Head-to-head clinical analysis & difference comparison: details on mechanism of action, dosing, half-life, interactions, and maternal-fetal safety.
PIRFENIDONE vs AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER
Clinician-reviewed, head-to-head comparison of mechanism, dosing, pharmacokinetics, and safety profiles.
Last clinically reviewed: July 2026 · OpiCalc Medical Review Team
Pirfenidone is a pyridone derivative that inhibits TGF-β1-mediated collagen synthesis, reduces fibroblast proliferation, and downregulates the production of pro-inflammatory cytokines (e.g., TNF-α, IL-1β) and growth factors. Its exact mechanism in idiopathic pulmonary fibrosis (IPF) is not fully elucidated, but it is thought to exert antifibrotic and anti-inflammatory effects.
Aminophylline is a complex of theophylline and ethylenediamine. Theophylline acts as a non-selective phosphodiesterase inhibitor, increasing intracellular cyclic AMP levels, leading to bronchodilation. It also blocks adenosine receptors, stimulates catecholamine release, and enhances diaphragmatic contractility. The ethylenediamine component increases solubility.
Idiopathic pulmonary fibrosis (IPF)
Treatment of symptoms and reversible airflow obstruction associated with chronic asthma and other chronic lung diseases (e.g., emphysema, chronic bronchitis),Adjunctive therapy in acute bronchial asthma and status asthmaticus,Off-label: Treatment of apnea of prematurity
801 mg orally three times daily with food, total daily dose 2403 mg. Starting dose: 267 mg three times daily for first 7 days, then 534 mg three times daily for 7 days, then maintenance 801 mg three times daily.
Loading dose: 5-6 mg/kg IV over 20-30 minutes (if not on theophylline). Maintenance: 0.5-0.7 mg/kg/h IV continuous infusion.
Terminal elimination half-life: ~2.5 hours (range 1.5–3.5 h); clinical context: no accumulation with twice-daily dosing; steady-state reached within 2–3 days.
Terminal elimination half-life: 3-12 hours in adults (mean 5-6 hours); prolonged in hepatic impairment, heart failure, COPD, and neonates (up to 30 hours). Smoking reduces half-life by 30-50%.
Primarily hepatic metabolism via CYP1A2, with minor contributions from other CYP enzymes (CYP2C9, CYP2C19, CYP2D6, CYP2E1).
Theophylline is metabolized primarily in the liver by cytochrome P450 isoenzymes, predominantly CYP1A2, with minor contributions from CYP2E1 and CYP3A4. Metabolism involves N-demethylation and oxidation. In neonates, metabolism is immature; in adults, ~90% is hepatically cleared. Ethylenediamine is minimally metabolized.
Renal: ~80% (mostly as unchanged drug and metabolites); fecal: ~20%.
Renal excretion of unchanged drug (about 10-20%) and metabolites (primarily 1,3-dimethyluric acid, 1-methyluric acid, 3-methylxanthine). Billary/fecal excretion is negligible.
~60–70% bound to plasma proteins (primarily albumin).
Theophylline (active moiety): approximately 40% bound to plasma proteins, primarily albumin. Protein binding decreases in neonates, hepatic cirrhosis, and uremia.
Vd: ~1 L/kg (range 0.8–1.2 L/kg); clinical meaning: extensive tissue distribution.
Apparent volume of distribution: approximately 0.4-0.6 L/kg (average 0.45 L/kg). Indicates distribution into total body water; slightly higher in neonates and premature infants.
Oral: ~80–85% (high bioavailability with minimal first-pass metabolism).
Oral: 96-100% for immediate-release tablets; 50-70% for some sustained-release formulations depending on formulation. Rectal: 70-80% (variable). IV: 100%.
Contraindicated in GFR < 30 m L/min. For GFR 30-50 m L/min: reduce to 267 mg three times daily; monitor for adverse effects. No adjustment for GFR > 50 m L/min.
No dose adjustment required for GFR >30 m L/min. For GFR 10-30 m L/min: reduce maintenance dose by 50% and monitor serum theophylline levels. For GFR <10 m L/min: reduce maintenance dose by 50% and extend dosing interval or use with caution.
Child-Pugh Class A: no adjustment. Child-Pugh Class B: contraindicated (insufficient data). Child-Pugh Class C: contraindicated.
Child-Pugh A: reduce dose by 50%. Child-Pugh B: reduce dose by 75%. Child-Pugh C: contraindicated or use with extreme caution, reduce dose by 80% and monitor levels.
Not approved for pediatric patients; safety and efficacy not established. No weight-based dosing guidelines available.
Loading dose: 1 mg/kg IV (if not on theophylline). Maintenance: Continuous infusion: age 6 months-1 year: 0.5 mg/kg/h; age 1-9 years: 0.8 mg/kg/h; age 9-12 years: 0.7 mg/kg/h; age 12-16 years: 0.6 mg/kg/h. Maximum daily dose: 24 mg/kg/day.
No specific dose adjustment required; use caution due to potential increased sensitivity and higher incidence of renal impairment. Monitor renal function and gastrointestinal tolerability.
Consider lower initial doses due to decreased clearance. Use ideal body weight. Start at lower maintenance infusion rate (e.g., 0.3 mg/kg/h) and titrate based on serum levels and clinical response. Monitor for toxicity.
No FDA black box warnings.
None
Hepatotoxicity: Elevations in liver enzymes and potential drug-induced liver injury; monitor LFTs regularly.,Photosensitivity: Avoid sun exposure; use broad-spectrum sunscreen.,Gastrointestinal effects: Nausea, diarrhea, dyspepsia; may require dose adjustment.,Drug interactions: Coadministration with strong CYP1A2 inhibitors (e.g., fluvoxamine) increases pirfenidone exposure; use with caution.,Smoking: Tobacco smoking induces CYP1A2, reducing pirfenidone exposure; advise smoking cessation.
Narrow therapeutic index; serum theophylline levels must be monitored to avoid toxicity. Risk of seizures, cardiac arrhythmias, and death, especially at high serum concentrations. Caution in patients with hepatic impairment, congestive heart failure, cor pulmonale, fever, and in the elderly. Drug interactions with cimetidine, fluoroquinolones, macrolides, oral contraceptives, and other CYP1A2 inhibitors can increase toxicity.
Severe hepatic impairment (Child-Pugh Class C),History of hypersensitivity to pirfenidone or any excipient,Coadministration with strong CYP1A2 inhibitors (e.g., fluvoxamine) due to potential toxicity
Absolute: Hypersensitivity to theophylline, ethylenediamine, or any component; use in patients with active seizure disorder (unless receiving appropriate anticonvulsant therapy); use in patients with a history of ventricular arrhythmias (except under close supervision). Relative: Peptic ulcer disease, hyperthyroidism, hypertension, and renal impairment.
Avoid grapefruit juice (CYP3A4 interaction). Take with food to minimize GI upset. No other significant food interactions.
Avoid large amounts of caffeine-containing foods and beverages (coffee, tea, cola, chocolate) as they can potentiate theophylline effects and increase risk of toxicity. A high-protein diet may increase theophylline clearance; maintain consistent dietary habits.
Pirfenidone is classified as FDA Pregnancy Category C. In animal studies, it caused fetal toxicity (reduced fetal weight, increased skeletal variations) at doses below human exposure. There are no adequate and well-controlled studies in pregnant women. The risk of major birth defects is unknown; use only if potential benefit justifies potential risk to the fetus. First trimester: potential for teratogenicity. Second and third trimester: possible fetal toxicity from maternal exposure.
Pregnancy Category C. First trimester: Limited human data; animal studies show no teratogenicity but some developmental delays at high doses. Second and third trimesters: Use only if benefit outweighs risk; may cause fetal tachycardia or irritability due to adenosine receptor blockade. Avoid near term due to potential neonatal irritability.
It is unknown if pirfenidone is excreted in human breast milk. The M/P ratio has not been determined. Due to potential for serious adverse reactions in nursing infants, breastfeeding is not recommended during treatment and for at least 2 weeks after the last dose.
Not recommended unless essential. Aminophylline is excreted into breast milk; M/P ratio approximately 0.6–0.8. Monitor infant for irritability or insomnia. Consider alternative therapies if breastfeeding.
No specific dosing adjustments for pregnancy have been established. Due to changes in volume of distribution and renal clearance during pregnancy, therapeutic drug monitoring is not possible. Use lowest effective dose if absolutely necessary.
Pregnancy may decrease protein binding and increase clearance of theophylline; monitor serum levels closely. Dose may need to be increased by 10–30% to maintain therapeutic levels. Postpartum, doses may need reduction.
Monitor liver function tests monthly for first 6 months, then every 3 months. Avoid use in moderate to severe hepatic impairment (Child-Pugh B/C). Photosensitivity is common; advise sun avoidance and broad-spectrum sunscreen. May cause gastrointestinal issues; take with food. Dose reduction required with strong CYP1A2 inhibitors (e.g., fluvoxamine). Smoking induces CYP1A2 and reduces exposure.
Aminophylline is a bronchodilator used primarily for asthma and COPD exacerbations. Monitor serum theophylline levels closely due to narrow therapeutic index (10-20 mcg/m L). Administer IV infusion over 30 minutes to avoid hypotension. Caution in patients with cardiac arrhythmias, hyperthyroidism, or seizure disorders. Drug interactions include cimetidine, fluoroquinolones, and macrolides which increase theophylline levels.
Take with food to reduce stomach upset.,Avoid sun exposure; use sunscreen and protective clothing.,Report any signs of liver problems: jaundice, dark urine, abdominal pain.,Do not smoke while taking this medication.,Avoid grapefruit juice.,Complete blood tests as scheduled.
Take this medication exactly as prescribed; do not stop or change dose without consulting your doctor.,Avoid excessive caffeine intake (coffee, tea, chocolate, cola) as it may increase side effects like jitteriness and palpitations.,Report any symptoms of toxicity such as nausea, vomiting, insomnia, rapid heart rate, or seizures immediately.,Inform your healthcare provider of all other medications, especially antibiotics, heart medications, or seizure drugs.,Do not chew or crush the solution; it is for intravenous use only under medical supervision.
"Pirfenidone, an antifibrotic agent used for idiopathic pulmonary fibrosis, may reduce the vasodilatory efficacy of alprostadil, a prostaglandin E1 analog. This interaction likely results from pirfenidone-induced downregulation of prostaglandin receptors or modulation of cyclic AMP signaling pathways, leading to diminished smooth muscle relaxation and reduced therapeutic response to alprostadil. Consequently, patients may experience suboptimal vasodilation, potentially compromising treatment for conditions like erectile dysfunction or peripheral arterial disease."
"Pirfenidone, an antifibrotic agent, may reduce the ocular hypotensive efficacy of bimatoprost, a prostaglandin analog used for glaucoma. This interaction is postulated to occur via pirfenidone's inhibitory effects on prostaglandin synthesis or signaling pathways, potentially attenuating bimatoprost-mediated enhancement of uveoscleral outflow. Clinically, patients may experience inadequate intraocular pressure (IOP) reduction, increasing the risk of glaucoma progression."
"Pindolol, a non-selective beta-blocker with intrinsic sympathomimetic activity, may antagonize the vasodilatory effects of pirfenidone, an antifibrotic agent known to reduce systemic vascular resistance. This pharmacodynamic interaction can blunt the antihypertensive efficacy of pirfenidone, potentially leading to inadequate blood pressure control in patients with pulmonary fibrosis and concurrent hypertension. Clinically, this may necessitate dose adjustments or alternative therapies to maintain optimal cardiovascular outcomes."
"Concurrent administration of aminophylline, a xanthine derivative bronchodilator that is metabolized primarily by CYP1A2 and to a lesser extent CYP3A4, may reduce the clearance of ranolazine, an antianginal agent predominantly metabolized by CYP3A4 and to a lesser extent CYP2D6. Aminophylline can inhibit CYP3A4 activity, leading to increased ranolazine plasma concentrations, which elevates the risk of dose-dependent adverse effects such as QTc prolongation, dizziness, and syncope. This interaction is clinically significant and may necessitate dose adjustment or alternative therapy."
"Asunaprevir, a potent inhibitor of the drug transporter OATP1B1, can significantly decrease the serum concentration of aminophylline, a theophylline salt, likely by reducing its intestinal absorption or increasing its hepatic clearance. This interaction may lead to reduced therapeutic efficacy of aminophylline, potentially worsening respiratory symptoms in patients with asthma or COPD. Close monitoring and dose adjustment of aminophylline are recommended during coadministration with asunaprevir."
"Aminophylline, a bronchodilator, inhibits the metabolism of tibolone, a synthetic steroid hormone used for hormone replacement therapy, primarily through competitive inhibition of cytochrome P450 (CYP) 3A4 isoenzyme. This results in increased plasma concentrations of tibolone and its active metabolites, potentiating its hormonal effects and increasing the risk of adverse events such as thromboembolism, endometrial hyperplasia, or breast tenderness. Clinically, coadministration may require dose adjustments and careful monitoring for signs of estrogenic excess."
Explore head-to-head clinical comparisons of other medications in the same therapeutic classes.
Common clinical questions about PIRFENIDONE vs AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER, answered by our medical review team.
PIRFENIDONE is a Antifibrotic Agent that works by Pirfenidone is a pyridone derivative that inhibits TGF-β1-mediated collagen synthesis, reduces fibroblast proliferation, and downregulates the production of pro-inflammatory cytokines (e.g., TNF-α, IL-1β) and growth factors. Its exact mechanism in idiopathic pulmonary fibrosis (IPF) is not fully elucidated, but it is thought to exert antifibrotic and anti-inflammatory effects.. AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER is a Electrolyte that works by Aminophylline is a complex of theophylline and ethylenediamine. Theophylline acts as a non-selective phosphodiesterase inhibitor, increasing intracellular cyclic AMP levels, leading to bronchodilation. It also blocks adenosine receptors, stimulates catecholamine release, and enhances diaphragmatic contractility. The ethylenediamine component increases solubility.. They differ in pharmacokinetic profiles, FDA-approved indications, and side effect profiles.
Potency comparisons between PIRFENIDONE and AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER depend on the specific clinical indication. These are agents from distinct pharmacological classes and are not directly interchangeable by dose. A physician or clinical pharmacist should guide any therapeutic switching decisions.
The standard adult dose of PIRFENIDONE is: 801 mg orally three times daily with food, total daily dose 2403 mg. Starting dose: 267 mg three times daily for first 7 days, then 534 mg three times daily for 7 days, then maintenance 801 mg three times daily.. The standard adult dose of AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER is: Loading dose: 5-6 mg/kg IV over 20-30 minutes (if not on theophylline). Maintenance: 0.5-0.7 mg/kg/h IV continuous infusion.. Dosing should always be individualized based on indication, renal and hepatic function, age, and other patient factors.
No direct drug-drug interaction has been formally documented between PIRFENIDONE and AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER in current clinical databases. However, individual patient risk factors including other medications, organ function, and comorbidities should always be evaluated by a qualified healthcare provider.
The maternal-fetal safety profiles differ. PIRFENIDONE is classified as Category C. Pirfenidone is classified as FDA Pregnancy Category C. In animal studies, it caused fetal toxicity (reduced fetal weight, increased skeletal variations) at doses below human exposu. AMINOPHYLLINE IN SODIUM CHLORIDE 0.45% IN PLASTIC CONTAINER is classified as Category A/B. Pregnancy Category C. First trimester: Limited human data; animal studies show no teratogenicity but some developmental delays at high doses. Second and third trimesters: Use only . Always consult a maternal-fetal medicine specialist before taking either drug during pregnancy or lactation.