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Capillary electrophoresis as a metabolomic tool in antioxidant therapy studies.

机译:毛细管电泳是抗氧化剂治疗研究中的代谢组学工具。

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摘要

The development of an approach by which two CE methods operating with opposite polarities and orthogonal capillary electrophoretic separation modes (method 1: normal polarity cyclodextrin modified MEKC (CD-MEKC) and method 2: reversed polarity CZE) for the sequential application to urinary samples from a type I diabetes metabolomics investigation is discussed. During method development, problematic MEKC profile drift issues arising from the high glucose content of the diabetic animal urine samples required some electrolyte modifications involving the use of hexafluoroisopropanol (HFIP) to circumvent the drift. Data derived from both methods were subsequently subjected to alignment, normalization and multi-dimensional scaling (MDS) procedures. In such a way, classification of samples derived from control and diabetic animals receiving a placebo from those receiving an antioxidant nutraceutical, was successfully demonstrated. Such a strategy is a cost effective and comprehensive metabolomics tool useful for describing UV absorbing metabolite disease-related changes in nutra/pharma-ceutical studies.
机译:一种方法的开发,该方法可将两种CE方法以相反极性和正交毛细管电泳分离模式操作(方法1:正极性环糊精修饰的MEKC(CD-MEKC)和方法2:极性相反的CZE),以依次应用于尿液中的尿液样品讨论了I型糖尿病代谢组学研究。在方法开发过程中,由于糖尿病动物尿液样本中葡萄糖含量高而引起的有问题的MEKC曲线漂移问题需要对电解质进行一些修改,包括使用六氟异丙醇(HFIP)来避免漂移。随后将从这两种方法获得的数据进行对齐,归一化和多维缩放(MDS)程序。以这种方式,成功地证明了来自接受安慰剂的对照动物和糖尿病动物的样品与接受抗氧化剂营养品的动物的样品的分类。这种策略是一种经济有效的综合代谢组学工具,可用于描述营养/药物研究中与紫外线吸收代谢物疾病相关的变化。

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