Literature DB >> 19874663

Convenient headspace gas chromatographic determination of azide in blood and plasma.

Robert Meatherall1, Wes Palatnick.   

Abstract

Azide in human blood and plasma samples was derivatized with propionic anhydride in a headspace vial without prior sample preparation. The reaction proceeds quickly at room temperature to form propionyl azide. A portion of the headspace was assayed by gas chromatography with a nitrogen-phosphorus detector. In the heated injector of the gas chromatograph, the propionyl azide undergoes thermal rearrangement, forming ethyl isocyanate, which is subsequently chromatographed and detected. Propionitrile was used as the internal standard. The method is linear to at least 20 microg/mL. Limit of quantitation was 0.04 microg/mL, and the within-run coefficient of variation was 5.6% at 1 microg/mL. There was no interference from cyanide. A fatality report in which blood and plasma azide concentrations from a 59-year-old man were monitored for 24 h following the ingestion of an unknown amount of sodium azide is presented. The patient became critically ill after his self-inflicted sodium azide ingestion. He was intubated and treated with vasopressors and aggressive supportive care, including extracorporeal membrane oxygenation therapy, in the intensive care facility but died from neurological brain damage secondary to anoxia. On admission, 1.4 h after ingestion, his azide level was 5.6 microg/mL (blood); shortly thereafter, it had risen to 13.7 microg/mL (plasma) and, subsequently, was projected to have been eliminated by 16.7 h. No azide was detected in the postmortem blood and vitreous humor.

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Year:  2009        PMID: 19874663     DOI: 10.1093/jat/33.8.525

Source DB:  PubMed          Journal:  J Anal Toxicol        ISSN: 0146-4760            Impact factor:   3.367


  3 in total

1.  Mdivi‑1 attenuates sodium azide‑induced apoptosis in H9c2 cardiac muscle cells.

Authors:  Xuehua Xu; Chengliang Luo; Zhixiang Zhang; Jun Hu; Xiangting Gao; Yuanyi Zuo; Yun Wang; Shaohua Zhu
Journal:  Mol Med Rep       Date:  2017-08-24       Impact factor: 2.952

2.  Toxicological analysis of azide and cyanide for azide intoxications using gas chromatography.

Authors:  Maaike A C Bruin; Douwe Dekker; Nikkie Venekamp; Matthijs Tibben; Hilde Rosing; Dylan W de Lange; Jos H Beijnen; Alwin D R Huitema
Journal:  Basic Clin Pharmacol Toxicol       Date:  2020-11-03       Impact factor: 4.080

3.  Sodium azide poisoning: a narrative review.

Authors:  John Tat; Karen Heskett; Shiho Satomi; Renate B Pilz; Beatrice A Golomb; Gerry R Boss
Journal:  Clin Toxicol (Phila)       Date:  2021-06-15       Impact factor: 4.467

  3 in total

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