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Updated: Aug 6, 2026

Systems Analysis of the Neuroinflammatory and Hemodynamic Response to Traumatic Brain Injury
Published on: May 27, 2022
Relationships among nitrous oxide exposure, neurological injury and biomarkers
Laxna Bhujel1, Angela L Chiew1,2, Bhashita Jagarlamudi1,2,3
1Faculty of Medicine and Health, School of Clinical Medicine, University of New South Wales, Sydney, New South Wales, Australia.
Aims:
Recreational nitrous oxide (N2O) misuse is an increasing public health problem associated with functional cobalamin (B12) deficiency and severe neurological complications. Despite growing recognition of its harms, the dose-response relationship and clinical value of biomarkers remain unclear. This study aimed to characterize the demographics, patterns of use, outcomes, and biomarker utility in patients hospitalized with N2O toxicity, as well as to examine the relationship between exposure and toxicity.
Methods:
This retrospective cohort study included hospitalized individuals with N2O toxicity (2020-2025) across six Sydney hospitals. Weekly and cumulative N2O exposure volumes were estimated. Exposure volumes were compared with clinical outcomes and biomarker results to assess correlations and biomarker utility.
Results:
Eighty-one individuals across 100 presentations were included. Higher cumulative N2O exposure was associated with worse neurological impairment, including subacute combined degeneration of the spinal cord (SCD, p = .006) and peripheral neuropathy (PN, p = .036), and correlated with greater neuropathy severity (Spearman's ⍴ = 0.43, p = .001). Median homocysteine was 50 μmol/L (IQR:32-114;normal 5-15) with a median half-life of 14.59 h. Median methylmalonic acid (MMA) was 0.68 μmol/L (IQR:0.18-3.16;normal<0.27). B12 and holotranscobalamin showed high specificity (87% and 98%) but low sensitivity (22% and 5%) for detecting cases associated with SCD, while homocysteine and MMA showed high sensitivity (95% and 93%) but lower specificity (13% and 45%).
Conclusions:
Cumulative N2O exposure is the strongest predictor of severe neurological outcomes, demonstrating a dose-dependent relationship with neurotoxicity. Homocysteine and MMA were sensitive markers associated with neurological toxicity, making them useful screening biomarkers; however, their limited specificity reduces their utility as confirmatory tests. These findings reinforce the importance of clinical assessment and exposure history in diagnosing toxicity.
