首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >An integrative investigation of the toxicity of Aconiti kusnezoffii radix and the attenuation effect of its processed drug using a UHPLC-Q-TOF based rat serum and urine metabolomics strategy
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An integrative investigation of the toxicity of Aconiti kusnezoffii radix and the attenuation effect of its processed drug using a UHPLC-Q-TOF based rat serum and urine metabolomics strategy

机译:基于UHPLC-Q-TOF的大鼠血清和尿代谢策略,对Aconiti Kusnezoffii毒性毒性的一致性研究及其加工药物的衰减效应

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Aconiti kusnezoffii radix (AKR), the root of Aconitum kusnezoffii Reichb., is commonly used in the treatment of the rheumatoid arthritis. However, the clinical application is limited due to its potential toxicity. Therefore, to investigate the mechanism of its potential neurotoxicity and nephrotoxicity, a comprehensive metabolomics study combined with serum biochemistry and histopathology measurements was carried out. A UHPLC-Q-TOF mass spectrometry based metabolomics approach was applied to characterize the AKR toxicity, while the toxicity attenuation effects of Aconiti kusnezoffii radix cotta (AKRC) on Wistar rats were also investigated. Two chromatographic techniques involving reversed-phase chromatography and hydrophilic interaction chromatography were combined for the serum and urine detection, which balanced the integrity and selectivity of the two matrices. Principal component analysis was used to determine the groups, and principal component analysis discriminant analysis was carried out to confirm the important variables. Then, the developed integrative toxicity evaluation method was applied to assess the toxicity of AKR and the attenuation effect of AKRC. The highly sensitive and specific toxic biomarkers, which can provide practical bases were identified for the diagnosis of the neurotoxicity and nephrotoxicity induced by AKR. In all, a total of 19 putative biomarkers were characterized, and related metabolic pathways were identified. The study demonstrated that the established metabolomics strategy is a powerful approach for investigating the mechanisms of herbal toxicity and the attenuation effect of a processing method and would provide medical solutions for other toxic herbal medications and further clinical evidence on how AKR improves symptoms of rheumatoid arthritis patients. (C) 2017 Elsevier B.V. All rights reserved.
机译:Aconiti Kusnezoffii基拉迪(AKR),Aconitum Kusnezoffii Reichb的根,通常用于治疗类风湿性关节炎。然而,由于其潜在的毒性,临床应用受到限制。因此,为了研究其潜在的神经毒性和肾毒性的机制,进行了综合的代谢物研究,结合血清生物化学和组织病理学测量。基于UHPLC-Q-TOF质谱法的代谢组种方法,拟于AKR毒性表征,而Aconiti Kusnezoffii陶器(AKRC)的毒性衰减效果也研究过。将涉及反相色谱和亲水性相互作用色谱的两种色谱技术组合用于血清和尿液检测,其平衡了两个基质的完整性和选择性。主要成分分析用于确定组,并进行主成分分析判别分析以确认重要变量。然后,应用开发的整合毒性评估方法来评估AKR的毒性和AKRC的衰减效应。鉴定了高度敏感和特异性的有毒生物标志物,其可以提供所诊断Akr诱导的神经毒性和肾毒性的诊断。总之,共有19个推定的生物标志物,并确定了相关的代谢途径。该研究表明,成熟的代谢组策略是调查草药毒性机制的强大方法和加工方法的衰减效应,并为其他有毒的草药药物提供医疗解决方案,以及关于AKR如何改善类风湿性关节炎患者的症状的进一步临床证据。 (c)2017年Elsevier B.V.保留所有权利。

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