Search PubMedSearch

PubMed · 2720355

Plasma eicosanoids, platelet function and cold sensitivity.

Abstract

As abnormal eicosanoid (prostaglandin) metabolism has been suggested as a factor in the aetiology of vasospastic diseases we have measured levels of stable eicosanoid metabolites using a radioimmunoassay in 30 normal subjects and 31 patients with Raynaud's phenomenon. There were 13 patients with primary Raynaud's, ten with Raynaud's secondary to scleroderma and eight men with vibration white finger (VWF) disease. We have also measured platelet aggregation to adenosine diphosphate (ADP), collagen and adrenaline in 19 normal subjects, 22 patients with primary Raynaud's, 12 with Raynaud's secondary to scleroderma and 14 men with VWF. When compared with our normal subjects, patients with VWF have an elevated thromboxane B2 level, with a normal 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) level. Their platelets are less sensitive to ADP and collagen. Patients with primary and secondary Raynaud's have elevated thromboxane B2 levels but this is much more marked in the secondary group. Patients with primary Raynaud's have a normal 6-keto-PGF1 alpha level but in patients with secondary Raynaud's the 6-keto-PGF1 alpha level is markedly raised. The platelets from both groups are more sensitive to ADP and collagen and this is more marked in the secondary group. Whether these phenomena are a cause or an effect of vasospasm remains unknown.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D Wilkinson, P Vowden, L Gilks, A B Latif, S M Rajah, R C Kester. 1989. Plasma eicosanoids, platelet function and cold sensitivity.. https://doi.org/10.1002/bjs.1800760430

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Prostacyclin, thromboxane, and oxygen free radicals and postoperative liver function in human liver transplantation.

The aim of this prospective study is to evaluate prostanoid (prostacyclin and thromboxane) and lipid peroxide levels at the portal and hepatic veins, and their relation to immediate postoperative liver function. Nineteen patients with liver cirrhosis undergoing orthotopic liver transplantation were prospectively studied. Blood samples were obtained within 5 min and 1 and 2 hr after reperfusion of the new liver, through a catheter placed at the portal vein in the recipient and another at the left hepatic vein in the donor liver. Plasma prostacyclin and thromboxane were analyzed by HPLC and RIA. The formation of lipid peroxides was determined and expressed in terms of thiobarbituric acid-reacting substances. Immediate postoperative liver function was evaluated using the transaminase levels within the first 48 hr and the early postoperative graft function score, as described previously. After reperfusion, only determinations at 5 min were related with liver function. Either prostacyclin (R = -0.61, P = 0.004) levels at the hepatic vein or prostacyclin production (subtraction between hepatic and portal vein levels) (R = -0.47, P = 0.04) correlated significantly with the early postoperative graft function score. Besides, there was a significant relationship between lipid peroxide production as measured by thiobarbituric acid-reacting substances and a worse early postoperative graft function score (R = 0.61, P = .005). These results suggest that prostacyclin released after liver grafting attenuates preservation and reperfusion damage of the liver, supporting the hypothesis that there is an imbalance of prostanoids within the microvasculature in patients with a compromised postoperative liver function. Our results agree with the involvement of some degree of lipid peroxidation products in the damage of hepatocytes during anoxia and reperfusion.

6-Ketoprostaglandin F1 alpha

Characterisation of functional endothelin receptors in the canine isolated perfused spleen.

The endothelin receptor subtypes involved in the vasoconstriction, capsular smooth muscle contraction, prostaglandin E2 and prostacyclin release induced by endothelin-1 have been investigated in the canine isolated perfused spleen using both the endothelin ETA receptor antagonist FR 139317 and the endothelin ETB receptor agonist IRL 1620. THe isolated canine spleen was perfused with warmed (37 degrees C) and oxygenated (95% O2/5% CO2) Krebs solution at constant flow with continuous recording of splenic arterial perfusion pressure and spleen weight. Samples of splenic venous effluent were collected to determine the amounts of prostaglandin E2 and prostacyclin, measured by radioimmunoassay. Endothelin-1 (4-200 pmol) and IRL 1620 (20-1000 pmol) dose-dependently increased splenic arterial perfusion pressure but the former was more potent on a molar basis (the molar dose ratio IRL/endothelin-1 required to increase splenic arterial vascular resistance by 25% was approximately 33). The infusion of the nitric oxide inhibitor N omega-nitro-L-arginine methyl ester (10 microM), but not of the enantiomer N omega-nitro-D-arginine methyl ester, significantly potentiated the increase in splenic arterial vascular resistance induced by endothelin-1. The infusion of FR 139317 (1 microM) markedly attenuated the increased splenic arterial perfusion pressure induced by endothelin-1 without affecting that evoked by IRL 1620. At the highest dose (200 pmol), endothelin-1 induced a small but significant capsule contraction as reflected by the reduction in the spleen weight. The infusion of FR 139317 (1 microM) abolished this contractile effect. IRL 1620 (in doses up to 1000 pmol) did not significantly affect the capsule tone.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha

"Suicide" inactivation of prostaglandin I2 synthase: characterization of mechanism-based inactivation with isolated enzyme and endothelial cells.

"Suicide" inactivation accompanied catalysis by isolated prostaglandin I synthase. Inactivation occurred via a saturable, pseudo-first-order process with an apparent binding constant Ki = 8 microM prostaglandin H2 and an inactivation rate constant ki = 0.06 s-1. Enzymatic activity declined as an exponential function of substrate concentration and a linear function of product formation. A competitive inhibitor, 9,11-(methanoepoxy)-15(S)-hydroxy-prosta-5Z,13E-dienoic acid, protected the enzyme from inactivation. Prostaglandin H1, an endoperoxide which is not a substrate, inactivated the enzyme less effectively than prostaglandin H2. The differences between inactivation by prostaglandin H2 and H1, the protective effect of the competitive inhibitor, the quantitative similarity between Km and Ki, and the dependence on catalysis all suggest that inactivation originates primarily from a transition-state intermediate, not from malondialdehyde formed by hydrolysis of prostaglandin endoperoxides. Collectively, the data conform to criteria for a specific, mechanism-based process in which a common enzyme-substrate complex participates in two parallel reactions, one leading to turnover and the other to suicide inactivation. Inactivation accompanying catalysis by prostaglandin I synthase in intact endothelial cells was transient, consistent with the cellular capacity for de novo protein synthesis. Enzyme activity returned to the initial steady-state level within 15-20 min, suggesting that prostaglandin I synthase has a half-life < or = 5 min.

6-Ketoprostaglandin F1 alpha