Elevated Methemoglobin Levels in a Patient Treated with Hydroxocobalamin After Suspected Cyanide Exposure.


Journal

The Journal of emergency medicine
ISSN: 0736-4679
Titre abrégé: J Emerg Med
Pays: United States
ID NLM: 8412174

Informations de publication

Date de publication:
Nov 2020
Historique:
received: 03 02 2020
revised: 06 06 2020
accepted: 01 07 2020
pubmed: 5 10 2020
medline: 24 6 2021
entrez: 4 10 2020
Statut: ppublish

Résumé

Cyanide (CN) toxicity commonly occurs during enclosed-space fires. Historically, the first step in treating CN toxicity utilized amyl nitrite and sodium nitrite to induce methemoglobinemia, which can be dangerous in this population. Hydroxocobalamin (OHCob), which binds to CN to form the nontoxic metabolite cyanocobalamin, is now the first-line antidote for CN toxicity, and has the advantage of not inducing methemoglobinemia. A 62-year-old man presented to the Emergency Department (ED) after a house fire. He was intubated for respiratory distress and hypoxia with an initial carboxyhemoglobin of 1.3%, methemoglobin 0.3%, and anion gap 19. Eleven hours after presentation, his serum lactic acid was 9 mmol/L. Given his continued deterioration, 14 h after arrival he received OHCob 5 g i.v. for presumed CN toxicity. Methemoglobin concentration 4 min prior to OHCob administration was 0.7%, and 2 h after administration was 4.2%. This subsequently increased to 14.3% (16 h after OHCob administration) and peaked at 16.3% (47 h after OHCob administration), at which time he was administered a dose of methylene blue 50 mg i.v., 60 h after ED arrival. His methemoglobin concentrations fluctuated until a consistent downward trend starting at 92 h from ED arrival. He continued to deteriorate and expired on hospital day 5 with a methemoglobin concentration of approximately 6.0%. WHY SHOULD AN EMERGENCY PHYSICIAN BE AWARE OF THIS?: CN toxicity requires immediate recognition and treatment. The antidote, OHCob, is believed to not induce methemoglobinemia. However, this potential side effect must be considered by emergency physicians when treating suspected CN toxicity, especially if the patient does not improve after antidotal therapy.

Sections du résumé

BACKGROUND BACKGROUND
Cyanide (CN) toxicity commonly occurs during enclosed-space fires. Historically, the first step in treating CN toxicity utilized amyl nitrite and sodium nitrite to induce methemoglobinemia, which can be dangerous in this population. Hydroxocobalamin (OHCob), which binds to CN to form the nontoxic metabolite cyanocobalamin, is now the first-line antidote for CN toxicity, and has the advantage of not inducing methemoglobinemia.
CASE REPORT METHODS
A 62-year-old man presented to the Emergency Department (ED) after a house fire. He was intubated for respiratory distress and hypoxia with an initial carboxyhemoglobin of 1.3%, methemoglobin 0.3%, and anion gap 19. Eleven hours after presentation, his serum lactic acid was 9 mmol/L. Given his continued deterioration, 14 h after arrival he received OHCob 5 g i.v. for presumed CN toxicity. Methemoglobin concentration 4 min prior to OHCob administration was 0.7%, and 2 h after administration was 4.2%. This subsequently increased to 14.3% (16 h after OHCob administration) and peaked at 16.3% (47 h after OHCob administration), at which time he was administered a dose of methylene blue 50 mg i.v., 60 h after ED arrival. His methemoglobin concentrations fluctuated until a consistent downward trend starting at 92 h from ED arrival. He continued to deteriorate and expired on hospital day 5 with a methemoglobin concentration of approximately 6.0%. WHY SHOULD AN EMERGENCY PHYSICIAN BE AWARE OF THIS?: CN toxicity requires immediate recognition and treatment. The antidote, OHCob, is believed to not induce methemoglobinemia. However, this potential side effect must be considered by emergency physicians when treating suspected CN toxicity, especially if the patient does not improve after antidotal therapy.

Identifiants

pubmed: 33011041
pii: S0736-4679(20)30689-2
doi: 10.1016/j.jemermed.2020.07.008
pii:
doi:

Substances chimiques

Antidotes 0
Cyanides 0
Methemoglobin 9008-37-1
Carboxyhemoglobin 9061-29-4
Hydroxocobalamin Q40X8H422O

Types de publication

Case Reports Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e157-e162

Informations de copyright

Copyright © 2020 Elsevier Inc. All rights reserved.

Auteurs

Emily Kiernan (E)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia.

Joseph E Carpenter (JE)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia.

Camille A Dunkley (CA)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia.

David Koch (D)

Emory University School of Medicine, Atlanta, Georgia.

Brent W Morgan (BW)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia.

Alaina R Steck (AR)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia.

Brian Patrick Murray (BP)

Emory University School of Medicine, Atlanta, Georgia; Georgia Poison Control Center, Atlanta, Georgia; Wright-Patterson Medical Center, Wright-Patterson AFB, Ohio.

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Classifications MeSH