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A novel study on the effect of acetylsalicylic acid on the binding capacity of estrogen receptors from MCF-7 cells.

The effect of acetylsalicylic acid (ASA, aspirin) was investigated on [3H]-estradiol-17 beta ([3H]-E2) binding to estrogen receptors (ER) from MCF-7 mammary tumour cells. No effect was observed using the monoclonal estrogen receptor-enzyme immunoassay (ER-EIA). In contrast to the ER-EIA, the radioreceptor assay (RRA) showed decreases of [3H]-E2 specific binding in the presence of increasing amounts of ASA. It is therefore concluded that these results demonstrate that ASA possibly affects the direct binding of E2 to region E of the ER of human breast cancer MCF-7 cells, but does not affect binding of monoclonal antibodies to regions D and F of the ER.

Antibodies, Monoclonal↗

Effect of acetylsalicylic acid on the constituents of the gastric mucosal barrier.

The effect of luminal application of acetylsalicylic acid (ASA) on the liberation of gastric mucosal barrier constituents at pH 5.0 and 2.0 was investigated. The Lucite chamber stomach-flap preparation was used in 18 dogs whose basal H+ secretion was inhibited by cimetidine. An ASA dose of 10 mmol at pH 5.0 caused a moderate increase in content of proteins, glycoproteins, and glycolipids in the instillates. This was accompanied by an increase in transmucosal potential difference (PD) without concomitant changes in the appearance of the gastric mucosa. However, the content of mannose used as an indicator of plasma leakage remained unchanged. A 20 mmol ASA dose at pH 5.0 produced further enrichment of the instillates in mucus constituents, and an increase in mannose content was observed, but PD still remained elevated. In contrast, the same dose of ASA at pH 2.0 severely depleted the gastric mucosal barrier of its mucus constituents and caused a marked increase in leakage of plasma elements. These changes were accompanied by a substantial drop of PD and gastric mucosal damage. These data indicate that the topical application of ASA causes the liberation of mucus constituents, which results in weakening of the gastric mucosal barrier and thus facilitates the pepsin and acid penetration of gastric mucosa. The extent of mucosal damage caused by aspirin strongly depends on the pH of luminal exposure.

Animals↗

[The prevention of thrombus formation and the improvement of the blood rheological properties during operations with a microsurgical technic. I. The possibilities for using acelysin--an acetylsalicylic acid derivative].

Changes in the blood clotting system and rheology were studied in 39 patients during reconstructive operations making use of microsurgical methods. Effects of various doses of water soluble acelysine, an acetylsalicylic acid preparations (DL-lysine acetylsalicylate and glycine) have been evaluated during surgery and the immediate postoperative period. Clinical and laboratory changes in blood coagulation were determined at different doses (1000, 500, and 250 mg). Even in low doses (3.94 +/- 0.25 mg/kg) acelysine ensured chronometric and structural hypocoagulation as early as 1 h after dosed infusion and throughout the entire intervention, preventing thrombosis of microvascular anastomoses. Administration of acelysine in doses higher than 250 mg is not recommended, because higher doses involve the risk of hypocoagulation complications.

Adolescent↗

Hepatic oxidative stress and related defenses during treatment of mice with acetylsalicylic acid and other peroxisome proliferators.

The peroxisome proliferators perfluorooctanoic acid (PFOA; 0.02% w/w), perfluorodecanoic acid (PFDA; 0.02%, w/w), nafenopin (0.125%, w/w), clofibrate (0.5%, w/w), and acetylsalicylic acid (ASA; 1%, w/w) were administered to male C57 BL/6 mice in their diet for two weeks. Parameters for Fe3+ ADP, NADPH or ascorbic acid-initiated lipid peroxidation in vitro were measured. Approximately a twofold increase in susceptibility to lipid peroxidation was obtained for all the peroxisome proliferators tested. Cotreatment of mice with the peroxisome proliferator ASA (1%, w/w) and a catalase inhibitor, 3-amino-1,2,4-triazole (AT; 0.4%, w/w) for 7 days resulted in little inhibition of peroxisome proliferation, an elevated level of H2O2 in vivo, and total inhibition of the increased susceptibility to lipid peroxidation in vitro. No increase in lipid peroxidation in vivo was observed. Certain antioxidant enzymes (DT-diaphorase, superoxide dismutase, glutathione transferase, glutathione peroxidase, and glutathione reductase) and components (ubiquinone and alpha-tocopherol) were also measured. The results showed that there was some induction of these antioxidant enzymes and components by ASA or aminotriazole, except for glutathione peroxidase and superoxide dismutase, which were inhibited. The possible involvement of oxidative stress in the carcinogenicity of peroxisome proliferators is discussed.

Acyl Coenzyme A↗

Fetal toxicity and hypocalcemia induced by acetylsalicylic acid analogues.

In the present study, we investigated a correlation of fetotoxicity induced by salicylic acid (SA) analogues to their hypocalcemic effect. Among of SA analogues, acetylsalicylic acid, salicylaldehyde, salicyl-alcohol, methyl salicylate and SA evoked a hypocalcemia in rats and mice but the other analogues had no effect by their single administration. The additional administration of dihydroxybenzoic acids elicited the hypocalcemia following the fetal toxicities induced by SA analogues paralleled to that of their hypocalcemic effect. A hypocalcemic effect was induced only by the benzoic acids with hydroxy group existing in ortho-position.

Abnormalities, Drug-Induced↗

Gastric emptying and absorption of acetylsalicylic acid administered as enteric-coated micro-granules.

Enteric-coated and uncoated microgranules of acetylsalicylic acid (ASA), labelled with 51Cr, were administered orally to six healthy male volunteers in a cross-over study. Gastric emptying was studied using a profile scanning radiation technique. Absorption of ASA was followed by measuring the plasma concentration of salicylate. Gastric emptying both of uncoated and enteric-coated granules varied considerably between individuals, but in most cases was gradual and extended over a period of several hours. The median time until 50% and 90% were emptied from the stomach was 1 and 3-3.5 h, respectively, for both the uncoated and enteric-coated granules. The absorption of ASA from the uncoated granules occurred in parallel with the gastric emptying. However, with the enteric-coated granules, absorption was delayed for about 3 h after gastric emptying. It was concluded that the slow absorption of ASA from enteric-coated granules could be explained partly by gradual gastric emptying and partly by slow dissolution of the ASA granules in the intestine.

Adult↗

Effects of very low dose and enteric-coated acetylsalicylic acid on prostacyclin and thromboxane formation and on bleeding time in healthy subjects.

OBJECTIVE: Low dose acetylsalicylic acid (ASA) is widely used as an anti-aggregatory agent in the primary and secondary prevention of cardiovascular diseases. In an effort to spare prostacyclin formation and to reduce gastrointestinal side-effects, both very low doses and enteric-coated formulations of ASA have been introduced. However, it still remains unclear whether these different formulations and dosages are equally effective with respect to inhibition of platelet aggregation and thromboxane A2 (TXA2) formation. METHODS: In a randomized study, we therefore investigated the effects of 100 mg ASA plain (p), 100 mg ASA enteric-coated (ec) and 40 mg ASA (p) to 36 healthy male subjects given for 7 days on platelet aggregation and endogenous prostanoid formation rates. Platelet aggregation and platelet TXB2 release in platelet rich plasma (PRP) and serum TXB2 and 6-keto-PGF1alpha levels were determined at baseline and after 7 days of each medication. The urinary metabolites of TXA2 (2,3-dinor-TXB2) and prostacyclin (2,3-dinor-6-keto-PGF1alpha) were measured by gas chromatography/tandem mass spectrometry in 24-h-urines at baseline and on day 7 of each medication. RESULTS: Collagen-induced platelet aggregation was 73.1+/-1.6% of maximal aggregation at baseline. It was inhibited by 68.9%, 58.6% and 24.0% by ASA 100 mg plain, 100 mg enteric-coated, and 40 mg plain on day 7, respectively. Platelet TXB2 release was 11592.0+/-367.5 pg x ml(-1) PRP. It was inhibited by 90.1%, 86.5%, and 55.2% by ASA 100 mg plain, 100 mg enteric-coated, and 40 mg plain, respectively. Serum TXB2 was almost completely reduced on day 7 by 100 mg ASA, but not by 40 mg ASA; serum 6-keto-PGF1alpha was slightly, but significantly reduced in all three groups. Urinary 2,3-dinor-TXB, excretion was 196.0+/-41.5 pg x mg(-1) creatinine at baseline. It was reduced by 80.3% and 79.1% by ASA 100 mg plain and enteric-coated, respectively (each P < 0.05 versus baseline), but only by 55.4% by ASA 40 mg plain (P < 0.05 versus both formulations of ASA 100 mg). CONCLUSIONS: Our present data show that the plain and enteric-coated formulations of 100 mg ASA are equally effective in inhibiting platelet aggregation, platelet thromboxane production, and urinary 2,3-dinor-TXB2 excretion rates. In contrast, a very low dose of 40 mg ASA was significantly less effective in inhibiting these indices of platelet activation in healthy human subjects. ASA enteric-coated 100 mg may be a useful alternative to 100 mg ASA (p) in patients with gastrointestinal side-effects, whereas 40 mg ASA (p) may be too low to inhibit sufficiently platelet activity in patients with cardiovascular diseases in whom platelet activity is increased.

Adult↗

Effect of acetylsalicylic acid on gastric mucin viscosity, permeability to hydrogen ion, and susceptibility to pepsin.

The effect of acetylsalicylic acid (aspirin) on peptic degradation of gastric mucin, its viscosity and the ability to retard the diffusion of hydrogen ion was investigated. The results of peptic degradation indicated that, in the absence of the drug, the rate of proteolysis was proportional to mucin concentration up to 400 micrograms and remained constant with time for up to 1 hr. Introduction of aspirin led to an enhancement in the rate of proteolysis. The apparent Km value of pepsin toward mucus glycoprotein was 8.7 X 10(-7) M in the absence of the drug and 6.9 X 10(-7) M in its presence. Viscosity measurements showed a drop in mucin viscosity following preincubation with aspirin. This decrease was concentration dependent and at a 4.0 X 10(-5) M concentration of the drug reached a value of 75%. Permeability studies revealed that preincubation with 2.0 X 10(-5) M aspirin increased the permeability of mucin to hydrogen ion by 10%, while an 18% increase was obtained with 4.0 X 10(-5) M aspirin. The results suggest that aspirin weakens the integrity of the gastric mucus layer by promoting its peptic degradation, decreasing viscosity, and reducing the ability to resist hydrogen ion penetration.

Animals↗

Dissociation between antinociceptive and anti-inflammatory effects of acetylsalicylic acid and indomethacin in the formalin test.

It is assumed that the mild analgesia produced by acetylsalicylic acid (ASA) and indomethacin is due to a common mode of action, namely inhibition of the cyclo-oxygenase reaction in the synthesis of prostaglandins. It has, however, been difficult to separate the influence of the anti-inflammatory activity from pure analgesia in standard animal tests using a fully developed inflammatory state. In the present experiments a modification of the formalin test in mice is used. Licking of the injected paw is recorded after the injection of a small nociceptive amount of formalin (20 microliters, 1%). The results show that the response to formalin is biphasic with an early (0-5 min) and a late (20-30 min) phase of high licking activity. ASA had a dose-dependent antinociceptive effect during both the early and the late phases. In contrast, antinociceptive effect of indomethacin was found only during the late phase. On the basis of these results it may be suggested that inhibition of the cyclo-oxygenase reaction has no major effect on the early phase in the formalin test. This also suggests that ASA and indomethacin are antinociceptive through partially different modes of action. In addition to an anti-inflammatory effect common to both drugs, ASA may have a direct antinociceptive action.

Animals↗

The pathomechanism of acetylsalicylic acid intolerance. A hypothesis.

In a number of individuals suffering from chronic asthma or chronic urticaria, acetylsalicylic acid and structurally unrelated non-steroidal anti-inflammatory agents and other compounds, e.g. tartrazine, elicit an intolerance syndrome that mimics the signs and symptoms of an immediate-type allergic (anaphylactic) reaction. An immunological basis for this reaction could be excluded. It is assumed that the eliciting agents activate complement and that the intolerant individuals lack plasma carboxypeptidase B, that normally inactivates C3a and C5a in statu nascendi. The anaphylatoxins, if not immediately inactivated, release the endogenous mediators of the anaphylactic reaction from the tissue mast cells.

Aspirin↗

Prevention of arterial thromboembolism with acetylsalicylic acid. A controlled clinical study in patients with aortic ball valves.

Prevention of arterial thromboembolism with acetylsalicylic acid (ASA) was studied in 148 patients with single Starr-Edwards aortic ball-valve prostheses. These patients are suitable for such a study because they have a high incidence of arterial emboli derived mainly from thrombi formed on the valves. They were given either 1 Gm. of ASA daily or placebo in combination with anticoagulants, and were observed for 2 years. Only two emboli occurred in patients receiving ASA, none of them severe. In the placebo group 12 thromboembolic episodes were diagnosed in 10 patients, and three with cerebral emboli died; in one a subdural hematoma unrelated to the embolus was found. In addition, one fatal and the one nonfatal intracranial bleeding occurred in each group, whereas gastrointestinal complications were seen more frequently in patients taking ASA. It is concluded that ASA combined with anticoagulants offered a significantly better protection against arterial thromboembolism than did anticoagulant therapy alone.

Adult↗

Incomplete thromboxane inhibition with 100 mg of intravenous acetylsalicylic acid in patients with acute ST elevation myocardial infarction: a placebo-controlled pilot trial.

BACKGROUND: Acetylsalicylic acid (ASA) is now a standard treatment of acute myocardial infarction (AMI). ASA inhibits thromboxane A(2) (TXA(2)) production by blocking the constitutive cyclooxygenase (COX)-1 enzyme, but only to a small degree the inducible COX-2. COX-2 is induced by increased concentrations of cytokines, which is related to an enhanced inflammatory response. Previously, we have found a complete inhibition of TXA(2) synthesis in healthy volunteers after intravenous administration of 50 mg of ASA. We measured in a randomized, placebo-controlled pilot trial the effect of 100 mg of ASA injected intravenously on TXA(2) synthesis in AMI patients treated with streptokinase. METHODS AND RESULTS: Nineteen patients with AMI treated with streptokinase were randomized to 100 mg of ASA or placebo injected intravenously. Se-TXB(2) and bleeding time were measured before and after drug administration. One hundred and eighty minutes after intravenous ASA administration, treatment with oral ASA was initiated. We found a significant decrease in serum concentrations of TXB(2) after 30, 60 and 180 min following ASA injection compared to placebo, but in none of the patients was complete inhibition of TXA(2) production achieved. No significant change in bleeding time could be demonstrated. CONCLUSION: Intravenous ASA in a dosage of 100 mg did not completely prevent TXA(2) production in AMI patients treated with streptokinase. This may be due to synthesis of TXA(2) by the inducible COX-2 enzyme and/or to a transcellular metabolism in platelets of prostanoids generated by endothelial cells.

Aged↗

Discrepant effect of the prostaglandin synthesis inhibitor acetylsalicylic acid on insulin and C-peptide response to glucose in man.

The prostaglandin synthesis inhibitor acetylsalicylic acid (ASA) increases acute insulin response to glucose and improves glucose tolerance in man. In an effort to provide further information on the mechanism whereby ASA improves glucose tolerance, we studied the effect of ASA on C-peptide, insulin, pancreatic glucagon (IRG), growth hormone (HGH), nonesterified fatty acids (NEFA) and glycerol responses to glucose in 11 non-obese subjects with impaired glucose tolerance. The glucose tolerance was evaluated by means of a 2 h-glucose infusion test. A daily treatment with 3.0 g ASA over 3 days caused a significant increase of acute (delta IRI area 0-5 min) and late (delta IRI area 30-120 min) insulin response and an improvement of glucose tolerance. By contrast, C-peptide response was in the same range prior to and after ASA treatment. Thus, the C-peptide/insulin ratio was decreased by about 50% due to ASA treatment. IRG, HGH, NEFA and glycerol responses to glucose were not altered by ASA treatment. In summary, the discrepant effect of ASA on C-peptide and insulin responses suggest that changes of insulin metabolism may be involved in the mechanism of ASA induced increase in peripheral insulin levels. The improvement of glucose tolerance after ASA application seems to be related to the biologic effect of higher circulating insulin levels but not to alteration of insulin antagonists, such as IRG, HGH and NEFA.

Adult↗

Clinical comparative evaluation of choline magnesium trisalicylate and acetylsalicylic acid in rheumatoid arthritis.

A multicentre double-blind comparison of choline magnesium trisalicylate (CMT) and acetylsalicylic acid (ACSA) compared the two medications for seven weeks in rheumatoid arthritis patients. Investigators measured the number of painful and swollen joints and the duration of morning stiffness, and assessed the overall condition of each patient. Both medications were highly effective in significantly reducing the severity of symptoms flaring after interruption of prior therapy. CMT achieved a greater reduction in the number of swollen joints than did ACSA (P less than 0.05). The incidence of adverse side-effects per patient was significantly less with CMT (P less than 0.05) (ACSA 32.1%; CMT, 16.3%. A larger percentage of ACSA patients (50.8%) reported adverse side-effects than did CMT patients 28.4%) (P less than 0.02).

Adult↗

Neuroprotective effects of acetylsalicylic acid in an animal model of focal brain ischemia.

Recent studies have shown neuroprotective effects of acetylsalicylic acid (ASA) in cell cultures and hippocampal slices. The present study demonstrates similar effects in a whole-animal modal of focal ischemic stroke. Focal cortical ischemia was produced in Wistar rats by ligation of the common carotid and middle cerebral arteries. Subjects were sacrificed 8 days after ligation, and infarct volume was assessed via automated densitometry. Significant reductions in infarct volume were seen with i.p. ASA doses of 15 mg/kg and above. Reductions occurred when ASA was injected 2 h or 30 min before ligation, but not when it was injected 8 or 24 h before, or 30 min after ligation.

Animals↗

The effects of acetylsalicylic acid on swelling, pain and other events after surgery.

In a double-blind crossover study acetylsalicylic acid (ASA) in low (2 g daily) or high (4 g daily) dosage was tested against placebo in two groups of 20 patients who each underwent identical oral surgical procedures on two separate occasions. Medication started 3 h post-operatively and continued for 3 days. ASA in low dosage tended to increase the postoperative swelling, which on day 3 and 6 averaged 109 and 133% respectively of that with placebo (P greater than 0.05). In contrast, ASA in high dosage tended to reduce the swelling, which on day 3 and 6 averaged 85 and 90% respectively of that with placebo (P greater than 0.05). Comparison of the two groups receiving ASA in low or high dosage revealed a significant difference in their effect on swelling; day 3, P = 0.05. Pain was significantly reduced with ASA, but there appeared to be no greater analgesic effect with 4 g ASA daily than with 2 g ASA daily. There was, however, a substantial increase in the number of patients who reported tinnitus after taking 4 g ASA daily. Subjective postoperative bleeding scores were significantly increased with 2 g ASA daily, but not with 4 g ASA daily. None of the dosages of ASA appeared to reduce the swelling as efficiently, give better pain relief, or as high preference scores as previously obtained in studies when paracetamol and short term glucocorticoid administration were tested against placebo in this model.

Adolescent↗

Potentiation by acetylsalicylic acid of skin weal response to compound 48/80 in ASA-sensitive asthmatics.

The influence of acetylsalicylic acid (ASA) on skin response to intradermal injection of compound 48/80 and histamine was studied in order to determine whether ASA elicits any abnormalities also in the skin of asthmatics reacting with bronchoconstriction to ingestion of this drug. The applied ASA dose (mean dose 150 mg) elicited bronchoconstriction in all 16 patients with asthma and ASA sensitivity (mean fall of FEV1 34%) and increased the weal response to compound 48/80 to about 51% (P less than 0.05) as compared with the response before the ASA-challenge. In asthmatic persons without ASA sensitivity a 150 mg ASA dose did not influence the skin response to any of the reagents. On the other hand, a 600 mg dose decreased skin response to histamine and compound 48/80 in persons without ASA intolerance, although the decrease was statistically significant only in the flare after compound 48/80 (P less than 0.05). The authors believe that additional local defect is needed to reveal sensitivity to ASA in the skin of ASA-sensitive asthmatics, just as bronchial hyperreactivity is indispensible for revealing the action of ASA in the bronchi.

Adult↗

The effect of acetylsalicylic acid on renal function in the Pekin duck.

The acute effects of intravenously administered lysine-acetylsalicylic acid (ASA) on renal function in the Pekin duck have been studied with special reference to possible interactions with the antidiuretic hormone, arginine vasotocin (AVT), in the control of renal water and solute output. ASA produces an immediate increase in urine flow rate which is dose-related in the range 25 to 100 mg kg-1 and is associated with a slight reduction in urine osmolality, but an overall increase in renal osmolal excretion affecting Na+, Cl- and K+ to approximately equal extents. The effects, which are similar in both saltwater and freshwater adapted ducks infused with hyposmotic saline or glucose solution, can also be produced by similar doses of sodium salicylate (SA). The mechanism of action is probably not related to inhibition of prostaglandin synthetases. There is no change in the glomerular filtration rate or peripheral blood pressure following the ASA injection. There is no change in the circulating level of AVT; however, preliminary studies do not exclude the possibility of a partial antagonism of salicylate to AVT at the renal level.

Animals↗