF, 1-O-hexadecyl-2-acetyl-sn-glyceryl-3-phosphorylcholine), a vasoactive phospholipid mediator synthesized by endothelial cells, on the vascular tone and arterial blood pressure. In pentobarbitone-anaesthetized rabbits, unloading of the carotid sinus baroreceptors by a bilateral carotid artery occlusion elicited a reflex rise in systemic vascular resistance, which was markedly potentiated by pretreating the animals with the PAF receptor antagonist WEB 2086 ([3-4-(2-chlorphenyl-)-9-methyl-6H-thieno-3,2-f-1,2,4-triazolo-4,3-α-1,4-diazepin-2-yl-(4-morpholinyl)-l-propanone]; 5 mg/kg, i.v.). In contrast, the inhibition of the biosynthesis of NO via NO synthase using Nω-nitro-l-arginine methyl ester (l-NAME) neither affected the systemic vasoconstriction induced by carotid artery occlusion nor modified the potentiating effect of WEB 2086. The haemodynamic alterations induced by l-NAME administration were corrected by continuous infusions of the directly-acting vasodilators sodium nitroprusside or diazoxide. The results of the present study confirm previous studies from our group suggesting the involvement of PAF in a negative feedback mechanism effective in the local regulation of vasomotor tone in anaesthetized rabbits, but exclude the participation of NO in this process.

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