Manejo médico · CHEMM
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Tradução não oficial, feita por este portal e sem endosso, revisão ou vínculo do HHS/ASPR nem do governo dos EUA. O material de origem é de domínio público; a responsabilidade por esta versão em português é do Produtos Perigosos.
☎ 0800 722 6001 — Disque-Intoxicação (CIATox, 24h)Traduzido de Aminophylline - Medical Countermeasures Database ↗ (CHEMM, HHS/ASPR — domínio público), fonte capturada em 2026-08-25. Em caso de dúvida, vale o original.
Aminophylline (aminofilina) — banco de contramedidas médicas
- Name of Chemical Defense therapeutic agent/deviceno original (inglês)
- Chemical Defense therapeutic areano original (inglês)
- Evidence-based medicine for Chemical Defenseno original (inglês)
- Pharmacokinetic and toxicokinetics datano original (inglês)
- Indication/dosingno original (inglês)
- Formulation/shelf lifeno original (inglês)
- Off-label use & dosingno original (inglês)
- Route of administrating/monitoringno original (inglês)
- Adverse effectsno original (inglês)
- Contraindicationsno original (inglês)
- Clinical studies in progressno original (inglês)
- Non-clinical studies in progressno original (inglês)
- Needed studies for Chemical Defenseno original (inglês)
- Needed studies for non-Chemical Defenseno original (inglês)
- Study-related ethical concernsno original (inglês)
- Global regulatory statusno original (inglês)
- Other potentially useful informationno original (inglês)
- Publicationsno original (inglês)
- Web sitesno original (inglês)
1. Nome do agente terapêutico/dispositivo de defesa química
Aminophyllinedose/fármaco conforme a fonte ↗
2. Área(s) terapêutica(s) de defesa química
A aminophylline pode ser usada para tratar o edema pulmonar causado por irritantes pulmonares, como o fosgênio.dose/fármaco conforme a fonte ↗
3. Medicina baseada em evidência para defesa química
A. Resumo
Estrutura
HSDB. Aminophyllinedose/fármaco conforme a fonte ↗no original (inglês)
Mecanismo de ação
Theophylline has two distinct actions in the airways of patients with reversible obstruction; smooth muscle relaxation (i.e., bronchodilation) and suppression of the response of the airways to stimuli (i.e., nonbronchodilator prophylactic effects). While the mechanisms of action of theophylline are not known with certainty, studies in animals suggest that bronchodilation is mediated by the inhibition of two isozymes of phosphodiesterase (PDE III and, to a lesser extent, PDE IV), while nonbronchodilator prophylactic actions are probably mediated through one or more different molecular mechanisms, that do not involve inhibition of PDE III or antagonism of adenosine receptors. Some of the adverse effects associated with theophylline appear to be mediated by inhibition of PDE III (e.g., hypotension, tachycardia, headache, and emesis) and adenosine receptor antagonism (e.g., alterations in cerebral blood flow).no original (inglês)
Theophylline increases the force of contraction of diaphragmatic muscles. This action appears to be due to enhancement of calcium uptake through an adenosine-mediated channel.no original (inglês)
Serum Concentration-Effect Relationship:no original (inglês)
Bronchodilation occurs over the serum theophylline concentration range of 5 - 20 mcg/mL. Clinically important improvement in symptom control and pulmonary function has been found in most studies to require serum theophylline concentrations >10 mcg/mL. At serum theophylline concentrations >20 mcg/mL, both the frequency and severity of adverse reactions increase. In general, maintaining the average serum theophylline concentration between 10 and 15 mcg/mL will achieve most of the drug's potential therapeutic benefit while minimizing the risk of serious adverse events.dose/fármaco conforme a fonte ↗no original (inglês)
Aminophylline is a 2:1 complex of theophylline and ethylenediamine.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Resumo dos estudos clínicos e não clínicos
Phosgene is a volatile, colorless, and highly toxic chemical that poses a potential bioterrorism threat due to the ease and low expense of production (Sciuto and Hurt, 2004). It is used in the production of plastics and other substances, and exposure may occur as a result of occupational accidents. It is a highly reactive tissue oxidant that destroys a wide range of macromolecules and precipitates the release of inflammatory cytokines, eventually resulting in the weakening and collapse of the blood-air barrier and a subsequent flooding of the lungs (Borak and Diller, 2001). Mortality therefore occurs as a result of a delayed, but serious, fulminating pulmonary edema arising 2-24 hours after exposure. Male rabbits exposed to phosgene display reduced levels of the signaling molecule cyclic-3,5-adenosine monophosphate (cAMP), increased levels of inflammatory leukotrienes and peroxidized lipids, a greater degree of protein leakage in the lungs, and increased lung wet weight owing to edema (Kennedy et al., 1989). The bronchodilator aminophylline, used intravenously as an adjunct in the treatment of asthma and other chronic lung conditions, has been known to reduce edema from other pulmonary agents. Live male rabbits treated with phosgene gas and injected with aminophylline (15 mg/kg intravenously 10 minutes after exposure, and 8 mg/kg intraperitoneally 2 and 4 hours after exposure) showed a significantly reduced lung weight gain 4 hours after exposure, compared to phosgene-exposed animals not injected with aminophylline (Kennedy et al., 1989). Subsequent experiments used male rabbits exposed to phosgene and immediately sacrificed, followed by perfusion of the lungs with buffer solution (Sciuto et al., 1997; Sciuto and Hurt, 2004). Rabbits that received 30 mg/kg aminophylline via perfusion 80-90 minutes post-phosgene exposure maintained levels of cAMP, peroxidized lipids, and leukotrienes at or close to the levels in control, phosgene-unexposed animals, and showed reduced lung weight gain (Sciuto et al., 1997; Sciuto and Hurt, 2004). Aminophylline is thought to have a multifactorial mechanism of action; the possibilities include acting as an antioxidant (whether directly or indirectly), inhibiting the production of permeability-promoting peptide leukotrienes, and maintaining a concentration of cAMP sufficient for signaling pathways that maintain tight junctions between smooth muscle cells, thereby preventing leakage (edema) (Sciuto and Hurt, 2004).dose/fármaco conforme a fonte ↗no original (inglês)
B. Link para os estudos clínicos
Estudos em gravidez e amamentação
The concentration of theophylline in breast milk is about equivalent to the maternal serum concentration. An infant ingesting a liter of breast milk containing 10 - 20 mcg/mL of theophylline per day is likely to receive 10 - 20 mg of theophylline per day. Serious adverse effects in the infant are unlikely unless the mother has toxic serum theophylline concentrations (Class IV).dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Revisões clínicas
- Phosgene (carbonyl chloride, CAS 75-44-5) is a highly reactive gas of historical interest and current industrial importance. Phosgene has also proved to be a useful model for the study of those biochemical mechanisms that lead to permeability-type pulmonary edema (adult respiratory distress syndrome). In turn, the study of phosgene-induced adult respiratory distress syndrome has provided insights leading to revised treatment strategies for exposure victims. The authors summarized findings on the mechanisms of phosgene-induced pulmonary edema and their implications for victim management. In light of that research, the authors also provide a comprehensive approach to the management and treatment of phosgene exposure victims (Class IV).no original (inglês)
Borak J, Diller WF ; Phosgene exposure: mechanisms of injury and treatment strategies. J Occup Environ Med. 2001 Feb;43(2):110-9. [PubMed Citation]no original (inglês)
C. Link para os estudos não clínicos (por exemplo, em animais)
Estudos em animais adultos
- Pretreatment with aminophylline has been shown to protect against various types of acute lung injury. Mechanisms responsible for protection are multifactorial but are thought to involve upregulation of cAMP. While previous studies focused on pretreatment, the present investigation examined post-treatment in rabbits following exposure to a lethal dose of the oxidant gas phosgene. Rabbits, 2-3 kg, were exposed to a cumulative dose of phosgene to attain a c x t exposure effect of 1500 ppm.min. Lungs were isolated in situ and perfused for 90-100 min after exposure with Krebs-Henseleit buffer at 40 mL/min. Pulmonary artery pressure (Ppa), tracheal pressure (Pt), and lung weight gain (lwg) were measured continuously. Leukotrienes C4/D4/E4 were measured in the perfusate every 20 min during perfusion. At the immediate conclusion of the experiment, lung tissue was frozen in liquid nitrogen and analyzed for reduced GSH, GSSG, cAMP, and lipid peroxidation (TBARS). Post-treatment with aminophylline 80-90 min after exposure significantly lowered Ppa, Pt, and lwg. Aminophylline significantly reduced TBARS and perfusate LTC4/D4/E4, and prevented phosgene-induced decreases in lung tissue cAMP. These data suggest that protective mechanisms observed with aminophylline involve decreased LTC4/D4/E4-mediated pulmonary capillary permeability and attenuated lipid peroxidation. Direct antipermeability effects of cAMP on cellular contraction may also be important in protection against phosgene-induced lung injury.dose/fármaco conforme a fonte ↗no original (inglês)
Sciuto AM, Strickland PT, Kennedy TP, Gurtner GH. Postexposure treatment with aminophylline protects against phosgene-induced acute lung injury. Exp Lung Res. 1997 Jul-Aug;23(4):317-32. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- Phosgene is a toxic oxidant gas that causes the adult respiratory distress syndrome in exposed workers. Phosgene exposure markedly increased lung weight gain in buffer-perfused isolated rabbit lungs (31 +/- 5 g over 60 min after phosgene vs. 7.7 +/- 1.2 in control lungs, P less than 0.01) and markedly increased the lung leak index for 125I-albumin (0.28 +/- 0.03 after phosgene vs. 0.02 +/- 0.01 in control lungs, P less than 0.01). Pretreatment with dibutyryl adenosine 3',5' -cyclic monophosphate (DBcAMP), aminophylline, or terbutaline plus isoproterenol prevented the increase in lung weight caused by phosgene (31 +/- 5 g phosgene, 11.7 +/- 2.8 DBcAMP, 7.5 +/- 2.5 aminophylline, 6.1 +/- 1 terbutaline and isoproterenol, 6.1 +/- 1.2 control + aminophylline, and 7.7 +/- 1.2 control; all treatments were P less than 0.01 vs. the untreated phosgene group and not significantly different from control lungs). Pretreatment with aminophylline prevented the increase in lung leak index for 125I-albumin (0.28 +/- 0.03 after phosgene vs. 0.06 +/- 0.02 in aminophylline-treated lungs, P less than 0.01). Posttreatment with aminophylline and terbutaline also prevented the increase in lung weight caused by phosgene. These results indicate that phosgene dramatically increases the movement of fluid and protein across the pulmonary vasculature and that treatment with DBcAMP, aminophylline, terbutaline, or isoproterenol markedly reduces the pulmonary edema caused by phosgene.dose/fármaco conforme a fonte ↗no original (inglês)
Kennedy TP, Michael JR, Hoidal JR, Hasty D, Sciuto AM, Hopkins C, Lazar R, Bysani GK, Tolley E, Gurtner GH. Dibutyryl cAMP, aminophylline, and beta-adrenergic agonists protect against pulmonary edema caused by phosgene. J Appl Physiol. 1989 Dec;67(6):2542-52. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- A series of studies was performed to address treatment against the former chemical warfare edemagenic gas phosgene. Both in situ and in vivo models were used to assess the efficacy of postexposure treatment of phosgene-induced lung injury using clinically existing drugs. The degree of efficacy was judged by examining treatment effects on pulmonary edema formation (PEF) as measured by wet/dry weight (WW/DW) ratios, real-time (in situ) lung weight gain (LWG), survival rates (SR), odds ratios, and glutathione (GSH) redox states. Drugs included N-acetylcysteine (NAC), ibuprofen (IBU), aminophylline (AMIN), and isoproterenol (ISO). Using the in situ isolated perfused rabbit lung model (IPRLM), intratracheal (IT) NAC (40 mg/kg bolus) delivered 45-60 min after phosgene exposure (650 mg/m(3)) for10 min lowered pulmonary artery pressure, LWG, leukotrienes (LT) C(4)/D(4)/E(4), lipid peroxidation, and oxidized GSH. The authors concluded that NAC protected against phosgene-induced lung injury by acting as an antioxidant by maintaining protective levels of GSH, reducing both lipid peroxidation and production of arachidonic acid metabolites. Also in IPRLM, administration of AMIN (30 mg/kg) 80-90 min after phosgene exposure significantly reduced lipid peroxidation and perfusate LTC(4)/D(4)/E(4), reduced LWG, and prevented phosgene-induced decreases in lung tissue cAMP. These data suggest that protective mechanisms observed with AMIN involve decreased LTC(4)/D(4)/E(4) mediated pulmonary capillary permeability and attenuated lipid peroxidation. Direct antipermeability effects of AMIN-induced upregulation of cAMP on cellular contraction may also be important in protection against phosgene-induced lung injury. Posttreatment with ISO in the IPRLM by either combined intravascular (iv; infused into pulmonary artery at 24 microg/min infused) + IT (24 microg bolus) or IT route alone 50-60 min after phosgene exposure significantly lowered pulmonary artery pressure, tracheal pressure, and LWG. ISO treatment significantly enhanced GSH products or maintained protective levels when compared with results from phosgene-exposed only rabbits. These data suggest that protective mechanisms for ISO involve reduction in vascular pressure, decreased LTC(4)/D(4)/E(4)-mediated pulmonary capillary permeability, and favorably maintained lung tissue GSH redox states. For in vivo male mouse (CD-1, 25-30 g) studies IBU was administered ip within 20 min after a lethal dose of phosgene (32 mg/m(3) for 20 min) at 0 (saline), 3, 9, or 15 mg/mouse. Five hours later, a second IBU injection was given but at half the original doses (0, 1.5, 4.5, and 7.5 mg/mouse); therefore, these treatment groups are now referred to as the 0/0, 3/1.5, 9/4.5, and 15/7.5 mg IBU/mouse groups. SRs and odds ratios were calculated for each dose at 12 and 24 h. The 12-h survival was 63% for 9/4.5 mg IBU and 82% for the 15/7.5 mg IBU groups, compared with 25% for saline-treated phosgene-exposed mice. At 24 h, those survival rates were reduced to 19%, 19%, and 6%, respectively. In the 15/7.5 mg IBU group, lung WW/DW ratios were significantly lower than in saline-treated mice at 12 h. Lipid peroxidation was lower only for the 9/4.5 mg IBU dose; however, nonprotein sulfhydryls (a measure of GSH) were greater across all IBU doses. The odds ratio was 5 for the 9/4.5 IBU group at 12 h and 13 for the 15/7.5 mg IBU group, compared with 3.5 for both groups at 24 h. IBU posttreatment increased the survival of mice at 12 h by reducing PEF, lipid peroxidation, and GSH depletion. In conclusion, effective treatment of phosgene-induced lung injury involves early postexposure intervention that could reduce free radical species responsible for lipid peroxidation, correct the imbalance in the GSH redox state, and prevent the release of biological mediators such as leukotrienes, which are accountable for increased permeability.dose/fármaco conforme a fonte ↗no original (inglês)
Sciuto AM, Hurt HH . Therapeutic treatments of phosgene-induced lung injury. Inhalation Toxicology 2004 Jul;16(8):565-80. [PubMed Citation]no original (inglês)
Estudos em animais gestantes
This study investigated the teratogenic and fetal toxicity of i.v. theophylline and its relationship to maternal plasma levels in pregnant rabbits. From days 6-18 of gestation, each dose of theophylline (15, 30 and 60 mg/kg/day at a rate of 0.5 ml/kg/min) was administered i.v. to pregnant rabbits using an automatic infusion pump. Theophylline showed reversible toxicity: accelerated respiration, sluggish startle reactions, dilation of the auricular vessels and polyuria were observed in dams treated with 60 mg/kg/day but not in animals given 15 or 30 mg/kg/day. Fetuses from the dam group treated with 60 mg/kg/day exhibited teratogenic toxicity such as cleft palate and skeletal variation of the 13th rib. Fetal toxicity was also observed including abortion, increased number of late deaths and decreased body weight appearing on day 29 of gestation. No toxicity was observed in fetuses from the dam group treated with 15 or 30 mg/kg/day. However, in the 30 and 60 mg/kg/day theophylline-treated groups, maternal plasma concentrations (Cmax) during the treatment period were approximately 56 and 106 micrograms/ml, respectively. It is therefore suggested that the risk of teratogenic and fetal toxicity caused by theophylline is dependent on its dosage. In conclusion, caution should be taken when administering theophylline or aminophylline to pregnant individuals at doses that could result in high neonate peak blood levels.dose/fármaco conforme a fonte ↗no original (inglês)
Shibata M, Wachi M, Kawagushi M, Kohima J, Onodera K. Teratogenic and fetal toxicity following intravenous theophylline administration in pregnant rabbits is related to maternal drug plasma levels. Methods Find Exp Clin Pharmacol. 2000 Mar;22(2):101-7. [PubMed Citation]no original (inglês)
...there are no teratogenicity studies in nonrodents (e.g., rabbits). Theophylline was not shown to be teratogenic in CD-1 mice at oral doses up to 400 mg/kg, approximately 2.0 times the human dose on a mg/m 2 basis or in CD-1 rats at oral doses up to 260 mg/kg, approximately 3.0 times the recommended human dose on a mg/m 2 basis. At a dose of 220 mg/kg, embryotoxicity was observed in rats in the absence of maternal toxicity.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
4. Dados farmacocinéticos e toxicocinéticos
Adulto
Tobacco and marijuana smoking appears to increase the clearance of theophylline by induction of metabolic pathways. Theophylline clearance has been shown to increase by approximately 50% in young adult tobacco smokers and by approximately 80% in elderly tobacco smokers compared to nonsmoking subjects. Passive smoke exposure has also been shown to increase theophylline clearance by up to 50%. Abstinence from tobacco smoking for one week causes a reduction of approximately 40% in theophylline clearance. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in patients who stop smoking. Use of nicotine gum has been shown to have no effect on theophylline clearance.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Fever, regardless of its underlying cause, can decrease the clearance of theophylline. The magnitude and duration of the fever appear to be directly correlated to the degree of decrease of theophylline clearance. Precise data are lacking, but a temperature of 39°C (102°F) for at least 24 hours is probably required to produce a clinically significant increase in serum theophylline concentrations. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in patients with sustained fever.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Crianças
The clearance of theophylline is very low in neonates. Theophylline clearance reaches maximal values by one year of age, remains relatively constant until about 9 years of age and then slowly decreases by approximately 50% to adult values at about age 16. Renal excretion of unchanged theophylline in neonates amounts to about 50% of the dose, compared to about 10% in children older than three months and in adults. Careful attention to dosage selection and monitoring of serum theophylline concentrations are required in children.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Gravidez
Other factors associated with decreased theophylline clearance include the third trimester of pregnancy, sepsis with multiple organ failure, and hypothyroidism. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in patients with any of these conditions. Other factors associated with increased theophylline clearance include hyperthyroidism and cystic fibrosis.no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Idosos
The clearance of theophylline is decreased by an average of 30% in healthy elderly adults (>60 yrs.) compared to healthy young adults. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in elderly patients.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Insuficiência renal
Only a small fraction, e.g., about 10%, of the administered theophylline dose is excreted unchanged in the urine of children greater than three months of age and adults. Since little theophylline is excreted unchanged in the urine and since active metabolites of theophylline (i.e., caffeine, 3-methylxanthine) do not accumulate to clinically significant levels even in the face of end-stage renal disease, no dosage adjustment for renal insufficiency is necessary in adults and children >3 months of age. In contrast, approximately 50% of the administered theophylline dose is excreted unchanged in the urine in neonates. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in neonates with decreased renal function.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Insuficiência hepática
Theophylline clearance is decreased by 50% or more in patients with hepatic insufficiency (e.g., cirrhosis, acute hepatitis, cholestasis). Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in patients with reduced hepatic function.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Theophylline clearance is decreased by 50% or more in patients with CHF. The extent of reduction in theophylline clearance in patients with CHF appears to be directly correlated to the severity of the cardiac disease. Since theophylline clearance is independent of liver blood flow, the reduction in clearance appears to be due to impaired hepatocyte function rather than reduced perfusion. Careful attention to dose reduction and frequent monitoring of serum theophylline concentrations are required in patients with CHF.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
5. Indicações e posologia atualmente aprovadas pela FDA/EUA
Adultos
Obstrução reversível do fluxo aéreo: dose oral máxima de theophylline de 400 mg/day (equivalente a aminophylline 507 mg) na presença de fatores de risco para clearance reduzido de theophylline, ou quando não for viável monitorar a concentração sérica de theophylline. Dose inicial: 300 mg/day (equivalente a aminophylline 380 mg) divididos a cada 6 to 8 h (6 a 8 horas). Após 3 dias, se tolerado, aumentar a dose para 400 mg/day divididos a cada 6 to 8 h.dose/fármaco conforme a fonte ↗
Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1111-2no original (inglês)
Obstrução reversível do fluxo aéreo (dose de ataque): num paciente que não recebeu theophylline nas 24 hours (24 horas) anteriores, uma dose de ataque de theophylline intravenosa de 4.6 mg/kg (5.7 mg/kg como aminophylline), calculada com base no peso corporal ideal e administrada ao longo de 30 minutes (30 minutos), produzirá, em média, concentração sérica máxima pós-distribuição de 10 mcg/mL, com faixa de 6-16 mcg/mL. Quando uma dose de ataque se torna necessária em paciente que já recebeu theophylline, a estimativa da concentração sérica com base na história é pouco confiável, e uma dosagem sérica imediatadose/fármaco conforme a fonte ↗
A serum concentration obtained 30 minutes after an intravenous loading dose, when distribution is complete, can be used to assess the need for and size of subsequent loading doses, if clinically indicated, and for guidance of continuing therapy. Once a serum concentration of 10 to 15 mcg/mL has been achieved with the use of a loading dose(s), a constant intravenous infusion is started. The rate of administration is based upon mean pharmacokinetic parameters for the population and calculated to achieve a target serum concentration of 10 mcg/mLdose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Reversible airflow obstruction (dosage adjustment): theophylline has a low therapeutic index; therefore, cautious dosage determination is essential. Because individuals metabolize theophylline at different rates, appropriate dosages must be determined for each patient by carefully monitoring patient response and tolerance, pulmonary function, and serum theophylline concentrations. Dosages required to achieve a therapeutic serum theophylline concentration vary fourfold among otherwise similar patients in the absence of factors known to alter theophylline clearance. Although extended-release preparations have been formulated to release the drug at various rates suitable for dosing every 8-12, 12, or 24 hours, the actual dosing frequency for a given patient and preparation depends on the patient's individual pharmacokinetic parameters. Dosage should be calculated on the basis of lean body weight.dose/fármaco conforme a fonte ↗no original (inglês)
Reversible airflow obstruction (maintenance therapy): serum theophylline concentrations should be obtained after a patient has received a given dosage for 3 days. Peak serum concentrations can be estimated by obtaining blood samples 30 minutes after administration of an IV loading dose, 1-2 hours after administration of an oral solution or uncoated tablet, or 3-12 (usually 3-8) hours (depending on the specific formulation) after administration of an extended-release preparation. Trough concentrations of theophylline can be determined by taking blood samples just before the next dose. When the recommended maximum dosage is exceeded, dosage adjustment should be based on measurement of peak serum theophylline concentrations. For dosage adjustments based on serum theophylline concentrations determined in such circumstances, it is important that dosage in the previous 48 hours be reasonably typical of the prescribed regimen and that the patient not have missed a dose nor taken an additional dose in this time period. Dosage adjustments based on serum theophylline concentrations when these conditions have not been fulfilled may result in dosages that present risk of toxicity to the patient. Therapeutic serum concentrations for bronchospastic disease generally range from 5-15 mcg/mL at steady state. When serum theophylline concentrations exceed 20 mcg/mL, toxicity often becomes apparent.dose/fármaco conforme a fonte ↗no original (inglês)
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
Crianças (FDA)
Obstrução reversível do fluxo aéreo: dose máxima de theophylline oral em crianças de 1 a 15 years (1 a 15 anos) de idade é de 16 mg/kg/day (equivalente a aminophylline 20.3 mg), até o máximo de 400 mg/day (equivalente a aminophylline 507 mg), na presença de fatores de risco para clearance reduzido de theophylline, ou quando não for viável monitorar as concentrações séricas de theophylline.dose/fármaco conforme a fonte ↗
Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1111-2no original (inglês)
Gravidez (FDA)
Categoria C: não há estudos adequados e bem controlados em gestantes.
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Lactantes (FDA)
A theophylline é excretada no leite materno e pode causar irritabilidade ou outros sinais de toxicidade leve em lactentes humanos amamentados.
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Idosos (FDA)
A dose diária máxima de theophylline em pacientes acima de 60 years (60 anos) de idade normalmente não deve exceder 400 mg/day, a menos que o paciente continue sintomático e a concentração sérica de pico no estado de equilíbrio seja menor que 10 mcg/mL.dose/fármaco conforme a fonte ↗
Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1111-2no original (inglês)
Obesidade (FDA)
A theophylline se distribui mal na gordura corporal; portanto, as doses em mg por kg devem ser calculadas com base no peso corporal ideal.
Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1111-2no original (inglês)
Autorização de uso emergencial (FDA/CDC)
Nenhuma Autorização de Uso Emergencial para a Aminophylline foi emitida pela Food and Drug Administration sob a seção 564 do Federal Food, Drug and Cosmetic Act (FD&C Act) (21 U.S.C. 360bbb-3), alterado pelo Project Bioshield Act of 2004 (Public Law 108-276).dose/fármaco conforme a fonte ↗
DHHS/FDA; Emergency Preparedness and Response - Counterterrorism and Emerging Threats (01/12/2011)
6. Formulações disponíveis atualmente / prazo de validade
Formulação
Aminophylline (hidratada)dose/fármaco conforme a fonte ↗
Comprimidos orais 100 mg (78.9 mg de theophylline anidra)*; 200 mg (157.8 mg de theophylline anidra)* — nome genérico: Aminophylline Tabletsdose/fármaco conforme a fonte ↗
Injeção parenteral 25 mg (19.7 mg de theophylline anidra) por mL* — nome genérico: Aminophylline Injectiondose/fármaco conforme a fonte ↗
Aminophylline (anidra)dose/fármaco conforme a fonte ↗
Solução oral 105 mg (90 mg de theophylline anidra) por 5 mL*; nome genérico: Aminophylline Oral Solutiondose/fármaco conforme a fonte ↗
* disponível de um ou mais fabricantes, distribuidores e/ou reembaladores pelo nome genérico (não proprietário)
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
Prazo de validade
Prazo de validade
Fechado: 3 years (36 months) — 3 anos (36 meses)dose/fármaco conforme a fonte ↗
eMC. Mercury Pharma Group. Aminophylline injection. Last Updated: March 2009dose/fármaco conforme a fonte ↗no original (inglês)
Estabilidade
- The authors reported the stability of aminophylline solution 5mg per mL prepared by diluting the injection (Abbott Laboratories) with bacteriostatic water for injection containing 0.9% benzyl alcohol. Solutions were chemically stable for at least 90 days at 4°C and 22°C packed in plastic syringes. Bateriostatic water for injections is not available in many countries and many pediatricians would consider the use of even small amounts of benzyl alcohol undesirable. The injection can be diluted with plain water for injections and packed aseptically into plastic oral syringes. Solutions should be chemically stable for at least 30 days, but the expiry date assigned will depend on microbiological validation of the process. These solutions should be refrigerated. The solutions should be protected from light and packed in airtight containers. Exposure to air can cause the breakdown of theophylline/ethylenediamine complex causing a cloudy appearance. The effect of diluting other brands of aminophylline injection may need validation. All diluted aminophylline preparations should be periodically checked for signs of precipitation.dose/fármaco conforme a fonte ↗no original (inglês)
Nahata MC, Morosco RS, Hipple TF. Stability of aminophylline in bacteriostatic water for injection stored in plastic syringes at two temperatures. Am. J. Hosp. Pharm. 1992 Dec;49:2962-3. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- The authors evaluated the stability of 3mg/mL and 21mg/mL oral liquids prepared by diluting the commercially available injection (25mg/mL) in a 1:1 mixture of Ora Sweet:Ora Plus. The 3mg/mL liquid was chemically and physically stable for up to 90 days at 4 and 25°C. The 21mg/mL liquid was also stable for 90 days at 25°C but failed to maintain 90% of initial concentration when stored at 4°C.dose/fármaco conforme a fonte ↗no original (inglês)
Chong E, Dumont R.J., Hamilton D.P., Koke P.M., Ensom MHH. Stability of aminophylline in extemporaneously-prepared oral suspensions. J. Inform. Pharmacother. 2000;2:100-6.dose/fármaco conforme a fonte ↗no original (inglês)
- The stability of aminophyline was studied in the presence of four tablet excipients (cellulose starch, glucose and lactose) and nine intravenous fluids (water for injection, dextrose. 10% normal saline, dextrose normal saline 5%, Ringer lactate, Ringer, aminoplasmal 5%, lipofundin 10%, total parenteral nutrition solution TPNS). Ten percent mixtures of the powder drug with the excipients were kept at 5 degrees C, room temperature (27+/-3 degrees C), 45 degrees C and in direct sunlight for 30 days. The degradation of the drug increases with increase in temperature and on exposure to sunlight. The degradation is particularly intense in the presence of glucose and lactose and change in color from white to yellow occurs in such mixtures. At 45 degrees C and in sunlight both pure drug and its mixtures change color during the storage period. In intravenous fluids, the drug (1 g/L) is stable and physically compatible for 2 days at 5 degrees C, 27+/-3 degrees C and 45 degrees C except in lipofundin 10% and TPNS where the drug is stable for only 12 hours at 45 degrees C. Yellow tinge appears in the admixtures containing dextrose after 2 days at room temperature and at 45 degrees C.dose/fármaco conforme a fonte ↗no original (inglês)
Riaz M, Ami KH. Stability of aminophylline. Pak J Pharm Sci. 1993 Jan;6(1):35-44. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- Aminophylline stability (dose 0.5 and 0.75 g) was estimated in typical AIO nutrient admixtures [Salviamin 12.5% 1000.0 cm3; Glucose 500 g; Intralipid 20% 500.0 cm3; Soluvit N; Vitalipid N Adult; Addamel N; total volume 3000.0 cm3] prepared in DIMIX bags [Diffuplast srl, Italy]. The pH, particle size distribution [Coulter Counter ZM] and theophylline concentration [Spectrophotometer Pye Unicam] were measured immediately after preparation and after 24, 48, 72 hours of storage in low temperature and then after 24 hours in room temperature. Aminophylline proved to be stable in above mentioned doses and now is commonly added into AIO in practice.dose/fármaco conforme a fonte ↗no original (inglês)
Ciszewska-Jedrasik M, Knyt A, Pertkiewicz M. Aminophylline stability in total parenteral nutrition admixtures. Acta Pol Pharm. 1995 Nov-Dec;52(6):487-90. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
SLEP (DOD/FDA)
Armazenamento
Proteger da luz. Guardar abaixo de 25°C.
eMC. Mercury Pharma Group. Aminophylline injection. Last Updated: March 2009dose/fármaco conforme a fonte ↗no original (inglês)
7. Utilização e posologia off-label atuais
Adulto
- This study is to evaluate the effects of aminophylline on systemic inflammatory response after cardiopulmonary bypass in patients undergoing valve replacement. Thirty patients undergoing elective valve replacement were randomized to receive either aminophylline treatment (aminophylline, n = 15) or no aminophylline (control, n = 15). Administration of aminophylline (5 mg/kg) was injected intravenously after induction of anesthesia and maintained with 0.5 mg/kg per h until the end of cardiopulmonary bypass. Perioperative cytokines (interleukin-8 and interleukin-10, tumor necrosis factor-alpha) and respiratory function, blood neutrophil count ratio of right atrium to that of left atrium, plasma malondialdehyde were measured during the experiment. Interleukin-8 and tumor necrosis factor-alpha levels after cardiopulmonary bypass were significantly lower in the aminophylline group than that in the control group (P < 0.05, for each group), and interleukin-10 level in aminophylline group was significantly higher than in control (P = 0.001). The respiratory index was greater in the control than in aminophylline group (P < 0.05). Neutrophil count ratio of right atrium blood to left atrium blood and plasma malondialdehyde level in aminophylline group were much lower (P = 0.02 and 0.001, respectively) than in the control 30 min after aortic declamping. Compared with control group, the duration of ventilation and intensive care unit stays were shorter in aminophylline group (P = 0.032 and 0.013, respectively). Intraoperative administration of aminophylline had anti-inflammatory effect and improved pulmonary oxygenation in patients undergoing valve replacement.dose/fármaco conforme a fonte ↗no original (inglês)
Luo WJ, Ling Z, Huang RM. Effects of aminophylline on cytokines and pulmonary function in patients undergoing valve replacement. Eur J Cardiothorac Surg. 2004 May;25(5):766-71. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- This study investigated whether aminophylline has an acute effect on the muscle performance of patients with amyotrophic lateral sclerosis (ALS). The study was a randomized, double-blind, crossover against placebo. Twenty-five patients (48.5 +/- 14.1 years) with ALS were evaluated by means of forced vital capacity (FVC), maximal mouth inspiratory and expiratory pressures (P(Imax)/P(Emax)) and endurance, maximum voluntary ventilation (MVV) and handgrip strength (HS); variables were measured before and after the patients received an intravenous infusion of aminophylline or placebo. MVV (P<0.02) and HS of the right and left hands (P=0.05) increased after aminophylline infusion. There was a positive correlation between FVC and P(Imax) (r=0.80; P<0.05); between MVV and P(Imax) post-aminophylline, respectively (r=0.77; P<0.05). Serum aminophylline levels ranged from 5.3 to 10.5 microg/mL (mean 7.30). The acute administration of aminophylline improves the endurance of respiratory muscles and increases handgrip strength in patients with ALS.dose/fármaco conforme a fonte ↗no original (inglês)
Berto MC, Filha SC, Camelier A, Rosa FW, de Souza Bulle Oliveira A, Jardim JR. Acute action of aminophylline in patients with amyotrophic lateral sclerosis. Acta Neurol Scand. 2007 May;115(5):301-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
- Theophylline has been shown to have beneficial effects on phrenic nerve and diaphragm activation. This case report involves a C5-C6 chronic tetraplegic patient with acute respiratory failure and ventilator dependence. IV aminophylline was administered in increasing doses (2 mg/kg, 4 mg/kg, and 6 mg/kg) over the course of 1 day. Diaphragm surface electromyography (sEMG), measures of respiration (tidal volume, minute ventilation, and frequency), and serum theophylline levels were captured. Diaphragm sEMG activity increased by a maximum of 50% at therapeutic levels. The rapid shallow breathing index dropped from 112 to 86. The subject was successfully weaned from ventilatory support. The authors conclude that administration of aminophylline facilitated weaning from ventilatory support in this tetraplegic patient.dose/fármaco conforme a fonte ↗no original (inglês)
Bascom AT, Lattin CD, Aboussouan LS, Goshgarian HG. Effect of acute aminophylline administration on diaphragm function in high cervical tetraplegia: a case report. Chest. 2005 Feb;127(2):658-61. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
8. Via de administração / monitorização
Injeção intravenosa, ou administração oral
For maintenance therapy, serum theophylline concentrations should be obtained after a patient has received a given dosage for 3 days. Peak serum concentrations can be estimated by obtaining blood samples 30 minutes after administration of an IV loading dose, 1-2 hours after administration of an oral solution or uncoated tablet, or 3-12 (usually 3-8) hours (depending on the specific formulation) after administration of an extended-release preparation. Trough concentrations of theophylline can be determined by taking blood samples just before the next dose. When the recommended maximum dosage is exceeded, dosage adjustment should be based on measurement of peak serum theophylline concentrations. For dosage adjustments based on serum theophylline concentrations determined in such circumstances, it is important that dosage in the previous 48 hours be reasonably typical of the prescribed regimen and that the patient not have missed a dose nor taken an additional dose in this time period. Dosage adjustments based on serum theophylline concentrations when these conditions have not been fulfilled may result in dosages that present risk of toxicity to the patient . Therapeutic serum concentrations for bronchospastic disease generally range from 5-15 mcg/mL at steady state. When serum theophylline concentrations exceed 20 mcg/mL, toxicity often becomes apparent.dose/fármaco conforme a fonte ↗no original (inglês)
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
Aminophylline is a 2:1 complex of theophylline and ethylenediamine.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
9. Efeitos adversos
- Reações de hipersensibilidade caracterizadas por urticária, prurido generalizado e angioedema já foram relatadas com a administração de aminophylline.dose/fármaco conforme a fonte ↗
- Também já foi relatada dermatite de contato causada por hipersensibilidade ao componente etilenodiamina da aminophylline.dose/fármaco conforme a fonte ↗
- A injeção IV rápida de aminophylline pode produzir tontura, sensação de desmaio, palpitação, síncope, dor precordial, rubor, bradicardia profunda, extrassístoles ventriculares (VPCs, PVCs), hipotensão grave ou parada cardíaca. A injeção IM de aminophylline produz dor local intensa e descolamento tecidual.dose/fármaco conforme a fonte ↗
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
- Produtos contendo aminophylline podem, raramente, produzir reações alérgicas graves da pele, incluindo dermatite esfoliativa, após administração sistêmica em paciente previamente sensibilizado por aplicação tópica de substância contendo etilenodiamina.dose/fármaco conforme a fonte ↗
- Nesses pacientes, os testes de contato são positivos para etilenodiamina, componente da aminophylline, e negativos para theophylline. Farmacêuticos e outras pessoas que sofrem exposição cutânea repetida ao manipular fisicamente a aminophylline podem desenvolver dermatite de contato pelo componente etilenodiamina.dose/fármaco conforme a fonte ↗
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
- Fatalities in adults have generally occurred during or following IV administration of large doses of aminophylline in patients with renal, hepatic, or cardiovascular complications. In other patients, the rapidity of the injection, rather than the dose used, appears to be the more important factor precipitating acute hypotension, seizures, coma, cardiac standstill, ventricular fibrillation, and death. IV aminophylline or theophylline should therefore be given slowly. In children, fatalities usually are a result of over dosage and marked sensitivity to the CNS stimulation of theophylline.dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
10. Contraindicação(ões)
- Quando doses terapêuticas de theophylline são administradas simultaneamente por mais de uma via ou em mais de uma preparação, o risco de toxicidade grave aumenta; as teofilinas não devem ser administradas concomitantemente a outros fármacos xantínicos.
- Theophyllines are contraindicated in patients who are allergic to any of the theophyllines, caffeine, or theobromine; aminophylline should not be used in patients hypersensitive to ethylenediamine. At least one manufacturer states that theophyllines also are contraindicated in patients with active peptic ulcer disease and in those with underlying seizure disorders, unless the latter patients are receiving adequate anticonvulsant therapy.dose/fármaco conforme a fonte ↗no original (inglês)
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
11. Estudos clínicos em andamento
- Nenhum dado disponível no momento
12. Estudos não clínicos em andamento
Genômica funcional da lesão pulmonar aguda induzida quimicamente
Chemical-induced acute lung injury (CIALI) can result from numerous chemical threats that avail themselves to terrorist attacks. Therapies are needed to treat the acute effects and pathologies that are common to several chemical threat agents. Despite intensive effort, much remains to be understood regarding pathological events linking Inhalation exposures to delayed pulmonary edema, respiratory failure, and ultimately death. In past funding period the investigators developed and validated mouse models of acute lung injury to 5 common chemicals (acrolein, ammonia, chlorine, phosgene, and sulfuric acid). Using a functional genomics approach, 40 mouse strains were used to identify candidate genes associated with survival time following exposure. Investigators combined the results to build a protein interaction network (interactome). Within this network, a cell signaling hub (i.e. a protein with several protein-protein interactions) was uncovered that implicated v- AKT1 thymoma viral oncogene homolog 1 (AKT1). When phosphorylated, AKT1 enhances survival by inactivating components of the cell death machinery. Although undesirable in cancer, the authors reasoned that short-term, reversible enhancement of the cell survival AKT1 activity could be beneficial in CIALI treatment. The authors subsequently found that inhibition of phosphatase and tensin homolog deleted on chromosome 10 (PTEN), a phosphatase that limits AKT1 activity, enhances epithelial repair in vitro and protect against CIALI in vivo. Hypothesis: Inhibition of PTEN activity will impart resistance to CIALI by activating signaling events that promote cell survival. Approach: Using a high content screening method, lead compounds [including a PTEN inhibitor] will be administered in vitro to test reverse of lethality in target cells. Lead compounds will be tested in mouse models of lethality from CIALI with 5 chemicals. Overall Objective: To develop a therapy that improves survival during lung injury induced by multiple chemicals. Public Health Relevance: Acute lung injury can result from numerous chemical threats that avail themselves to terrorist attacks. Current therapy remains limited to supportive care with no approved therapeutic for post insult treatment. The overall objective is to develop a therapy that will improve survival during acute lung injury induced by more than one chemical.no original (inglês)
RePORTER. NIH Functional genomics of chemical-induced acute lung injuryno original (inglês)
Targeting injury pathways to counteract pulmonary agent and vesicant toxicityno original (inglês)
Chlorine (CI2), phosgene, vesicants and electrophilic reactive chemicals (industrial and riot control agents) are considered among the most imminent chemical threats to be diverted for terrorism attacks, or released during accidents. In the last four years research in the Jordt laboratory has identified TRPA1, a Transient Receptor Potential ion channel expressed in sensory neurons, as the major neuronal target of chlorine, riot control agents and industrial chemicals such as acrolein and isocyanates. Post-exposure treatment of chlorine-exposed mice with a TRPA1 antagonist strongly reduced lung inflammation and injury parameters. The same TRPA1 antagonist increased survival rates of phosgene-exposed mice, and also inhibited vesicant injury induced by the sulfur mustard analog, CEES. In the laboratory's recent work the authors identified TRPV4, an ion channel expressed in the lung epithelium and vasculature, as an additional mediator of oxidant-induced pulmonary injury. Activation of TRPV4 leads to severe lung injury and cardiovascular depression, and the investigators show that a TRPV4 antagonist inhibits ozone induced oxidative lung edema. TRPV3, a TRP ion channel in keratinocytes, is a candidate mediator of cutaneous injury by vesicants and corrosive electrophiles. TRP channel, through influx of calcium, activate p38 MAP kinase, a major transducer and activator of inflammation and cell death in injured tissue. In summary, the investigators hypothesize that TRP channels are major targets of chemical warfare agents, mediating local and systemic injury and inflammation through neuronal and local cellular signaling. In this proposal we aim to 1: Develop advanced intramuscular formulations of TRPA1 antagonists for immediate and sustained release to counteract chlorine and vesicant injury, 2: Examine the role of pulmonary and cutaneous TRP ion channels in chemical injury, and 3: Investigate the effects of a p38 kinase antagonist in pulmonary and cutaneous chemical injury. Public Health Relevance: Our research is aimed to further develop treatments for lung and skin injury by chemical warfare agents and industrial chemicals that can be diverted for terrorism attacks. We identified a new group of drugs that we found to effectively diminish injury by chlorine gas and skin blistering agents. The goal of this proposal is to improve these drugs and investigate how they counteract injury.no original (inglês)
RePORTER. NIH. Targeting injury pathways to counteract pulmonary agent and vesicant toxicityno original (inglês)
13. Estudos necessários para a indicação clínica de defesa química
- A better understanding of the mechanisms of injury both during and after exposure to phosgene, including the genetic, molecular and biochemical changes occurring in cells and tissues, is needed.no original (inglês)
- A non-human primate model for phosgene inhalation mimicking the real-time conditions expected in a mass exposure incident is needed.no original (inglês)
- Licensed drugs that can be used in the prevention or treatment of chemically induced pulmonary edema should be identified.no original (inglês)
- Drugs that can limit the inflammatory cascade of events produced by phosgene and other choking agents should be developed .no original (inglês)
Summary of the NIAID Expert Panel Review on Medical Chemical Defense Research , March 19, 2003, Bethesda, MD (NIH/NIAID)no original (inglês)
14. Estudos necessários para indicações clínicas fora da defesa química
- A better understanding of the mechanisms of injury both during and after exposure to phosgene, including the genetic, molecular and biochemical changes occurring in cells and tissues, is needed.no original (inglês)
- A non-human primate model for phosgene inhalation mimicking the real-time conditions expected in a mass exposure incident is needed.no original (inglês)
- Licensed drugs that can be used in the prevention or treatment of chemically induced pulmonary edema should be identified.no original (inglês)
- Drugs that can limit the inflammatory cascade of events produced by phosgene and other choking agents should be developed .no original (inglês)
Summary of the NIAID Expert Panel Review on Medical Chemical Defense Research , March 19, 2003, Bethesda, MD (NIH/NIAID)no original (inglês)
- Needed studies for nonbiodefense clinical indications: Bronchiolitis; animal studies of standardized exposure; systematic data collection in the event of a disaster; use of a systematic treatment approachno original (inglês)
- Primate studies Will produce more information on ventilationno original (inglês)
- Will produce more information on respiratory failureno original (inglês)
- Will permit exploration of 3-chlorotyrosineno original (inglês)
- Prospective, acute human studiesno original (inglês)
Biodefense Meeting. Best Pharmaceuticals for Children Act. Eunice Kennedy Shriver National Institute of Child Health and Human Development , September 8-9, 2008, Rockville, MD (NICHD)no original (inglês)
15. Questões éticas relacionadas aos estudos
- Informed consent for data collection in disaster/mass casualty situationno original (inglês)
- Central institutional review boards (IRBs)no original (inglês)
- How to conduct multicenter studies Poison centersno original (inglês)
- Pediatric Emergency Care Applied Research Networkno original (inglês)
- Hospital consortia.no original (inglês)
Biodefense Meeting. Best Pharmaceuticals for Children Act. Eunice Kennedy Shriver National Institute of Child Health and Human Development , September 8-9, 2008, Rockville, MD (NICHD)no original (inglês)
16. Situação regulatória global
EUA
AMINOPHYLLINE (aminophylline di-hidratada) injeção, solução:dose/fármaco conforme a fonte ↗
A theophylline intravenosa é indicada como adjuvante dos agonistas beta-2 seletivos inalados e dos corticosteroides administrados por via sistêmica, para o tratamento das exacerbações agudas dos sintomas e da obstrução reversível do fluxo aéreo associadas à asma e a outras doenças pulmonares crônicas, por exemplo, enfisema e bronquite crônica.
A aminophylline é um complexo 2:1 de theophylline e etilenodiamina.dose/fármaco conforme a fonte ↗
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
AMINOPHYLLINE (aminophylline di-hidratada) comprimidodose/fármaco conforme a fonte ↗
A theophylline é indicada para o tratamento dos sintomas e da obstrução reversível do fluxo aéreo associados à asma crônica e a outras doenças pulmonares crônicas, por exemplo, enfisema e bronquite crônica.
Product label: AMINOPHYLLINE (aminophylline dehydrate) tablet. [West-ward Pharmaceutical Corp] Last revised March 2012 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Reino Unido
- Obstrução reversível das vias aéreas, asma aguda grave.
Martin J, et al., eds. British National Formulary, No. 58. London, UK: BMJ Group, RPS Publishing, 2009 p. 161no original (inglês)
17. Outras informações potencialmente úteis
- 1 g dissolve-se em cerca de 5 mL de água; insolúvel em álcool e éterdose/fármaco conforme a fonte ↗
HSDB. Aminophyllinedose/fármaco conforme a fonte ↗no original (inglês)
- Coeficiente de partição octanol/água: log Kow= - 0.02
HSDB. Theophyllineno original (inglês)
18. Publicações
Bascom AT, Lattin CD, Aboussouan LS, Goshgarian HG. Effect of acute aminophylline administration on diaphragm function in high cervical tetraplegia: a case report. Chest. 2005 Feb;127(2):658-61. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Berto MC, Filha SC, Camelier A, Rosa FW, de Souza Bulle Oliveira A, Jardim JR. Acute action of aminophylline in patients with amyotrophic lateral sclerosis. Acta Neurol Scand. 2007 May;115(5):301-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Biodefense Meeting. Best Pharmaceuticals for Children Act. Eunice Kennedy Shriver National Institute of Child Health and Human Development , September 8-9, 2008, Rockville, MD (NICHD)no original (inglês)
Borak J, Diller WF ; Phosgene exposure: mechanisms of injury and treatment strategies. Occup Environ Med. 2001 Feb;43(2):110-9. [PubMed Citation]no original (inglês)
Chong E, Dumont R.J., Hamilton D.P., Koke P.M., Ensom MHH. Stability of aminophylline in extemporaneously-prepared oral suspensions. J. Inform. Pharmacother. 2000;2:100-6.dose/fármaco conforme a fonte ↗no original (inglês)
Ciszewska-Jedrasik M, Knyt A, Pertkiewicz M. Aminophylline stability in total parenteral nutrition admixtures. Acta Pol Pharm. 1995 Nov-Dec;52(6):487-90. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
DHHS/FDA; Emergency Preparedness and Response- Counterterrorism and Emerging Threats (12/01/2011)no original (inglês)
eMC. Mercury Pharma Group. Aminophylline injection. Last Updated: March 2009dose/fármaco conforme a fonte ↗no original (inglês)
HSDB. Aminophyllinedose/fármaco conforme a fonte ↗no original (inglês)
HSDB. Theophyllineno original (inglês)
Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1111-2no original (inglês)
Kennedy TP, Michael JR, Hoidal JR, Hasty D, Sciuto AM, Hopkins C, Lazar R, Bysani GK, Tolley E, Gurtner GH. Dibutyryl cAMP, aminophylline, and beta-adrenergic agonists protect against pulmonary edema caused by phosgene. J Appl Physiol. 1989 Dec;67(6):2542-52. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Luo WJ, Ling Z, Huang RM. Effects of aminophylline on cytokines and pulmonary function in patients undergoing valve replacement. Eur J Cardiothorac Surg. 2004 May;25(5):766-71. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Martin J, et al., eds. British National Formulary, No. 58. London, UK: BMJ Group, RPS Publishing, 2009 p. 161no original (inglês)
McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p. 3605-11no original (inglês)
Nahata MC, Morosco RS, Hipple TF. Stability of aminophylline in bacteriostatic water for injection stored in plastic syringes at two temperatures. Am. J. Hosp. Pharm. 1992 Dec;49:2962-3. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) injection solution. [Hospira, Inc.] Last revised: June 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
Product label: AMINOPHYLLINE (aminophylline dehydrate) tablet. [West-ward Pharmaceutical Corp] Last revised March 2012 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)
RePORTER. NIH Functional genomics of chemical-induced acute lung injuryno original (inglês)
RePORTER. NIH. Targeting injury pathways to counteract pulmonary agent and vesicant toxicityno original (inglês)
Riaz M, Ami KH. Stability of aminophylline. Pak J Pharm Sci. 1993 Jan;6(1):35-44. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Sciuto AM, Hurt HH . Therapeutic treatments of phosgene-induced lung injury. Inhalation Toxicology 2004 Jul;16(8):565-80. [PubMed Citation]no original (inglês)
Sciuto AM, Strickland PT, Kennedy TP, Gurtner GH. Postexposure treatment with aminophylline protects against phosgene-induced acute lung injury. Exp Lung Res. 1997 Jul-Aug;23(4):317-32. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)
Summary of the NIAID Expert Panel Review on Medical Chemical Defense Research , March 19, 2003, Bethesda, MD (NIH/NIAID)no original (inglês)
19. Sites
NIH CounterACT Program (HHS/NIH)no original (inglês)
NIH RePORTER (HHS/NIH)no original (inglês)
ClinicalTrials.gov (HHS/NIH)no original (inglês)
PubMed (HHS/NIH)no original (inglês)
DailyMed (HHS/NIH)no original (inglês)
Record last updated 1/2/2013no original (inglês)