Acetylsalicylic acid (AAS)
Salicylates / Irreversible COX-1 inhibitor (e.g. *Aspirin*, *Adiro*).
Mechanism
Mechanism of Action
Acetylsalicylic acid is a classic antiplatelet agent that acts by inhibiting the synthesis of proaggregant mediators in platelets.
Molecular Physiology: Irreversible Acetylation of COX-1
1. ASA selectively and irreversibly inhibits the enzyme cyclooxygenase-1 (COX-1) within the circulating platelet.
2. The acetyl group of the AAS molecule is covalently transferred to theSerine 529 residue in the COX-1 catalytic channel, sterically blocking the entry of its physiological substrate: arachidonic acid.
3. This prevents the intermediate synthesis of Prostaglandin Endoperoxides and the subsequent generation of Thromboxane A2 (TXA2), a potent platelet granule-releasing agonist and systemic vasoconstrictor.
4. Lacking a chromosome nucleus, platelets are incapable of resynthesizing new COX-1 enzyme. Therefore, the blockage persists for the entire lifespan of the exposed platelet (approx. 7 to 10 days). Normal platelet aggregation only recovers progressively as the bone marrow releases new functional platelets into the circulation (approximately 10% of the total platelets released daily).
Pharmacokinetics
Pharmacokinetics
- Route of administration: Oral; Enteric-coated formulations are marketed to limit direct erosive damage to the gastric mucosa.
- Bioavailability (F): Approximately 50 - 70% due to significant gastric and hepatic first-pass clearance mediated by hydrolysis to salicylic acid.
- Distribution: Widely distributed in most body tissues. Concentration-dependent binding to plasma proteins (~50-90% albumin).
- Metabolism: Rapid hydrolysis in plasma by nonspecific esterases to salicylic acid (active metabolite with anti-inflammatory and analgesic properties, but with little antiaggregant effect). Salicylic acid is conjugated in the liver to salicyluric acid.
- Excretion: Renal, dependent on urinary pH (urinary alkalinization ionizes salicylate, increasing its urinary clearance drastically in acute poisoning).
- Half-life (t1/2): Unaltered ASA has an ultra-short plasma half-life of 15 to 20 minutes; Its main metabolite, salicylic acid, has a dose-dependent half-life of 2 to 3 hours at low doses, extending to more than 20 hours in therapeutic overdose due to saturation of hepatic clearance.
Indicators and dose
Indications
- Secondary prevention of atherothrombotic events: AMI, ischemic stroke and transient ischemic attack (TIA).
- Primary prevention of ischemic events in patients at high cardiovascular risk (e.g., diabetes mellitus with high risk scores).
- Acute treatment of AMI and after coronary angioplasty (PCI) as part of dual antiplatelet therapy (DAPT).
- Treatment of Kawasaki disease in pediatrics (acute and immunological phase).
Dosage and Settings
- Usual antiplatelet prophylaxis: 75 mg to 100 mg orally once a day.
- Loading dose in ACS: 150 mg to 325 mg (preferably chewed non-enteric tablets to accelerate onset of action to < 10 min).
- Renal adjustment: Avoid use if the glomerular filtration rate is less than 10 mL/min due to metabolic accumulation and potential nephrotoxicity due to inhibition of renal vasodilatory prostaglandins.
Pregnancy and Breastfeeding
FDA Category D for classic analgesic doses (associated with premature closure of the fetal ductus arteriosus, pulmonary hypertension and renal dysfunction in utero in the third trimester). However, the use of low doses (75 - 150 mg) is prescribed in a safe and scheduled manner in the first and second trimester for the prevention of preeclampsia in high-risk pregnant women. It is not recommended during prolonged breastfeeding due to the theoretical risk of inducing Reye's syndrome in the exposed infant.
Security
Contraindications
Absolute
- Hypersensitivity to ASA or salicylates.
- History of salicylate-induced asthma or bronchospasm attacks associated with NSAIDs (Samter's triad).
- Active peptic ulcer or history of recurrent digestive bleeding.
- Third trimester of pregnancy (high doses).
- Active bleeding diathesis (e.g., hemophilia).
- Active viral infections in children or adolescents (risk of Reye's Syndrome).
Relative
- Severe kidney or liver failure.
- Previous gout or hyperuricemia (low doses of ASA decrease uric acid excretion by competing in the renal anion transporter).
- Concomitant use of systemic anticoagulants.
Adverse Effects (ADR)
- Gastrointestinal hemorrhage: Most common ADR. It is generated both by the harmful topical effect of weak acid on the protective mucus and by inhibition of gastric COX-1, blocking the synthesis of Prostaglandin E2 (PGE2) and Prostacyclin (PGI2), which stimulate the secretion of bicarbonate and mucus and maintain mucosal blood flow.
- Bronchospasm (Aspirin-induced asthma): Secondary to the diversion of arachidonic acid metabolism towards the lipoxygenase pathway as the cyclooxygenase pathway is blocked, which promotes excessive synthesis of pro-inflammatory cysteine leukotrienes and potent bronchoconstrictors.
- Reye syndrome: Severe acute encephalopathy and fulminant hepatic fatty degeneration in children with viral infections (flu or chickenpox) treated with ASA.
- Salicylism (Overdose poisoning): Tinnitus, hearing loss, initial respiratory alkalosis followed by metabolic acidosis with elevated anion gap.
Interactions
Interacts competitively with other NSAIDs. Ibuprofen administered before ASA can reversibly block the binding site to Serine 529 of COX-1, annulling the irreversible cardioprotective effect of ASA. It should be recommended to take ASA at least 2 hours before any other non-selective NSAID.
Epistemis is educational review material. It is not a medical device, does not diagnose or prescribe treatment, and does not replace formal medical training, current clinical guidelines, or professional clinical judgment.
- System
- Hematology
- Cluster
- Antiplatelet Agents