首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Metabolite discovery of helicidum in rat urine with XCMS based on the data of ultra performance liquid chromatography coupled to time-of-flight mass spectrometry
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Metabolite discovery of helicidum in rat urine with XCMS based on the data of ultra performance liquid chromatography coupled to time-of-flight mass spectrometry

机译:基于超高效液相色谱-飞行时间质谱联用数据的XCMS发现大鼠尿中螺旋藻的代谢物

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The present study demonstrates the use of XCMS (various forms (X) of chromatography coupled to mass spectrometry), an open-source software tool primarily used in bioinformatics, on the data of ultra-performance liquid chromatography connected online with a mass spectrometer (UPLC/MS) for the discovery of the metabolites of helicidum in urine after oral single dosage to rats. Helicidum (formaldehydephenyl-O-β-d-pyranosyl alloside) is the major active component of the fruits of Helicid hilagirica Beed. In China, it is often used in the clinic to treat neurasthenic syndromes, vascular headache, and trigeminal neuralgia with high efficacy and low side effect and toxicity. The urine samples of five rats were collected during 0-4, 4-8, 8-12, 12-16, 16-20, 20-24, 24-32, 32-40, and 40-48h, respectively, after oral administration of helicidum at a dosage of 25.0mg/kg. A UPLC coupled to time-of-flight MS (UPLC/TOF MS) was used to analyze the samples. Concerning XCMS, the "raw" format files were preliminarily converted to the open mzXML format using massWolf-4.3.1 (http://sourceforge.net/projects/sashimi/files/massWolf%20(MassLynx%20converter)/). For converting lots of files a time, we wrote a tool rawTomzXML which also uses massWolf-4.3.1. The data were processed using XCMS version l.26.0 (http://www.bioconductor.org/packages/2.8/bioc/html/xcms.html) running under R version 2.13 (http://http://www.r-project.org/) which provided the running platform for XCMS. The "centWave" method from XCMS was used for chromatographic peak detection. Based on the m/z data of the metabolites obtained by XCMS, MS was used to identify the molecular formula. Nine metabolites were finally found and identified. For six of them, the bio-transformation mechanisms of the parent compound was elucidated: glucuronide conjugation (C _(19)H _(24)O _(14)), reduction (C _(13)H _(18)O _7), oxidation (C _(13)H _(16)O _8), methylation (C _(14)H _(18)O _7), and the mixed transformation of reduction, methylation, and acetylation (C _(16)H _(22)O _8). For the other three metabolites, C _(11)H _(19)N _3O _9, C _(11)H _(21)N _3O _9, and C _(14)H _(15)NO _7, the bio-transformation mechanisms remain unknown and need further investigation. Calculated as mass of helicidum, the cumulative urine excretion rate of the metabolites was 8.39%. The amount of oxidized helicidum was more than 50% among the metabolites while the parent compound helicidum was 13.28% and the reduced helicidum 11.72%, indicating that oxidation was the major bio-transformation that occurred in vivo.
机译:本研究证明了XCMS(与质谱联用的各种形式的色谱(X))是一种主要用于生物信息学的开源软件工具,可用于在线连接质谱仪(UPLC)的超高效液相色谱数据/ MS)用于在大鼠单次口服后发现尿中螺旋藻的代谢产物。 Helicidum(甲醛苯基-O-β-d-吡喃糖基别糖苷)是Helicid hilagirica Beed果实的主要活性成分。在中国,它通常在临床上用于治疗神经衰弱综合症,血管性头痛和三叉神经痛,具有高疗效,低副作用和低毒性的特点。口服后分别在0-4、4-8、8-12、12-16、16-20、20-24、24-32、32-40和40-48h收集五只大鼠的尿液样本以25.0mg / kg的剂量施用螺旋藻。使用与飞行时间质谱仪(UPLC / TOF MS)耦合的UPLC分析样品。关于XCMS,已使用massWolf-4.3.1(http://sourceforge.net/projects/sashimi/files/massWolf%20(MassLynx%20converter)/)将“原始”格式文件初步转换为开放的mzXML格式。为了一次转换大量文件,我们编写了一个工具rawTomzXML,该工具也使用massWolf-4.3.1。使用XCMS版本l.26.0(http://www.bioconductor.org/packages/2.8/bioc/html/xcms.html)在R版本2.13(http:// http://www.r -project.org/),它为XCMS提供了运行平台。 XCMS的“ centWave”方法用于色谱峰检测。根据XCMS获得的代谢物的m / z数据,使用MS鉴定分子式。最终发现并鉴定了九种代谢物。对于其中的六个,阐明了母体化合物的生物转化机理:葡糖醛酸苷共轭(C _(19)H _(24)O _(14)),还原(C _(13)H _(18)O _7),氧化(C _(13)H _(16)O _8),甲基化(C _(14)H _(18)O _7)和还原,甲基化和乙酰化的混合转化(C _( 16)H _(22)O _8)。对于其他三种代谢物C _(11)H _(19)N _3O _9,C _(11)H _(21)N _3O _9和C _(14)H _(15)NO _7,生物-转化机制仍然未知,需要进一步研究。以螺旋藻质量计,代谢产物的累积尿排泄率为8.39%。代谢产物中氧化螺旋藻的含量超过50%,而母体化合物螺旋藻的含量为13.28%,还原螺旋藻的含量为11.72%,表明氧化是体内发生的主要生物转化。

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