前列环素对血管张力调节的影响。

G J Dusting, S Moncada, K M Mullane, J R Vane
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引用次数: 19

摘要

1. 采用血浴器官技术研究了麻醉犬血液循环中花生四烯酸和前列环素的生物转化。2. 在通过肺部的过程中,花生四烯酸酯(50-800微克kg-1分钟-1)转化为前列环素。动脉血中未检出血栓素A2、前列腺素E2。3.用吲哚美辛(5 mg/kg)治疗的犬,静脉输注花生四烯酸酯对心血管无影响,也不产生前列环素。因此,花生四烯酸酯在体内的血管扩张作用可能归因于前列环素的形成。4. 与前列腺素E2不同,前列环素不会因通过肺部而失活,只有约50%的前列环素在通过周围血管床的一次通道中消失。5. 因此,从肺中释放的前列环素可以起到循环血管扩张剂的作用,有助于调节血管张力和血压。
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Implications of prostacyclin generation for modulation of vascular tone.

1. The biotransformation of arachidonic acid and prostacyclin in the circulation was studied in anaesthetized dogs, using the blood-bathed organ technique. 2. In passage through the lungs, arachidonate (50-800 microgram kg-1 min-1) was transformed into prostacyclin. No thromboxane A2 or prostaglandin E2 could be detected in arterial blood. 3. In dogs treated with indomethacin (5 mg/kg), intravenous infusions of arachidonate had no cardiovascular effects and no prostacyclin was produced. Therefore, the vasodilator effects of arachidonate in vivo may be attributable to prostacyclin formation. 4. Prostacyclin, unlike prostaglandin E2, is not inactivated by passage across the lungs, and only about 50% disappears in one passage through peripheral vascular beds. 5. Thus prostacyclin released from the lungs could function as a circulating vasodilator and contribute to the regulation of blood vessel tone and blood pressure.

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Proceedings of the Fifth Meeting of the International Society of Hypertension, Paris, 12-14 June 1978. Brain catecholamines and catecholamine-synthesizing enzymes in renovascular hypertension in the rat. Enhanced hypothalamic noradrenaline biosynthesis in Goldblatt I renovascular hypertension. Definitive evidence for renin in rat brain by affinity chromatographic separation from protease. Renal release of active and inactive renin in essential and renovascular hypertension.
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