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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.

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

Amyl Nitrite (nitrito de amila) — banco de contramedidas médicas

1. Nome do agente terapêutico/dispositivo de defesa química

Amyl nitritedose/fármaco conforme a fonte ↗

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

O amyl nitrite é tipicamente usado com outros agentes (sodium nitrite e sodium thiosulfate) como antídoto do envenenamento agudo por cianeto.dose/fármaco conforme a fonte ↗

3. Medicina baseada em evidência para defesa química

A. Resumo

Estrutura

HSDB. Amyl Nitritedose/fármaco conforme a fonte ↗no original (inglês)

Mecanismo de ação

Leavesley HB, Li L, Mukhopadhyay S, Borowitz JL, Isom GE. Nitrite-mediated antagonism of cyanide inhibition of cytochrome c oxidase in dopamine neurons. Toxicol Sci. 2010 Jun; 115(2):569-76. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Nelson LS, Lewin NA, Howland M, Hoffman RS, Goldfrank LR, Flomenbaum NE, eds. Goldfranks's Toxicologic Emergencies, 9 th Edition. New York, NY: McGraw-Hill Medical, 2011 p. 1689-91no original (inglês)

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Resumo dos estudos clínicos e não clínicos

Cyanide is a potent chemical that has been used as a poison for centuries, even before its isolation and identification (Gracia and Shepherd, 2004). With several attributes that make it an ideal terrorist weapon, including ease in use as a weapon, versatility in means of delivery to intended victims, and widespread availability, cyanide still poses a significant threat to individuals and targeted populations (Keim, 2006). Cyanide can cause death within seconds to minutes and is not only among the most rapidly acting of poisons, but in sufficient concentrations, is also among the most lethal. Cyanide exposure can result from industrial and residential applications, fires, iatrogenic sources, and ingestion of certain foods (Gracia and Shepherd, 2004). Clinical symptoms of cyanide poisoning are variable but frequently include loss of consciousness, metabolic acidosis, and cardiopulmonary failure (Yen et al., 1995). By binding to the ferric iron of mitochondrial cytochrome oxidase, cyanide inhibits cellular respiration (Gracia and Shepherd, 2004). Amyl nitrite, a compound that has vasodilatatory properties and that oxidizes hemoglobin to cyanide-binding methemoglobin, has been used to treat cyanide poisoning (Lavon and Bentur, 2010). It is often, but not always, administered with other agents (sodium nitrite and sodium thiosulfate) in a cyanide antidote kit and with other supportive measures such as oxygen (Hall, Saiers, and Baud, 2009). The reports on the safety and efficacy of amyl nitrite in treating acute cyanide exposure are contradictory. Of 45 beagle dogs that received intravenous injections of cyanide (2.5 mg/kg), 39 had improved cardiovascular and respiratory function and survival after inhalation or intravenous administration of amyl nitrite (Vick and Froehlich, 1985 and 1991). The 30 control animals treated with only cyanide died 5 to 7 minutes post-administration. A retrospective study examining the treatment of cyanide intoxication in industrial workers concluded that amyl nitrite was effective, with no residual adverse effects except headache and transient loss of appetite (Wurzburg, 1996). Other studies and case reports on cyanide poisoning, including one on a 4-year old child who nearly died after ingestion of amygdalin, also noted the therapeutic effects of the cyanide antidote kit, which amyl nitrite comprises (Hall et al., 1986; Johnson et al., 1989; Yen et al., 1995). However, other studies have cautioned about the use of amyl nitrite to treat mass casualty cyanide poisoning due to several limitations: uncontrolled administration of amyl nitrite ampoules with potential inadequate dosing; potential for serious toxicity such as nitrite-induced methemoglobinemia, and in smoke inhalation victims, carboxyhemoglobinemia with a subsequent decrease in oxygen delivery to vital tissues and organs; and distracted management by caregivers of a mass casualty incident (Hall et al., 2009; Lavon and Bentur, 2010). Administration of amyl nitrite using a nebulizer or inhaler may help to minimize its deficiencies (Donoghue, 2003). In summary, studies demonstrating the safety and efficacy of amyl nitrite are inconclusive, and its risk-benefit profile may not be favorable. Hydroxocobalamin, which was approved by the Food and Drug Administration in 2006, has a more positive risk-benefit profile and may be a better antidote for cyanide poisoning (Hall et al., 2009).dose/fármaco conforme a fonte ↗no original (inglês)

B. Link para os estudos clínicos

Adulto

Nakatani T, Kosugi Y, Mori A, Tajimi K, Kobayashi K; Changes in the parameters of oxygen metabolism in a clinical course recovering from potassium cyanide . Am J Emerg Med. 1993 May; 213-7. [PubMed Citation]no original (inglês)

Chen KK, Rose CL. Treatment of acute cyanide poisoning. J Am Med Assoc. 1956;162(12):1154-5.no original (inglês)

Administration of the Lilly Cyanide Antidote kit (Eli Lilly and Co, Indianapolis) resulted in prompt resolution of symptoms and full recovery. Whole blood cyanide level was 13 pg/mL approximately one hour after ingestion. The highest measured methemoglobin level after sodium nitrite administration was 9.2%, demonstrating that attaining a "therapeutic methemoglobin level" of 25% is unnecessary to insure a satisfactory clinical outcome. Because severe hypotension or excessive methemoglobinemia can be caused by the sodium nitrite component of the Lilly kit, only enough to produce an acceptable clinical response should be administered. (Class IV)dose/fármaco conforme a fonte ↗no original (inglês)

Johnson WS, Hall AH, Rumack BH. Cyanide poisoning successfully treated without 'therapeutic methemoglobin levels'. Am J Emerg Med. 1989; 7(4):437-440. [PubMed Citation]no original (inglês)

Estudos pediátricos

Hall AH , Linden CH, Kulig KW, Rumack BH; Cyanide poisoning from laetrile ingestion: role of nitrite therapy. Pediatrics. 1986 Aug;78:269-272no original (inglês)

Lasch EE and Shawa RE. Multiple cases of cyanide poisoning by apricot kernels in children from Gaza. Pediatrics. 1981; 68(1):5-7. [PubMed Citation]no original (inglês)

Estudos em gravidez e amamentação

Hendricks SK, Ross B, Colvard MA, Cahill D, Shy K, Benedetti TJ. Amyl nitrite: use as a smooth muscle relaxant in difficult preterm cesarean section. Am J Perinatol 1992 Jul;9(4):289-92. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Revisões clínicas

Hall AH, Saiers J, Baud F. Which cyanide antidote? Crit Rev Toxicol 2009;39(7):541-52. [PubMed Citation]no original (inglês)

Yen D, Tsai J, Wang LM, Kao WF, Hu SC, Lee CH, Deng JF. The clinical experience of acute cyanide poisoning . Am J Emerg Med. 1995 Sep;13(5):524-8.no original (inglês)

Garcia R, Sherpherd G; Cyanide poisoning and its treatment. Pharmacotherapy. 2004 Oct;24(10):1358-65. [PubMed Citation]no original (inglês)

The inhaler device would also be particularly well suited to the treatment of large numbers of victims following industrial disaster or terrorist attack — the risk of which has been recently alluded to. One concern about introducing these methods is the potential for amyl nitrite toxicity. Experimental research is recommended to determine safe dosages and frequencies for each method. (Class IV)dose/fármaco conforme a fonte ↗no original (inglês)

Donoghue AM. Alternative methods of administering amyl nitrite to victims of cyanide poisoning. Occup Environ Med. 2003 Feb;60(2):147. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Lavon O, Bentur Y. Does amyl nitrite have a role in the management of pre-hospital mass casualty cyanide poisoning? Clin Toxicol (Phila). 2010 Jul;48(6):477-84 (2010). [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Geller RJ, Barthold C, Saiers JA, Hall AH. Pediatric cyanide poisoning: causes, manifestations, management, and unmet needs. Pediatrics. 2006 Nov;118(5):2146-58. [PubMed Citation]no original (inglês)

Reade MC, Davies SR, Morley PT, Dennett J, Jacobs IC. Review article: management of cyanide poisoning . Emerg Med Australas. 2012 Jun;24(3):225-38. [PubMed Citation]no original (inglês)

Hamel J; A Review of acute cyanide poisoning with a treatment update. Critical Care Nurse. 2011 Feb;31(1):72-82. [PubMed Citation]no original (inglês)

Keim ME. Terrorism involving cyanide: the prospect of improving preparedness in the prehospital setting. Prehosp Disaster Med. 2006 Mar-Apr;21(2):s56-60. [PubMed Citation]no original (inglês)

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

Estudos em animais adultos

Klimmek R, Krettek C. Effects of amyl nitrite on circulation, respiration and blood homoeostasis in cyanide poisoning. Arch Toxicol. 1988 62(2-3):161-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Vick JA , Froehlich HL. Studies of cyanide poisoning. Arch Int Pharmacodyn Ther 1985 Feb;273(2):314-22. [PubMed Citation]no original (inglês)

Vick JA, Froehlich H. Treatment of cyanide poisoning. Mil Med. 1991 Jul;156(7):330-9. [PubMed Citation]no original (inglês)

Moore SJ, Norris JC, Walsh DA, Hume AS. Antidotal use of methemoglobin forming cyanide antagonists in concurrent carbon monoxide/cyanide intoxication. J Pharmacol Exp Ther. 1987 Jul;242(1):70-3. [PubMed Citation]no original (inglês)

4. Dados farmacocinéticos e toxicocinéticos

Adulto

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

5. Indicações e posologia atualmente aprovadas pela FDA/EUA

Autorização de uso emergencial (FDA/CDC)

Nenhuma Autorização de Uso Emergencial para o Amyl Nitrite 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

Estabilidade

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

7. Utilização e posologia off-label atuais

Adulto

OBSERVAÇÃO: ESTE FÁRMACO NÃO FOI CONSIDERADO SEGURO E EFICAZ PELA FDA, E ESTA BULA NÃO FOI APROVADA PELA FDA.

Angina pectoris: o efeito aparece em 30 seconds (30 segundos) e dura aproximadamente 3 to 5 minutes (3 a 5 minutos). O amyl nitrite da marca James Alexander é fornecido em cápsulas de vidro revestidas. Cada cápsula contém 0.3 mL, em caixas de 12. Com o paciente deitado ou sentado, uma cápsula de amyl nitrite é mantida afastada do rosto, quebrada entre os dedos e mantida sob o nariz do paciente. Duas a seis inalações dos vapores da cápsula geralmente são suficientes para produzir prontamente os efeitos terapêuticos. Recomenda-se cautela para evitar a inalação de quantidades excessivas do fármaco quando ele é administrado por outra pessoa que não o paciente. Se necessário, a dose pode ser repetida em 3 to 5 minutes.dose/fármaco conforme a fonte ↗

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Bartlett JG, Greenberg MI, eds. PDR Guide to Terrorism Response. Montvale, NJ: Thomson PDR, 2005 p.321-41no original (inglês)

Crianças

Bartlett JG, Greenberg MI, eds. PDR Guide to Terrorism Response. Montvale, NJ: Thomson PDR, 2005 p.321-41no original (inglês)

Gravidez

Categoria de gravidez C

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

8. Via de administração / monitorização

Dart RC, ed. Medical Toxicology 3 rd Edition. Philadelphia, PA: Lippincott Williams & Wilkins, 2004 p.172-5no original (inglês)

9. Efeitos adversos

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)

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Dart RC, ed. Medical Toxicology 3 rd Edition. Philadelphia, PA: Lippincott Williams & Wilkins, 2004 p. 172-5no original (inglês)

Nelson LS, Lewin NA, Howland M, Hoffman RS, Goldfrank LR, Flomenbaum NE, eds. Goldfranks's Toxicologic Emergencies, 9 th Edition. New York, NY: McGraw-Hill Medical, 2011 p. 1689-91no original (inglês)

10. Contraindicação(ões)

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

11. Estudos clínicos em andamento

The objective of this proposal is to assess the feasibility of a fully integrated device for the rapid and early diagnosis of cyanide poisoning in whole blood using the spectral shift of the vitamin B12 precursor cobinamide upon binding with cyanide as an indicator. Cyanide is an extremely potent and rapid acting poison with as little as 50 mg fatal to humans. Currently there are no portable rapid tests for the detection of cyanide in whole blood available. The primary goal of this proposal is to demonstrate feasibility of the cobinamide-cyanide chemistry in a rapid test using a whole blood sample from a finger-stick. The total assay time from the sample collection to a valid result will be less than 5 minutes. The innovation in this proposal is to incorporate the cobinamide chemistry with blood separation technology, fluid path designs, and a detection area, all integrated in a compact, disposable device which can be interpreted with a handheld visualization system. Feasibility work of this novel rapid assay for detecting blood cyanide through cobinamide will initially focus on several technical approaches for the device design. Parallel paths to pursue a wet chemistry design, a design where the reagents are dried in the device, and a combination thereof will be considered, compared and evaluated. In all of the proposed methods the whole blood sample will be added to the device, followed by an integrated whole blood processing step to yield a plasma sample. Either prior to or immediately after the whole blood separation and lysis, the sample will be mixed with the on-board reagent, dried or wet, and possibly buffers. The processed sample-reagent mixture then moves through the device through various fluid paths to a detection area. To allow for sufficient mixing time between the sample and the reagents, different fluid paths, mixing chambers, polymeric time-gates, and dissolvable films will be evaluated with the goal of maximizing the interaction time. The spectral shift of cobinamide upon binding of cyanide to cobinamide will be measured in the detection area using a handheld or small, portable reader instrument. Upon successful completion of this Phase 1 project we intend to further develop our concept/prototype assay, complete the device design and integrate the finished test with a reader instrument through a Phase 2 proposal. Specific aims for a Phase 2 of this project include the validation of the cobinamide-based device for measuring cyanide in blood. Results will be compared to two established methods for measuring cyanide in biological samples. The sensitivity, specificity, accuracy, precision, and reproducibility of the devices will be determined. Additional studies will be designed to obtain regulatory approval and subsequently we will commercialize the test. If successful, this test will provide the medical community and first responders with a fast, reliable and economic alternative to determine cyanide poisoning. PUBLIC HEALTH RELEVANCE: Cyanide poisoning has been recognized as a threat from smoke inhalation and potentially through weapons of mass destruction, but there are currently no methods available to rapidly detect cyanide in blood from at-risk patients. The objective of the proposed work is to assess the feasibility of a fully integrated method for the rapid and early detection and diagnosis of cyanide poisoning in whole blood using the spectral shift of the vitamin B12 precursor cobinamide upon binding with cyanide as an indicator. Successful accomplishment of the goals of this project will be the basis for the development of a test to detect and measure cyanide blood poisoning which will allow healthcare providers to treat patients quickly and effectively.dose/fármaco conforme a fonte ↗no original (inglês)

RePORTER. NIH. Development of a field-deployable device to rapidly measure blood cyanide levels .no original (inglês)

Sources for potential exposure to cyanide of both civilians and military personnel include combustion of nitrogenous materials, commercial accidents and the deliberate release of a cyanogenic chemical. The relative ease in obtaining and releasing cyanide means that the risk of cyanide use in a terrorist attack resulting in a mass casualty situation should not be ignored. Rapid intervention is critical for effective medical intervention in cases of cyanide exposure: treatments require a "three minute solution."no original (inglês)

The availability of a rapid, IM injectable antidote should meet this requirement. However, there are no such available treatments - the current cyanide antidotes are administered intravenously. Because intravenous administration is time consuming and requires well trained medical personnel mass exposure to cyanide would likely leave many victims untreated. Because IM administration can be performed via an autoinjector and can therefore be done rapidly by minimally trained personnel there is a critical need for a rapid-acting, IM-injectable antidote for the treatment of mass cyanide casualties. In order to address this need /the authors/ are advancing /a/preclinical lead, sulfanegen to clinical development. /They/ have previously demonstrated efficacy of sulfanegen in murine, swine and rabbit models of cyanide toxicity. In these models sulfanegen is effective in reversal of cyanide toxicity by IM injection and therefore should meet the three minute solution. /The authors/ have recently held a pre-IND meeting with the FDA and /their/ goal is to advance this cyanide antagonist to the clinic by validation of animal models, demonstrate efficacy of sulfanegen in these animal models and perform the required GLP pharmacokinetic and safety evaluation required for clinical trials. /The authors/ will then commence a Phase 1 human safety study while simultaneously performing the required GLP studies for NDA submission under the animal rule. Successful completion of the aims of this project should lead to a clinical countermeasure for cyanide toxicity that will be applicable in all cases of cyanide exposure from individuals to mass casualty settings. PUBLIC HEALTH RELEVANCE: /The authors/ have discovered a novel cyanide antidote that /they/ have named sulfanegen and demonstrated that it is more effective than existing antidotes in models of cyanide toxicity. /They/will perform the necessary studies to translate this antidote from the bench to the bedside. Successful completion of the goals of this project will therefore result in a clinical antidote that could be useful in the case of a terrorist attack involving cyanide.no original (inglês)

RePORTER. NIH. Countermeasures against chemical threats: countermeasures against cyanide.no original (inglês)

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

Summary of the NIAID Expert Panel Review on Medical Chemical Defense Research , March 19, 2003, Bethesda, MD (NIH/NIAID)no original (inglês)

15. Questões éticas relacionadas aos estudos

16. Situação regulatória global

UE

EMEA/CPMP Guidance Document on the use of Medicinal Products for the Treatment of Patients Exposed to Terrorist Attacks with Chemical Agents (April 2003) (EMA)no original (inglês)

17. Outras informações potencialmente úteis

Rella J, Marcus S, Wagner BJ. Rapid cyanide detection using the Cyantesmo kit. J Toxicol Clin Toxicol. 2004; 42(6):897-900. [PubMed Citation]no original (inglês)

Youso SL, Rockwood GA, Lee JP, Logue BA. Determination of cyanide exposure by gas chromatography-mass spectrometry analysis of cyanide-exposed plasma proteins. Anal Chim Acta. 2010 Sep 10;677(1):24-8. [PubMed Citation]no original (inglês)

Ma J, Dasgupta PK, Zelder FH, Boss GR. Determination of cyanide exposure by gas chromatography-mass spectrometry analysis of cyanide-exposed plasma proteins. Anal Chim Acta. 2012 Jul 29;736:78-84. [PubMed Citation]no original (inglês)

Youso SL, Rockwood GA, Logue BA. The analysis of protein-bound thiocyanate in plasma of smokers and non-smokers as a marker of cyanide exposure. J Anal Toxicol 2012 May;36(4):265-9. [PubMed Citation]no original (inglês)

HSDB. Isoamyl nitriteno original (inglês)

US NLM. ChemIDplus lite. Amyl nitritedose/fármaco conforme a fonte ↗no original (inglês)

18. Publicações

Bartlett JG, Greenberg MI, eds. PDR Guide to Terrorism Response. Montvale, NJ: Thomson PDR, 2005 p.321-41no 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)

Chen KK, Rose CL. Treatment of acute cyanide poisoning. J Am Med Assoc. 1956;162(12):1154-5.no original (inglês)

Dart RC, ed. Medical Toxicology 3 rd Edition. Philadelphia, PA: Lippincott Williams & Wilkins, 2004 p. 172-5no original (inglês)

DHHS/FDA; Emergency Preparedness and Response- Counterterrorism and Emerging Threats (12/01/2011)no original (inglês)

Donoghue AM. Alternative methods of administering amyl nitrite to victims of cyanide poisoning. Occup Environ Med. 2003 Feb;60(2):147. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

EMEA/CPMP Guidance Document on the use of Medicinal Products for the Treatment of Patients Exposed to Terrorist Attacks with Chemical Agents (April 2003) (EMA)no original (inglês)

Garcia R, Sherpherd G; Cyanide poisoning and its treatment. Pharmacotherapy. 2004 Oct;24(10):1358-65. [PubMed Citation]no original (inglês)

Geller RJ, Barthold C, Saiers JA, Hall AH. Pediatric cyanide poisoning: causes, manifestations, management, and unmet needs. Pediatrics. 2006 Nov;118(5):2146-58. [PubMed Citation]no original (inglês)

Hall AH , Linden CH, Kulig KW, Rumack BH; Cyanide poisoning from laetrile ingestion: role of nitrite therapy. Pediatrics. 1986 Aug;78:269-272no original (inglês)

Hall AH, Saiers J, Baud F. Which cyanide antidote? Crit Rev Toxicol 2009;39(7):541-52. [PubMed Citation]no original (inglês)

Hamel J; A Review of acute cyanide poisoning with a treatment update. Critical Care Nurse. 2011 Feb;31(1):72-82. [PubMed Citation]no original (inglês)

Hendricks SK, Ross B, Colvard MA, Cahill D, Shy K, Benedetti TJ. Amyl nitrite: use as a smooth muscle relaxant in difficult preterm cesarean section. Am J Perinatol 1992 Jul;9(4):289-92. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

HSDB. Isoamyl nitriteno original (inglês)

Johnson WS, Hall AH, Rumack BH. Cyanide poisoning successfully treated without 'therapeutic methemoglobin levels'. Am J Emerg Med. 1989; 7(4):437-440. [PubMed Citation]no original (inglês)

Keim ME. Terrorism involving cyanide: the prospect of improving preparedness in the prehospital setting. Prehosp Disaster Med. 2006 Mar-Apr;21(2):s56-60. [PubMed Citation]no original (inglês)

Klimmek R, Krettek C. Effects of amyl nitrite on circulation, respiration and blood homoeostasis in cyanide poisoning. Arch Toxicol. 1988 62(2-3):161-6. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Lasch EE and Shawa RE. Multiple cases of cyanide poisoning by apricot kernels in children from Gaza. Pediatrics. 1981; 68(1):5-7.no original (inglês)

Lavon O, Bentur Y. Does amyl nitrite have a role in the management of pre-hospital mass casualty cyanide poisoning? Clin Toxicol (Phila). 2010 Jul;48(6):477-84 (2010). [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Leavesley HB, Li L, Mukhopadhyay S, Borowitz JL, Isom GE. Nitrite-mediated antagonism of cyanide inhibition of cytochrome c oxidase in dopamine neurons. Toxicol Sci. 2010 Jun; 115(2):569-76. [PubMed Citation]dose/fármaco conforme a fonte ↗no original (inglês)

Ma J, Dasgupta PK, Zelder FH, Boss GR. Determination of cyanide exposure by gas chromatography-mass spectrometry analysis of cyanide-exposed plasma proteins. Anal Chim Acta. 2012 Jul 29;736:78-84. [PubMed Citation]no original (inglês)

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

Moore SJ, Norris JC, Walsh DA, Hume AS. Antidotal use of methemoglobin forming cyanide antagonists in concurrent carbon monoxide/cyanide intoxication. J Pharmacol Exp Ther. 1987 Jul;242(1):70-3. [PubMed Citation]no original (inglês)

Nakatani T, Kosugi Y, Mori A, Tajimi K, Kobayashi K; Changes in the parameters of oxygen metabolism in a clinical course recovering from potassium cyanide . Am J Emerg Med. 1993 May; 213-7. [PubMed Citation]no original (inglês)

Nelson LS, Lewin NA, Howland M, Hoffman RS, Goldfrank LR, Flomenbaum NE, eds. Goldfranks's Toxicologic Emergencies, 9 th Edition. New York, NY: McGraw-Hill Medical, 2011 p. 1689-91no original (inglês)

Product label: AMYL NITRITE inhalant [James Alexander Corporation] Last revised: July 2010 [DailyMed]dose/fármaco conforme a fonte ↗no original (inglês)

Reade MC, Davies SR, Morley PT, Dennett J, Jacobs IC. Review article: management of cyanide poisoning . Emerg Med Australas. 2012 Jun;24(3):225-38. [PubMed Citation]no original (inglês)

Rella J, Marcus S, Wagner BJ. Rapid cyanide detection using the Cyantesmo kit. J Toxicol Clin Toxicol. 2004; 42(6):897-900. [PubMed Citation]no original (inglês)

RePORTER. NIH. Countermeasures against chemical threats: countermeasures against cyanide.no original (inglês)

RePORTER. NIH. Development of a field-deployable device to rapidly measure blood cyanide levels .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)

US NLM. ChemIDplus lite. Amyl nitritedose/fármaco conforme a fonte ↗no original (inglês)

Vick JA , Froehlich HL. Studies of cyanide poisoning. Arch Int Pharmacodyn Ther 1985 Feb;273(2):314-22. [PubMed Citation]no original (inglês)

Vick JA, Froehlich H. Treatment of cyanide poisoning. Mil Med. 1991 Jul;156(7):330-9. [PubMed Citation]no original (inglês)

Wurzburg H; Treatment of cyanide poisoning in an industrial setting. Vet Hum Toxicol. 1996 Feb 38(1):44-7. [PubMed Citation]no original (inglês)

Yen D, Tsai J, Wang LM, Kao WF, Hu SC, Lee CH, Deng JF. The clinical experience of acute cyanide poisoning . Am J Emerg Med. 1995 Sep;13(5):524-8.no original (inglês)

Youso SL, Rockwood GA, Lee JP, Logue BA Determination of cyanide exposure by gas chromatography-mass spectrometry analysis of cyanide-exposed plasma proteins. Anal Chim Acta. 2010 Sep 10;677(1):24-8. [PubMed Citation]no original (inglês)

Youso SL, Rockwood GA, Logue BA. The analysis of protein-bound thiocyanate in plasma of smokers and non-smokers as a marker of cyanide exposure. J Anal Toxicol 2012 May;36(4):265-9. [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)