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How to distinguish Guillain‐Barré syndrome from nitrous oxide‐induced neuropathy: A 2‐year, multicentric, retrospective study.

Authors :
Fortanier, Etienne
Berling, Edouard
Zanin, Adrien
Guillou, Adrien Le
Micaleff, Joelle
Nicolas, Guillaume
Lozeron, Pierre
Attarian, Shahram
Source :
European Journal of Neurology. Oct2023, Vol. 30 Issue 10, p3296-3306. 11p.
Publication Year :
2023

Abstract

Background: Recreational use of nitrous oxide (N2O) has dramatically increased in recent years, resulting in numerous cases of acute sensorimotor tetraparesis secondary to nitrous oxide‐induced neuropathy (N2On). Challenging clinical features can mimic Guillain‐Barré syndrome (GBS), the main differential diagnosis upon admission. The most sensitive biomarkers for distinguishing between these two conditions remain to be determined. Methods: Fifty‐eight N2On patients from three referral centers were retrospectively included over a 2‐year period and compared to GBS patients hospitalized during the same timeframe (47 patients). Collected demographic, clinical, biological, and electrophysiological data were compared between the two groups. Results: The typical N2On clinical pattern included distal sensorimotor deficit in lower limbs with absent reflexes, proprioceptive ataxia, and no cranial involvement (56.7% of our cohort). Misleading GBS‐like presentations were found in 14 N2On patients (24.1%), and 13 patients (22.4%) did not report N2O use during initial interview. Only half the N2On patients presented with reduced vitamin B12 serum levels upon admission. A slightly increased cut‐off (<200 pmol/L) demonstrated 85.1% sensitivity and 84.5% specificity in distinguishing N2On from GBS. Only 6.9% of N2On patients met the criteria for primary demyelination (p < 0.01), with only one presenting conduction blocks. A diagnostic algorithm combining these two biomarkers successfully classified all GBS‐like N2On patients. Conclusions: Vitamin B12 serum level < 200 pmol/L cut‐off and conduction blocks in initial electrophysiological study are the two most sensitive biomarkers for rapidly distinguishing N2On from GBS patients. These two parameters are particularly useful in clinically atypical N2On with GBS‐like presentation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13515101
Volume :
30
Issue :
10
Database :
Academic Search Index
Journal :
European Journal of Neurology
Publication Type :
Academic Journal
Accession number :
171811265
Full Text :
https://doi.org/10.1111/ene.15998