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Tradução referenciada das diretrizes públicas do CHEMM (Chemical Hazards Emergency Medical Management, HHS/ASPR — governo dos EUA). Não é diagnóstico nem prescrição deste portal; doses e nomes de fármacos permanecem como na fonte original, com o link ao lado — confira sempre no original antes de qualquer conduta. As recomendações da fonte não se destinam a uso médico-legal.

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Traduzido de N-Acetylcysteine - Medical Countermeasures Database (CHEMM, HHS/ASPR — domínio público), fonte capturada em 2026-08-25. Em caso de dúvida, vale o original.

N-Acetylcysteine (N-acetilcisteína) — banco de contramedidas médicas

1. Nome do agente terapêutico/dispositivo de defesa química

N-Acetylcysteinedose/fármaco conforme a fonte ↗

2. Área(s) terapêutica(s) de defesa química

Tratamento da lesão pulmonar e da toxicidade respiratória induzidas quimicamente, incluindo exposição a agentes nervosos, gás mostarda sulfurada, cloro e fosgênio.

3. Medicina baseada em evidência para defesa química

A. Resumo

Estrutura

HSDB. N-acetylcysteinedose/fármaco conforme a fonte ↗no original (inglês)

Mecanismo de ação

Atkinson MC. The use of N-acetylcysteine in intensive care. Crit Care Resusc. 2002 Mar;4(1):21-7. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Yadav AK, Bracher A, Doran SF, Leustik M, Squadrito GL, Postlethwait EM, Matalon S. Mechanisms and modification of chlorine-induced lung injury in animals. Proc Am Thorac Soc. 2010;7:278-83. [PubMed Citation]no original (inglês)

McClintock SD, Till GO, Smith MG, Ward PA. Protection from half-mustard-gas-induced acute lung injury in the rat. J Appl Toxicol. 2002 Jul-Aug;22(4):257-62. [PubMed Citation]no original (inglês)

Moradi M, Mojtahedzadeh M, Mandegari A, Soltan-Sharifi MS, Najafi A, Khajavi MR, Hajibabayee M, Ghahremani MH. The role of glutathione-S-transferase polymorphisms on clinical outcome of ALI/ARDS patient treated with N-acetylcysteine. Respir Med. 2009 Mar;103(3):434-441. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Aruoma OI, Halliwell B, Hoey BM, Butler J. The antioxidant action of N-acetylcysteine: its reaction with hydrogen peroxide, hydroxyl radical, superoxide, and hypochlorous acid. Free Radic Biol Med. 1989;6(6):593-597. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Kao SJ, Wang D, Lin HI, Chen HI. (2006). N-acetylcysteine abrogates acute lung injury induced by endotoxin. Clin Exp Pharmacol Physiol. 2006;33:33-40. [PubMed]dose/fármaco conforme a fonte ↗no original (inglês)

Lee KS, Kim SR, Park HS, Park SJ, Min KH, Lee KY, Choe YH, Hong SH, Han HJ, Lee YR, Kim JS, Atlas D, Lee YC. (2007). A novel thiol compound, N-acetylcysteine amide, attenuates allergic airway disease by regulating activation of NF-kappaB and hypoxia-inducible factor-1alpha. Exp Mol Med. 2007 Dec;39(6):756-768. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Ji L, Liu R, Zhang XD, Chen HL, Bai H, Wang X, Zhao HL, Liang X, Hai CX. N-acetylcysteine attenuates phosgene-induced acute lung injury via up-regulation of Nrf2 expression. Inhal Toxicol. 2010 Jun;22(7):535-42. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Resumo dos estudos clínicos e não clínicos

Exposure to chemical warfare agents (CWAs) may result in oxidative stress and subsequent acute lung injury and respiratory toxicity. Evidence from several animal studies demonstrates the safe and effective use of antioxidants such as N-acetylcysteine (NAC), a thiol compound and precursor of glutathione (GSH), to overcome CWA-induced oxidative stress and associated acute lung injuries. In the isolated perfused rabbit lung model (IPRLM), intratracheal NAC (40 mg/kg for 10 minutes) was administered 45 minutes to 60 minutes after phosgene exposure (650 mg/m 3 ) (Sciuto and Hurt, 2004). Pulmonary artery pressure, lung weight gain, pulmonary edema formation, leukotriene (C 4 , D 4 , and E 4 ) concentration, lipid peroxidation, and oxidized GSH, which were increased following phosgene exposure, were decreased in the NAC-treated group compared with the untreated group (Sciuto et al., 1995; Sciuto and Hurt, 2004). It appears that the antioxidant properties of NAC maintained GSH levels and reduced both peroxidation of lipids and synthesis of arachidonic acid metabolites. However, NAC administration was not effective in blocking the phosgene-induced increase in tracheal pressure. In another study, phosgene-exposed animals (500 ppm for 1 minute) received saline (positive control), a low (50 mg/kg), moderate (100 mg/kg), or high (200 mg/kg) dose of NAC, or were exposed to phosgene and untreated (control) (Ji et al., 2010). Intraperitoneal (IP) administration of NAC caused a significant dose-dependent decrease in lung wet to dry weight ratio, which increased 3 hours after phosgene exposure. A significant decrease in oxidative stress markers was also observed after NAC administration at moderate and high doses. NAC was also able to significantly restore lung superoxide dismutase (SOD) and catalase (CAT) levels, which decreased 3 hours after phosgene exposure. The protective efficacy of NAC and other potential pulmonary therapeutics (surfactant, liquivent, dexamethasone, and anti-sense syk oligonucleotides) was evaluated in a nerve agent-exposed animal model (Nambiar et al., 2007). Guinea pigs exposed to VX (27.03 mg/m 3 ) for 4 minutes had a 24-hour survival rate of 52% (10 of 19 guinea pigs) and a significant increase in bronchoalveolar lavage (BAL) protein, total cell number, and cell death. Treatment with NAC (75 mg/kg) 2 minutes after exposure to VX yielded the highest survival rate (75%, 3 of 4 guinea pigs) of all pulmonary therapeutics tested, but the increase in survival rate was only moderate. The protective efficacy of NAC (and the other pulmonary therapeutics) was significantly enhanced by the addition of atropine, likely due to inhibition of VX-induced mucous secretion; there was 100% survival of VX-exposed animals treated with all pulmonary agents tested plus atropine, except in the case of anti-sense syk (83% survival rate). The combination regimen also decreased BAL protein levels, total cell number, and cell death. Prophylactic NAC administration (5-40 mg/kg) demonstrated a protective efficacy as high as 70% (20 mg/kg dose) in rats with half mustard gas (HMG)-induced lung injuries (McClintock et al., 2002). Even when NAC treatment was delayed for as much as 90 minutes in HMG-exposed animals, a protective efficacy of 54% was observed. Protection after delayed treatment was not observed with any of the other tested antioxidants (catalase, dimethyl sulfoxide, dimethyl thiourea, and resveratrol). Prophylactic treatment with a mixture of NAC, ascorbate, and deferoxamine (150 mg/kg, 200 mg/kg, and 15 mg/kg, respectively; IP) in animals with chlorine-induced lung injury stabilized both ascorbate levels and arterial blood gas values, as well as decreased BAL fluid albumin levels (Leustik et al., 2008). A 30-minute chlorine gas challenge (184 ppm or 400 ppm) significantly induced hypoxemia and hypercapnia, increased BAL fluid protein concentration, and significantly decreased BAL fluid ascorbate levels in a rat model (Yadav et al., 2010). The aforementioned antioxidant mixture, but with a lower dose of ascorbate (80 mg/kg), was administered 18 hours intramuscularly and 1 hour intravenously before chlorine exposure to chlorine-challenged animals. The partial pressure of oxygen in arterial blood (Pa o2 ) and ascorbate were restored to normal levels, and BAL fluid protein concentration decreased by about 35%. Another chlorine-gas exposed rat model revealed higher GSH levels and less lung tissue damage in animals treated with NAC 6 hours and 24 hours post-exposure compared to untreated animals (Akdur et al., 2008).dose/fármaco conforme a fonte ↗no original (inglês)

B. Link para os estudos clínicos

Estudos pediátricos

Desai MH, Mlcak R, Richardson J, Nichols R, Herndon DN. Reduction in mortality in pediatric patients with inhalation injury with aerosolized heparin/N-acetylcystine [correction of acetylcystine] therapy. J Burn Care Rehabil. 1998 May-Jun;19(3):210-2. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Estudos em gravidez e amamentação

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Revisões clínicas

Dekhuijzen PN. Antioxidant properties of N-acetylcysteine: their relevance in relation to chronic obstructive pulmonary disease. Eur Respir J. 2004 Apr;23(4):629-36. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Kanter MZ. Comparison of oral and i.v. acetylcysteine in the treatment of acetaminophen poisoning. Am J Health Syst Pharm. 2006 Oct 1;63(19):1821-7. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

C. Link para os estudos não clínicos (por exemplo, em animais)

Estudos em animais adultos

Akdur O, Sozuer EM, Ikizceli I, Avsarogullari L, Ozturk F, Muhtaroglu S, Ozkan S, Durukan P. Experimental inhalation of chlorine gas produced with a different method; effects of N-acetyl cysteine on acute pulmonary damage. Toxicol Mech Methods. 2008 Jan;18(9):739-43. [PubMed Citation]no original (inglês)

Ji L, Liu R, Zhang XD, Chen HL, Bai H, Wang X, Zhao HL, Liang X, Hai CX. N-acetylcysteine attenuates phosgene-induced acute lung injury via up-regulation of Nrf2 expression. Inhal Toxicol. 2010 Jun;22(7):535-42. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Leustik M, Doran S, Bracher A, Williams S, Squadrito GL, Schoeb TR, Postlethwait E, Matalon S. Mitigation of chlorine-induced lung injury by low-molecular-weight antioxidants. Am J Physiol Lung Cell Mol Physiol. 2008 Nov;295(5):L733-43. [PubMed Citation]no original (inglês)

McClintock SD, Till GO, Smith MG, Ward PA. Protection from half-mustard-gas-induced acute lung injury in the rat. J Appl Toxicol. 2002 Jul-Aug;22(4):257-62. [PubMed Citation]no original (inglês)

Nambiar MP, Gordon RK, Rezk PE, Katos AM, Wajda NA, Moran TS, Steele KE, Doctor BP, Sciuto AM . Medical countermeasure against respiratory toxicity and acute lung injury following inhalation exposure to chemical warfare nerve agent VX. Toxicol Appl Pharmacol. 2007 Mar;219(2-3):142-50. [PubMed Citation]no original (inglês)

Sciuto AM, Strickland PT, Kennedy TP, Gurtner GH. Protective effects of N-acetylcysteine treatment after phosgene exposure in rabbits. Am J Respir Crit Care Med. 1995 Mar;151(3 Pt 1):768-72. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Sciuto AM, Hurt HH. Therapeutic treatments of phosgene-induced lung injury. Inhal Toxicol. 2004 Jul;16(8):565-80. [PubMed Citation]no original (inglês)

Estudos em animais gestantes

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Revisões não clínicas

Yadav AK, Bracher A, Doran SF, Leustik M, Squadrito GL, Postlethwait EM, Matalon S . Mechanisms and modification of chlorine-induced lung injury in animals. Proc Am Thorac Soc. 2010 Jul;7(4):278-83. [PubMed Citation]no original (inglês)

Weinberger B, Laskin JD, Sunil VR, Patrick J. Sinko PJ, Heck DE, Debra L. Laskin DL. Sulfur mustard-induced pulmonary injury: Therapeutic approaches to mitigating Toxicity. Pulm Pharmacol Ther. 2011 Feb; 24(1):92-9 [PubMed Citation].no original (inglês)

4. Dados farmacocinéticos e toxicocinéticos

Adulto

N-Acetylcysteine was given intravenously and as three fast dissolving and one slow-release formulation, on separate occasions, as a single dose of 600 mg to 10 fasting (5 men and 5 women) healthy volunteers. Blood and urine were sampled for the following 12 h. Renal clearance constituted around 30% of total body clearance, which was 0.21 l/h/kg. Volume of distribution was 0.33 l/kg, consistent with distribution mainly to extracellular water. The late elimination half-life was 2.27 h and the mean residence time 1.62 h. The slow-release tablet resulted in a flattened plasma concentration-time curve typical of slow release formulations, while the other three oral formulations were rapidly absorbed. The oral availability of N-acetylcysteine varied between 6 and 10%, with the slow-release tablet having the lowest and the fast dissolving tablet the highest availability.dose/fármaco conforme a fonte ↗no original (inglês)

Borgström L, Kågedal B, Paulsen O. Pharmacokinetics of N-acetylcysteine in man. Eur J Clin Pharmacol. 1986;31(2):217-22. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

The pharmacokinetics and bioavailability of N-acetylcysteine (NAC) have been determined after its intravenous and oral administration to 6 healthy volunteers. According to a randomized cross-over design each subject received NAC 200 mg i.v. and 400 mg p.o., and blood samples were collected for 30 h. Reduced NAC had a volume of distribution (VSS) of 0.59 l.kg-1 and a plasma clearance of 0.84 l.h-1.kg-1. The terminal half-life after intravenous administration was 1.95 h. The oral bioavailability was 4.0%. Based on total NAC concentration, its volume of distribution (VSS) was 0.47 l.kg-1 and its plasma clearance was 0.11 l.h-1.kg-1. The terminal half-life was 5.58 h after intravenous administration and 6.25 h after oral administration. Oral bioavailability of total NAC was 9.1%.dose/fármaco conforme a fonte ↗no original (inglês)

Olsson B, Johansson M, Gabrielsson J, Bolme P. Pharmacokinetics and bioavailability of reduced and oxidized N-acetylcysteine. Eur J Clin Pharmacol. 1988;34(1):77-82. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

The plasma pharmacokinetics of oral acetylcysteine(N-acetylcysteine, NAC) after the administration of single 600 mg and repeated 200 mg doses and the relative bioavailability of the two regimens were studied in 12 adult subjects. On two different occasions in a cross-over, balanced fashion the subjects were administered orally either a single dose of NAC 600 mg as effervescent tablets or 4 repeated doses of NAC as granules in sachets at the regimen of 200 mg t.i.d. Venous blood samples were obtained just before dosing and 20, 40 min, 1, 1.5, 2, 3, 4, 6, 8, 10 and 12 h after the administration of NAC 600 mg; with the 1st, the 2nd and the 4th doses of NAC 200 mg samples were taken just before dosing and after 20, 40 min, 1, 1.5, 2, 3, 4, 6 and 8 h, the last sampling after the 1st dose being the one before the 2nd dose. A detailed description of the assaying methods of NAC is given in the text. As indexes of bioavailability Cmax' tmax and AUC of NAC plasma concentrations were considered and MRT was taken as an estimate of its persistence in plasma. NAC was quickly absorbed without any significant difference in tmax among the doses. With the 600 mg dose Cmax' AUC and MRT were greater than with a single 200 mg dose; after summing up the values of these parameters for the 200 mg doses no significant differences were observed in comparison to the single 600 mg dose in Cmax and AUC, while MRT resulted significantly higher.(ABSTRACT TRUNCATED AT 250 WORDS)dose/fármaco conforme a fonte ↗no original (inglês)

De Caro L, Ghizzi A, Costa R, Longo A, Ventresca GP, Lodola E. Pharmacokinetics and bioavailability of oral acetylcysteine in healthy volunteers. Arzneimittelforschung. 1989 Mar;39(3):382-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

The pharmacokinetics after oral administration of 200, 600 or 1200 mg of N-acetylcysteine (NAC) were studied in 10 healthy subjects. Normalized maximal plasma concentration was significantly higher after a 600 mg dose than after a 200 mg dose. Bioavailability of NAC significantly increased with increasing dose. Time for maximal plasma concentration also increased with increasing dose. The observations can be explained by a capacity-limited presystemic elimination of NAC. In an extension of the study, 600 mg of NAC was given twice a day for 5 days and the plasma concentrations were followed after the morning dose on day 6. No differences in the pharmacokinetic parameters were observed in comparison with the single 600 mg dose. This indicates that the beneficial clinical effects observed after repeated dosing can not be ascribed to an accumulation of NAC in plasma.dose/fármaco conforme a fonte ↗no original (inglês)

Borgström L, Kågedal B. Dose dependent pharmacokinetics of N-acetylcysteine after oral dosing to man. Biopharm Drug Dispos. 1990 Mar;11(2):131-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

N-Acetylcysteine is useful as a mucolytic agent for treatment of chronic bronchitis and other pulmonary diseases complicated by the production of viscous mucus. It is also used as an antidote to paracetamol (acetaminophen) poisoning and found to be effective for the prevention of cardiotoxicity by doxorubicin and haemorrhagic cystitis from oxazaphosphorines. After an oral dose of N-acetylcysteine 200 to 400 mg the peak plasma concentration of 0.35 to 4 mg/L is achieved within 1 to 2 hours. Although the data are conflicting, it appears that the administration of charcoal may interfere with drug absorption, with up to 96% of the drug adsorbed on to the charcoal. Information on absorption in the presence of food or other drugs is not available. The volume of distribution ranges from 0.33 to 0.47 L/kg and protein binding is significant, reaching approximately 50% 4 hours after the dose. Pharmacokinetic information is not available as to whether or not N-acetylcysteine crosses the blood-brain barrier or placenta, or into breast milk. Renal clearance has been reported as 0.190 to 0.211 L/h/kg and approximately 70% of the total body clearance is nonrenal. Following oral administration, reduced N-acetylcysteine has a terminal half-life of 6.25h. Little is known of the metabolism of this agent, although it is believed to be rapidly metabolised and incorporated on to proteins. The major excretory product is inorganic sulphate. Frequently reported side effects are nausea, vomiting and diarrhoea. Biochemical and haematological adverse effects are observed but are not clinically relevant. Drug interactions of clinical significance have been observed with paracetamol, glutathione and anticancer agents.dose/fármaco conforme a fonte ↗no original (inglês)

Holdiness MR. Clinical pharmacokinetics of N-acetylcysteine. Clin Pharmacokinet. 1991 Feb;20(2):123-34. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Insuficiência hepática

The threshold plasma paracetamol concentration at which N-acetylcysteine (NAC) treatment is recommended to treat paracetamol poisoning in a patient with induced liver enzymes (for example, with chronic liver disease or taking anticonvulsant drugs) is 50% lower than in a patient without induced liver enzymes. More patients with chronic liver disease might therefore be expected to be exposed to NAC treatment than previously. In addition, there is increasing use of NAC in patients with chronic liver disease for multiorgan failure or hepatorenal syndrome. Little is known of NAC's pharmacokinetic properties in patients with cirrhosis. The aim was to determine if the pharmacokinetics of NAC are altered by chronic liver disease. NAC was given intravenously in a dose of 600 mg over 3 min to nine patients with biopsy-proven cirrhosis (Child's grade; 1 A, 4 B, 4 C: aetiology: 7 alcohol-related, 1 primary biliary cirrhosis, 1 secondary biliary stenosis) and six healthy matched controls. Venous blood was taken at 20, 40, 60 and 90 min then at 2, 3, 4, 6, 8 and 10 h after NAC administration. Serum NAC was estimated by HPLC. The data were normalized to a standard body weight of 70 kg. The area under the serum concentration-time curve was increased (152.34 mg/L.h +/- 50.38 s.d.) in cirrhotics compared with normal controls (93.86 mg/L.h +/- 9.60 s.d.) (P < 0.05). The clearance of NAC was reduced in patients with chronic liver disease (4.52 L/h +/- 1.87 s.d.) compared with controls (6.47 L/h +/- 0.78: P < 0.01). Increased vigilance for untoward anaphylactoid reactions is necessary in cirrhotics as they may have higher plasma NAC concentrations. Further studies to determine the optimum dosage regimen in such patients are required.dose/fármaco conforme a fonte ↗no original (inglês)

Jones AL, Jarvie DR, Simpson D, Hayes PC, Prescott LF. Pharmacokinetics of N-acetylcysteine are altered in patients with chronic liver disease. Aliment Pharmacol Ther. 1997 Aug;11(4):787-91. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

5. Indicações e posologia atualmente aprovadas pela FDA/EUA

Adultos (FDA)

Mucolítico: pacientes ≥40 kgdose/fármaco conforme a fonte ↗

Dose de ataque: 150 mg/kg em 200 mL de diluente, administrados ao longo de 60 min (60 minutos)dose/fármaco conforme a fonte ↗

Dose 2: 50 mg/kg em 500 mL de diluente, administrados ao longo de 4 hr (4 horas)dose/fármaco conforme a fonte ↗

Dose 3: 100 mg/kg em 1000 mL de diluente, administrados ao longo de 16 hr (16 horas)dose/fármaco conforme a fonte ↗

Pacientes >20- <40 kgdose/fármaco conforme a fonte ↗

Dose de ataque: 150 mg/kg em 100 mL de diluente, administrados ao longo de 60 min (60 minutos)dose/fármaco conforme a fonte ↗

Dose 2: 50 mg/kg em 250 mL de diluente, administrados ao longo de 4 hr (4 horas)dose/fármaco conforme a fonte ↗

Dose 3: 100 mg/kg em 500 mL de diluente, administrados ao longo de 16 hr (16 horas)dose/fármaco conforme a fonte ↗

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Nebulizado: quando nebulizado em máscara facial, bocal ou traqueostomia, podem ser dados 1 to 10 mL da solução a 20% ou 2 to 20 mL da solução a 10% a cada 2 to 6 hours (2 a 6 horas); a dose recomendada para a maioria dos pacientes é de 3 to 5 mL da solução a 20% ou 6 to 10 mL da solução a 10%, 3 a 4 vezes ao dia.dose/fármaco conforme a fonte ↗

Instilação direta: quando usada por instilação direta, podem ser dados 1 to 2 mL de uma solução a 10% a 20% com frequência de até uma vez por hora. Quando usada no cuidado de enfermagem de rotina de pacientes com traqueostomia, 1 to 2 mL de uma solução a 10% a 20% podem ser dados a cada 1 to 4 hours (1 a 4 horas), por instilação na traqueostomia.dose/fármaco conforme a fonte ↗

Estudos brônquicos diagnósticos: duas a três administrações de 1 to 2 mL da solução a 20%, ou 2 to 4 mL da solução a 10%, devem ser dadas por nebulização ou por instilação intratraqueal, antes do procedimento.dose/fármaco conforme a fonte ↗

Product label: acetylcysteine (ACETYLCYSTEINE) solution [Fresenius Kabi USA, LLC] Last revised: July 2006 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Crianças (FDA)

Mucolítico: pacientes ≤20 kgdose/fármaco conforme a fonte ↗

Dose de ataque: 150 mg/kg em 3 mL/kg de peso corporal de diluente, administrados ao longo de 60 min (60 minutos)dose/fármaco conforme a fonte ↗

Dose 2: 50 mg/kg em 7 mL/kg de peso corporal de diluente, administrados ao longo de 4 hr (4 horas)dose/fármaco conforme a fonte ↗

Dose 3: 100 mg/kg em 14 mL/kg de peso corporal de diluente, administrados ao longo de 16 hr (16 horas)dose/fármaco conforme a fonte ↗

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Gravidez (FDA)

Categoria de gravidez B

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Lactantes (FDA)

Não se sabe se o Acetadote está presente no leite humano. Como muitos fármacos são excretados no leite humano, deve-se ter cautela quando a acetylcysteine é administrada a uma lactante. Com base na farmacocinética da acetylcysteine, ela deve estar quase completamente depurada 30 hours (30 horas) após a administração. As lactantes podem considerar retomar a amamentação 30 hours após a administração.dose/fármaco conforme a fonte ↗

Product label: ACETADOTE (acetylcysteine) injection, solution [ Cumberland Pharmaceuticals Inc.] Last revised: January 2011 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Autorização de uso emergencial (FDA/CDC)

Nenhuma Autorização de Uso Emergencial para a N-acetylcysteine 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

Solução; inalação: 10%. Pode conter edetato dissódico. Em frascos de 4, 10 e 30 mL.dose/fármaco conforme a fonte ↗

Solução concentrada; inalação: 20%. Pode conter edetato dissódico. Em frascos de 4, 10 e 30 mL.dose/fármaco conforme a fonte ↗

Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1147-9no original (inglês)

Parenteral: concentrado para injeção, para infusão IV, 200 mg/mLdose/fármaco conforme a fonte ↗

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

Prazo de validade

Estabilidade

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

Armazenamento

Frascos fechados de solução de acetylcysteine sódica devem ser guardados a 15-30&deg;C. Após a exposição ao ar, as soluções orais e para inalação oral devem ser guardadas a 2-8&deg;C para retardar a oxidação, e devem ser usadas em até 96 hours (96 horas).dose/fármaco conforme a fonte ↗

O concentrado de acetylcysteine para injeção comercialmente disponível deve ser guardado a 20-25&deg;C. Quando diluídas em glicose a 5%, as soluções resultantes são estáveis por 24 hours (24 horas) em temperatura ambiente controlada.dose/fármaco conforme a fonte ↗

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

7. Utilização e posologia off-label atuais

Adulto

Sucu N, Cinel I, Unlu A, Aytacoglu B, Tamer L, Kocak Z, Karaca K, Gul A, Dikmengil M, Atik U, Oral U. N-acetylcysteine for preventing pump-induced oxidoinflammatory response during cardiopulmonary bypass. Surg Today. 2004;34(3):237-42. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Eren N, Cakir O, Oruc A, Kaya Z, Erdinc L. Effects of N-acetylcysteine on pulmonary function in patients undergoing coronary artery bypass surgery with cardiopulmonary bypass. Perfusion. 2003 Nov;18(6):345-50. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Briguori C, Airoldi F, D'Andrea D, Bonizzoni E, Morici N, Focaccio A, Michev I, Montorfano M, Carlino M, Cosgrave J, Ricciardelli B, Colombo A; Renal Insufficiency Following Contrast Media Administration Trial (REMEDIAL): a randomized comparison of 3 preventive strategies. Circulation. 2007 Mar 13; 115 (10): 1211-7. [PubMed Citation]no original (inglês)

Crianças

Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1147-9no original (inglês)

8. Via de administração / monitorização

Como antídoto da superdosagem de acetaminofeno, a acetylcysteine é administrada por via oral, em solução a 5%, ou por infusão IV. Como agente mucolítico, a acetylcysteine, geralmente em solução a 10-20%, pode ser administrada por nebulização, aplicação direta ou instilação intratraqueal.dose/fármaco conforme a fonte ↗

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

9. Efeitos adversos

Schmidt LE, Dalhoff K. Risk factors in the development of adverse reactions to N-acetylcysteine in patients with paracetamol poisoning. Br J Clin Pharmacol. 2001 Jan;51(1):87-91. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Appelboam AV, Dargan PI, Knighton J. Fatal anaphylactoid reaction to N-acetylcysteine: caution in patients with asthma. Emerg Med J. 2002 Nov;19(6):594-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bateman DN, Woodhouse KW, Rawlins MD. Adverse reactions to N-acetylcysteine. Hum Toxicol. 1984 Oct;3(5):393-8. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bonfiglio MF, Traeger SM, Hulisz DT, Martin BR. Anaphylactoid reaction to intravenous acetylcysteine associated with electrocardiographic abnormalities. Ann Pharmacother. 1992 Jan;26(1):22-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

10. Contraindicação(ões)

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

11. Estudos clínicos em andamento

12. Estudos não clínicos em andamento

13. Estudos necessários para a indicação clínica de defesa química

14. Estudos necessários para indicações clínicas fora da defesa química

15. Questões éticas relacionadas aos estudos

16. Situação regulatória global

EUA

A acetylcysteine é usada por via oral ou IV como antídoto no tratamento da superdosagem de acetaminofeno.dose/fármaco conforme a fonte ↗

Acetylcysteine is used as a mucolytic agent in the adjunctive treatment of patients with abnormal, viscid, or inspissated mucous secretions in such conditions as acute and chronic bronchopulmonary disorders (e.g., pneumonia, bronchitis, emphysema, tracheobronchitis, chronic asthmatic bronchitis, tuberculosis, bronchiectasis, primary amyloidosis of the lung); atelectasis caused by mucus obstruction; pulmonary complications of cystic fibrosis; pulmonary complications of thoracic and cardiovascular surgery; and post-traumatic chest conditions.dose/fármaco conforme a fonte ↗no original (inglês)

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.1747-1784no original (inglês)

Reino Unido

Deficiência lacrimal, produção de muco prejudicada ou anormal.

Martin J, et al., eds. British National Formulary, No. 58. London, UK: BMJ Group, RPS Publishing, 2009no original (inglês)

Superdosagem de paracetamol

Martin J, et al., eds. British National Formulary, No. 58. London, UK: BMJ Group, RPS Publishing, 2009no original (inglês)

17. Other potentially useful informationno original (inglês)

Aitio ML. N-acetylcysteine -- passe-partout or much ado about nothing? Br J Clin Pharmacol. 2006 Jan;61(1):5-15. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bailey B, McGuigan MA. Management of anaphylactoid reactions to intravenous N-acetylcysteine. Ann Emerg Med. 1998 Jun;31(6):710-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

HSDB. N-acetylcysteinedose/fármaco conforme a fonte ↗no original (inglês)

18. Publicações

Aitio ML. N-acetylcysteine -- passe-partout or much ado about nothing? Br J Clin Pharmacol. 2006 Jan;61(1):5-15. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Akdur O, Sozuer EM, Ikizceli I, Avsarogullari L, Ozturk F, Muhtaroglu S, Ozkan S, Durukan P. Experimental inhalation of chlorine gas produced with a different method; effects of N-acetyl cysteine on acute pulmonary damage. Toxicol Mech Methods. 2008 Jan;18(9):739-43. [PubMed Citation]no original (inglês)

Appelboam AV, Dargan PI, Knighton J. Fatal anaphylactoid reaction to N-acetylcysteine: caution in patients with asthma. Emerg Med J. 2002 Nov;19(6):594-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Aruoma OI, Halliwell B, Hoey BM, Butler J. The antioxidant action of N-acetylcysteine: its reaction with hydrogen peroxide, hydroxyl radical, superoxide, and hypochlorous acid. Free Radic Biol Med. 1989;6(6):593-597. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Atkinson MC. The use of N-acetylcysteine in intensive care. Crit Care Resusc. 2002 Mar;4(1):21-7. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bailey B, McGuigan MA. Management of anaphylactoid reactions to intravenous N-acetylcysteine. Ann Emerg Med. 1998 Jun;31(6):710-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bateman DN, Woodhouse KW, Rawlins MD. Adverse reactions to N-acetylcysteine. Hum Toxicol. 1984 Oct;3(5):393-8. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Bonfiglio MF, Traeger SM, Hulisz DT, Martin BR. Anaphylactoid reaction to intravenous acetylcysteine associated with electrocardiographic abnormalities. Ann Pharmacother. 1992 Jan;26(1):22-5. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Borgström L, Kågedal B. Dose dependent pharmacokinetics of N-acetylcysteine after oral dosing to man. Biopharm Drug Dispos. 1990 Mar;11(2):131-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Borgström L, Kågedal B, Paulsen O. Pharmacokinetics of N-acetylcysteine in man. Eur J Clin Pharmacol. 1986;31(2):217-22. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Briguori C, Airoldi F, D'Andrea D, Bonizzoni E, Morici N, Focaccio A, Michev I, Montorfano M, Carlino M, Cosgrave J, Ricciardelli B, Colombo A; Renal Insufficiency Following Contrast Media Administration Trial (REMEDIAL): a randomized comparison of 3 preventive strategies. Circulation. 2007 Mar 13; 115 (10): 1211-7. [PubMed Citation]no original (inglês)

Carbonell N, Blasco M, SanjuáR, Péz-Sancho E, Sanchis J, Insa L, Bodí, NúJ, GarcíRamó, Miguel A. Intravenous N-acetylcysteine for preventing contrast-induced nephropathy: a randomised trial. Int J Cardiol. 2007 Jan 31;115(1):57-62. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

De Caro L, Ghizzi A, Costa R, Longo A, Ventresca GP, Lodola E. Pharmacokinetics and bioavailability of oral acetylcysteine in healthy volunteers. Arzneimittelforschung. 1989 Mar;39(3):382-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Dekhuijzen PN. Antioxidant properties of N-acetylcysteine: their relevance in relation to chronic obstructive pulmonary disease. Eur Respir J. 2004 Apr;23(4):629-36. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Desai MH, Mlcak R, Richardson J, Nichols R, Herndon DN. Reduction in mortality in pediatric patients with inhalation injury with aerosolized heparin/N-acetylcystine [correction of acetylcystine] therapy. J Burn Care Rehabil. 1998 May-Jun;19(3):210-2. [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)

Eren N, Cakir O, Oruc A, Kaya Z, Erdinc L. Effects of N-acetylcysteine on pulmonary function in patients undergoing coronary artery bypass surgery with cardiopulmonary bypass. Perfusion. 2003 Nov;18(6):345-50. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Holdiness MR. Clinical pharmacokinetics of N-acetylcysteine. Clin Pharmacokinet. 1991 Feb;20(2):123-34. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

HSDB. N-acetylcysteinedose/fármaco conforme a fonte ↗no original (inglês)

Hynninen MS, Niemi TT, Pöä, Raininko EI, SalmenperäT, Lepäalo MJ, Railo MJ, Tallgren MK. N-acetylcysteine for the prevention of kidney injury in abdominal aortic surgery: a randomized, double-blind, placebo-controlled trial. Anesth Analg. 2006 Jun;102(6):1638-45. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Ji L, Liu R, Zhang XD, Chen HL, Bai H, Wang X, Zhao HL, Liang X, Hai CX. N-acetylcysteine attenuates phosgene-induced acute lung injury via up-regulation of Nrf2 expression. Inhal Toxicol. 2010 Jun;22(7):535-42. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Jones AL, Jarvie DR, Simpson D, Hayes PC, Prescott LF. Pharmacokinetics of N-acetylcysteine are altered in patients with chronic liver disease. Aliment Pharmacol Ther. 1997 Aug;11(4):787-91. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Kanter MZ. Comparison of oral and i.v. acetylcysteine in the treatment of acetaminophen poisoning. Am J Health Syst Pharm. 2006 Oct 1;63(19):1821-7. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Kao SJ, Wang D, Lin HI, Chen HI. (2006). N-acetylcysteine abrogates acute lung injury induced by endotoxindose/fármaco conforme a fonte ↗no original (inglês)

Clin Exp Pharmacol Physiol. 2006;33:33-40. [PubMed]no original (inglês)

Kastrup EK et al., eds. Drug Facts and Comparisons St Louis, MO: Wolters Kluwer Health, 2012 p.1147-9no original (inglês)

Lee KS, Kim SR, Park HS , Park SJ, Min KH, Lee KY, Choe YH, Hong SH, Han HJ, Lee YR, Kim JS, Atlas D, Lee YC. (2007). A novel thiol compound, N-acetylcysteine amide, attenuates allergic airway disease by regulating activation of NF-kappaB and hypoxia-inducible factor-1alpha. Exp Mol Med. 2007 Dec;39(6):756-768. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Leustik M, Doran S, Bracher A, Williams S, Squadrito GL, Schoeb TR, Postlethwait E, Matalon S. Mitigation of chlorine-induced lung injury by low-molecular-weight antioxidants. Am J Physiol Lung Cell Mol Physiol. 2008 Nov;295(5):L733-43. [PubMed Citation]no original (inglês)

Martin J, et al., eds. British National Formulary, No. 58. London, UK: BMJ Group, RPS Publishing, 2009no original (inglês)

McEvoy GK, ed. Drug Information 2012. Bethesda, MD: American Society of Health-System Pharmacists, 2012 p.3619-3622no original (inglês)

McClintock SD, Till GO, Smith MG, Ward PA. Protection from half-mustard-gas-induced acute lung injury in the rat. J Appl Toxicol. 2002 Jul-Aug;22(4):257-62. [PubMed Citation]no original (inglês)

Moradi M, Mojtahedzadeh M, Mandegari A, Soltan-Sharifi MS, Najafi A, Khajavi MR, Hajibabayee M, Ghahremani MH. The role of glutathione-S-transferase polymorphisms on clinical outcome of ALI/ARDS patient treated with N-acetylcysteine. Respir Med. 2009 Mar;103(3):434-441. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Nambiar MP, Gordon RK, Rezk PE, Katos AM, Wajda NA, Moran TS, Steele KE, Doctor BP, Sciuto AM . Medical countermeasure against respiratory toxicity and acute lung injury following inhalation exposure to chemical warfare nerve agent VX. Toxicol Appl Pharmacol. 2007 Mar;219(2-3):142-50. [PubMed Citation]no original (inglês)

Olsson B, Johansson M, Gabrielsson J, Bolme P. Pharmacokinetics and bioavailability of reduced and oxidized N-acetylcysteine. Eur J Clin Pharmacol. 1988;34(1):77-82. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Ristikankare A, Kuitunen T, Kuitunen A, Uotila L, Vento A, Suojaranta-Ylinen R, Salmenpera M, Poyhia R. Lack of renoprotective effect of i.v. N-acetylcysteine in patients with chronic renal failure undergoing cardiac surgery. Br J Anaesth. 2006 Nov;97(5):611-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Schmidt LE, Dalhoff K. Risk factors in the development of adverse reactions to N-acetylcysteine in patients with paracetamol poisoning. Br J Clin Pharmacol. 2001 Jan;51(1):87-91. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Sciuto AM, Hurt HH. Therapeutic treatments of phosgene-induced lung injury. Inhal Toxicol. 2004 Jul;16(8):565-80. [PubMed Citation]no original (inglês)

Sciuto AM, Strickland PT, Kennedy TP, Gurtner GH. Protective effects of N-acetylcysteine treatment after phosgene exposure in rabbits. Am J Respir Crit Care Med. 1995 Mar;151(3 Pt 1):768-72. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Siriwardena AK, Mason JM, Balachandra S, Bagul A, Galloway S, Formela L, Hardman JG, Jamdar S. Randomised, double blind, placebo controlled trial of intravenous antioxidant (n-acetylcysteine, selenium, vitamin C) therapy in severe acute pancreatitis. Gut. 2007 Oct;56(10):1439-44. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Sklar GE, Subramaniam M. Acetylcysteine treatment for non-acetaminophen-induced acute liver failure. Ann Pharmacother. 2004 Mar;38(3):498-500. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Sucu N, Cinel I, Unlu A, Aytacoglu B, Tamer L, Kocak Z, Karaca K, Gul A, Dikmengil M, Atik U, Oral U. N-acetylcysteine for preventing pump-induced oxidoinflammatory response during cardiopulmonary bypass. Surg Today. 2004;34(3):237-42. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Weinberger B, Laskin JD, Sunil VR, Patrick J. Sinko PJ, Heck DE, Debra L. Laskin DL. Sulfur mustard-induced pulmonary injury: Therapeutic approaches to mitigating Toxicity. Pulm Pharmacol Ther. 2011 Feb; 24(1):92-9 [PubMed Citation].no original (inglês)

Yadav AK, Bracher A, Doran SF, Leustik M, Squadrito GL, Postlethwait EM, Matalon S . Mechanisms and modification of chlorine-induced lung injury in animals. Proc Am Thorac Soc. 2010 Jul;7(4):278-83. [PubMed Citation]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)