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MixONat, a Software for the Dereplication of Mixtures Based on C-13 NMR Spectroscopy

机译:MIXONAT,一种基于C-13 NMR光谱的混合物全体的软件

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摘要

Whether chemists or biologists, researchers dealing with metabolomics require tools to decipher complex mixtures. As a part of metabolomics and initially dedicated to identifying bioactive natural products, dereplication aims at reducing the usual time-consuming process of known compounds isolation. Mass spectrometry and nuclear magnetic resonance are the most commonly reported analytical tools during dereplication analysis. Though it has low sensitivity, C-13 NMR has many advantages for such a study. Notably, it is nonspecific allowing simultaneous high-resolution analysis of any organic compounds including stereoisomers. Since NMR spectrometers nowadays provide useful data sets in a reasonable time frame, we have embarked upon writing software dedicated to C-13 NMR dereplication. The present study describes the development of a freely distributed algorithm, namely MixONat and its ability to help researchers decipher complex mixtures. Based on Python 3.5, MixONat analyses a {H-1}-(BC)-B-13 NMR spectrum optionally combined with DEPT-135 and 90 data-to distinguish carbon types (i.e., CH3, CH2, CH, and C)-as well as a MW filtering. The software requires predicted or experimental carbon chemical shifts (delta c) databases and displays results that can be refined based on user interactions. As a proof of concept, this C-13 NMR dereplication strategy was evaluated on mixtures of increasing complexity and exhibiting pharmaceutical (poppy alkaloids), nutritional (rosemary extracts) or cosmetics (mangosteen peel extract) applications. Associated results were compared with other methods commonly used for dereplication. MixONat gave coherent results that rapidly oriented the user toward the correct structural types of secondary metabolites, allowing the user to distinguish between structurally close natural products, including stereoisomers.
机译:化学家或生物学家,处理代谢组学的研究人员是否需要翻译复杂混合物的工具。作为代谢组的一部分,最初致力于识别生物活性天然产物,寄养目的是降低已知化合物分离的通常耗时的过程。质谱和核磁共振是全统计分析期间最常见的分析工具。虽然它具有低灵敏度,但C-13 NMR对这种研究具有许多优点。值得注意的是,它是非特异性允许对包括立体异构体的任何有机化合物的同时高分辨率分析。由于NMR光谱仪现在在合理的时间框架中提供有用的数据集,因此我们已经开始写入专用于C-13 NMR含量的软件。本研究描述了自由分布式算法的发展,即混合器及其帮助研究人员破译复杂混合物的能力。基于Python 3.5,MixOnat分析任选地与Dept-135和90数据组合的{H-1} - (BC)-B-13 NMR谱 - 区分碳类型(即CH3,CH2,CH和C) - 以及MW过滤。该软件需要预测或实验碳化学位移(Delta C)数据库,并显示基于用户交互可以精制的结果。作为概念证明,在增加复杂性和表现出药物(罂粟生物碱),营养(迷迭香提取物)或化妆品(山竹果皮提取物)应用的混合物中评估了该C-13 NMR无统策略。将相关结果与常用统计的其他方法进行比较。 MixOnat产生了连贯的结果,使用户快速地定向了用户的次级代谢物的正确结构类型,允许使用者区分在结构上关闭天然产物,包括立体异构体。

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  • 来源
    《Analytical chemistry》 |2020年第13期|共9页
  • 作者单位

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers EA2645 LERIA F-49045 Angers France;

    Univ Angers EA2645 LERIA F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

    Univ Angers EA2645 LERIA F-49045 Angers France;

    Univ Angers Fac Hlth Sci Dept Pharm SONAS EA921 SFR QUASAV F-49045 Angers France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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