Multiple metabolic pathways are predictive of ricin intoxication in a rat model

Множественные метаболические пути являются предикторами интоксикации рицином в модели на крысах
Riccardo V. D’Elia, Sarah A. Goodchild, Catherine Winder, Andrew D. Southam, Ralf J. M. Weber, Fiona M. Stahl, Cerys Docx, Vikesh Patel, A. Christopher Green, Mark R. Viant, Roman A. Lukaszewski, Warwick B. Dunn
2019-07-01

AUROCUHPLC-MSmetabolic pathwaysricin intoxicationtriacylglycerides
INTRODUCTION: Exposure to ricin can be lethal and treatments that are under development have short windows of opportunity for administration after exposure. It is therefore essential to achieve early detection of ricin exposure to provide the best prognosis for exposed individuals. Ricin toxin can be detected in clinical samples via several antibody-based techniques, but the efficacy of these can be limited due to the rapid processing and cellular uptake of toxin in the body and subsequent low blood ricin concentrations. Other diagnostic tools that perform, in an orthogonal manner, are therefore desirable. OBJECTIVES: To determine time-dependent metabolic changes in Sprague-Dawley rats following intravenous exposure to ricin. METHODS: reversed phase UHPLC-MS assays followed by univariate and multivariate analysis. RESULTS: In Sprague-Dawley rats we have demonstrated that metabolic changes measured in blood can distinguish between rats exposed intravenously to ricin and controls prior to the onset of behavioral signs of intoxication after 24 h. A total of 37 metabolites were significantly altered following exposure to ricin when compared to controls. The arginine/proline, bile acid and triacylglyceride metabolic pathways were highlighted as being important with two triacylglycerides at 8 h post exposure giving an AUROC score of 0.94. At 16 h and 24 h the AUROC score increased to 0.98 and 1.0 with the number of metabolites in the panel increasing to 5 and 7, respectively. CONCLUSIONS: These data demonstrate that metabolites may be a useful tool to diagnose and detect ricin exposure, thus increasing the effectiveness of supportive therapy and future ricin-specific medical treatments.
1
Arginine/proline, bile acid, and triacylglyceride pathways were important metabolic signatures of ricin intoxication.
2
Blood metabolic profiles distinguished intravenously ricin-exposed Sprague-Dawley rats from controls 24 hours before behavioral intoxication signs appeared.
3
Metabolite-based diagnostics could provide orthogonal early detection to antibody assays and improve the timing of supportive or ricin-specific treatment.
4
Reversed-phase UHPLC-MS analysis identified 37 metabolites significantly altered after ricin exposure compared with controls.
5
Two triacylglycerides achieved an AUROC of 0.94 at 8 hours post-exposure; panels reached 0.98 at 16 hours and 1.0 at 24 hours.

Sprague-Dawley rats following intravenous ricin exposure

Time-dependent blood metabolic changes and their diagnostic discrimination of ricin intoxication, including alterations in arginine/proline, bile acid, and triacylglyceride pathways

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2019-07-01
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Riccardo V. D’Elia
Sarah A. Goodchild
Catherine Winder
Andrew D. Southam
Ralf J. M. Weber
Fiona M. Stahl
Cerys Docx
Vikesh Patel
A. Christopher Green
Mark R. Viant
Roman A. Lukaszewski
Warwick B. Dunn
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