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多种代谢途径可预测大鼠模型中蓖麻毒素中毒。

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

机构信息

Dstl Porton Down, Salisbury, SP4 0JQ, UK.

Phenome Centre Birmingham and School of Biosciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.

出版信息

Metabolomics. 2019 Jul 3;15(7):102. doi: 10.1007/s11306-019-1547-9.

Abstract

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

Sprague-Dawley rats were intravenously exposed to ricin and multiple blood samples were collected from each animal for up to 48 h following exposure in two independent studies. Plasma samples were analysed applying HILIC and C 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.

摘要

简介

接触蓖麻毒素可能是致命的,而且正在开发的治疗方法在接触后只有很短的治疗窗口期。因此,必须尽早发现蓖麻毒素暴露,为暴露个体提供最佳预后。可以通过几种基于抗体的技术在临床样本中检测到蓖麻毒素,但由于毒素在体内的快速处理和细胞摄取以及随后血液中蓖麻毒素浓度低,这些技术的效果可能会受到限制。因此,需要其他以正交方式发挥作用的诊断工具。

目的

确定静脉注射蓖麻毒素后 Sprague-Dawley 大鼠随时间的代谢变化。

方法

Sprague-Dawley 大鼠静脉注射蓖麻毒素,在两项独立研究中,从每只动物暴露后 48 小时内采集多个血液样本。使用亲水作用色谱和 C 反相 UHPLC-MS 分析方法分析血浆样本,然后进行单变量和多变量分析。

结果

在 Sprague-Dawley 大鼠中,我们已经证明,在暴露后 24 小时出现中毒行为迹象之前,测量血液中的代谢变化可以区分静脉注射蓖麻毒素的大鼠和对照动物。与对照组相比,暴露于蓖麻毒素后有 37 种代谢物发生了显著改变。精氨酸/脯氨酸、胆汁酸和三酰甘油代谢途径被突出显示为重要途径,在暴露后 8 小时的两种三酰甘油具有 0.94 的 AUROC 评分。在 16 小时和 24 小时时,AUROC 评分分别增加到 0.98 和 1.0,面板中的代谢物数量分别增加到 5 和 7。

结论

这些数据表明,代谢物可能是诊断和检测蓖麻毒素暴露的有用工具,从而提高支持性治疗和未来蓖麻毒素特异性治疗的效果。

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