scholarly journals Inhibition of cyclooxygenase activity by diclofenac attenuates varicose remodeling of mouse veins

Vessel Plus ◽  
2021 ◽  
Vol 2021 ◽  
Author(s):  
Leandra Lust ◽  
Hanna Kuk ◽  
Johanna Kohlhaas ◽  
Carsten Sticht ◽  
Thomas Korff
1989 ◽  
Vol 62 (03) ◽  
pp. 1034-1039 ◽  
Author(s):  
Jan S Brunkwall ◽  
James C Stanley ◽  
Timothy F Kresowik ◽  
Linda M Graham ◽  
William E Burkel ◽  
...  

SummaryRegulation of prostanoid release from ex vivo perfused vessel segments is not fully understood. A series of perfusion experiments were performed with canine arteries and veins to define certain regulatory phenomena. Arteries were perfused with pulsatile flow of 90 ml/min at a pressure of 100 mmHg, and veins with nonpulsatile flow of 90 ml/min at a pressure of 7 mmHg. Segments were perfused with Hanks' balanced salt solution for five 15-min periods with the perfusate exchanged after each study period. With onset of perfusion, there was an initial burst of prostacyclin release to 127 ± 40 pg/mm2, declining to 32 ± 10 pg/mm2 after 60 minutes (p <0.005). If perfusion continued for 5.5 hours, there was a stable release period between 1 and 3 hours, followed by a very slow decline. At that time addition of arachidonic acid (AA) increased prostacyclin release six-fold (p <0.01). Vessels perfused for 1 hour and then rested for another hour, responded to reperfusion at the second onset of flow with a two-fold increase in prostacyclin release (p <0.01). Vessels perfused with thrombin, bradykinin or A A (either added to each perfusate or only to the last perfusate) exhibited greater prostacyclin release than did control segments. Release of thromboxane steadily declined with time in all parts of the study, and only increased with the addition of A A to the perfusate. These data indicate that vessel segments subjected to ex vivo perfusion do not maximally utilize enzyme systems responsible for prostanoid production, and after 1 hour perfusion have not depleted their phospholipids, and maintain functioning levels of phospholipase and cyclooxygenase activity. This perfusion model allows for the study of prostacyclin and thromboxane release from arteries and veins and their response to various drugs and other stimuli.


1982 ◽  
Vol 47 (02) ◽  
pp. 173-176 ◽  
Author(s):  
E E Nishizawa ◽  
A R Mendoza ◽  
T Honohan ◽  
K A Annis

SummaryA thiazole derivative, 4,5-bis(p-methoxyphenyl)-2-(trifluoromethyl)-thiazole was found to be a potent inhibitor of collagen-induced platelet aggregation, in vitro, using platelets from at least six species, including man. It was active in human platelet-rich plasma at a concentration of 1 ng/ml. While its antiplatelet activity was greater than that of flurbiprofen, its cyclooxygenase activity was equivalent to that of flurbiprofen. Also, compared to flurbiprofen, the thiazole had less anti-inflammatory activity in the hind-paw edema test. The thiazole derivative inhibited platelet aggregation following oral administration in five laboratory species. In the guinea pig it was active at 0.5 mg/kg. The LD50 in mice was greater than 1000 mg/kg (i.p.). This compound, which was designed through a systematic drug development program, may have high potential as an antithrombotic agent.


2017 ◽  
Vol 45 (1) ◽  
pp. 75-83 ◽  
Author(s):  
Atsushi Matsuyama ◽  
Sen Higashi ◽  
Saori Tanizaki ◽  
Takahiko Morotomi ◽  
Ayako Washio ◽  
...  

1990 ◽  
Vol 259 (3) ◽  
pp. G462-G467 ◽  
Author(s):  
J. L. Wallace ◽  
C. M. Keenan ◽  
D. N. Granger

The hypothesis that neutrophils play an important role in the pathogenesis of gastric ulceration induced by nonsteroidal anti-inflammatory drugs (NSAIDs) was tested in rats. Rats made neutropenic by prior treatment with an antibody to rat neutrophils raised in goat were found to be significantly more resistant to the gastric-damaging actions of indomethacin or naproxen than were control rats or rats pretreated with normal goat serum. The reduction of damage in neutropenic rats was not due to effects of the antineutrophil serum on either gastric acid secretion or the ability of indomethacin or naproxen to inhibit prostaglandin synthesis. Gastric cyclooxygenase activity was inhibited by greater than 95% in both normal and neutropenic rats that received indomethacin or naproxen. Reduction of circulating neutrophil numbers by treating rats with methotrexate also resulted in a significant reduction in the susceptibility to gastric damage induced by indomethacin. Since activation of circulating neutrophils appeared to be important in the development of gastric erosions after administration of indomethacin, and in the significant changes in vascular endothelial integrity (Monastral Blue staining) observed within 15 min of indomethacin administration, we investigated the possibility that leukotrienes (LTs) and platelet-activating factor (PAF) might be involved in the pathogenesis of indomethacin-induced ulceration. Changes in gastric LTB4 synthesis were not observed after indomethacin administration. Pretreatment with either an LTD4 antagonist or a PAF antagonist was without significant effect on the extent of gastric damage induced by indomethacin. These results suggest an important role for neutrophils in the pathogenesis of NSAID-induced gastric ulceration. Neutrophils may be important in the vascular injury that occurs early after administration of these compounds.


1977 ◽  
Author(s):  
M. Ali ◽  
J. Zamecnik ◽  
J. W. D. McDonald

The principle products of arachidonic acid (AA) in platelets are hydroxylated fatty acids and thromboxane B2(TXB2). Prostaglandin D2(PGD2) has been considered to be a nonenzymatic degradation product of prostaglandin H2 formed in the presence of plasma albumin. Using 14C AA as substrate and thin layer and silicic acid chromatography, we have demonstrated PGD2 synthesis by washed (albumin-free) human platelets. The identity of PGD2 was confirmed by gas chromatography-mass spectrometry. In platelets lysed by freezing and thawing synthesis of TXB2 and PGD2 was approximately equal and equally inhibited by pyrazolones.Synthesis of PGD2 by platelets is enzymatic and may contribute to bronchoconstrictor, vasomotor, and inflammatory effects induced by platelet aggregation. Pyrazolones appear to inhibit cyclooxygenase activity rather than the breakdown of cyclic endoperoxides as previously postulated.


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