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优化粪便样本匀浆化用于非靶向代谢组学。

Optimization of fecal sample homogenization for untargeted metabolomics.

机构信息

Department of Chemistry, University of Alberta, Edmonton, AB, T6G 2G2, Canada.

DNA Genotek, Ottawa, ON, Canada.

出版信息

Metabolomics. 2023 Aug 11;19(8):74. doi: 10.1007/s11306-023-02036-4.

Abstract

INTRODUCTION

Fecal samples are highly complex and heterogeneous, containing materials at various stages of digestion. The heterogeneity and complexity of feces make stool metabolomics inherently challenging. The level of homogenization influences the outcome of the study, affecting the metabolite profiles and reproducibility; however, there is no consensus on how fecal samples should be prepared to overcome the topographical discrepancy and obtain data representative of the stool as a whole.

OBJECTIVES

Various combinations of homogenization conditions were compared to investigate the effects of bead size, addition of solvents and the differences between wet-frozen and lyophilized feces.

METHODS

The homogenization parameters were systematically altered to evaluate the solvent usage, bead size, and whether lyophilization is required in homogenization. The metabolic coverage and reproducibility were compared among the different conditions.

RESULTS

The current work revealed that a combination of mechanical and chemical lysis obtained by bead-beating with a mixture of big and small sizes of beads in an organic solvent is an effective way to homogenize fecal samples with adequate reproducibility and metabolic coverage. Lyophilization is required when bead-beating is not available.

CONCLUSIONS

A comprehensive and systematical evaluation of various fecal matter homogenization conditions provides a profound understanding for the effects of different homogenization methods. Our findings would be beneficial to assist with standardization of fecal sample homogenization protocol.

摘要

简介

粪便样本高度复杂且具有异质性,包含处于不同消化阶段的物质。粪便的异质性和复杂性使得粪便代谢组学的研究极具挑战性。均质化的程度会影响研究结果,影响代谢物图谱和重现性;然而,对于如何制备粪便样本以克服地域差异并获得代表整个粪便的代表性数据,尚无共识。

目的

比较了各种均质化条件的组合,以研究珠粒大小、溶剂添加以及湿冷冻和冻干粪便之间的差异对其的影响。

方法

系统改变均质化参数,以评估溶剂使用、珠粒大小以及均质化过程中是否需要冻干。比较了不同条件下的代谢物覆盖度和重现性。

结果

目前的工作表明,通过珠粒研磨与大小混合的珠粒在有机溶剂中的机械和化学裂解相结合的方法,可以有效地均质化粪便样本,同时具有足够的重现性和代谢物覆盖度。当无法进行珠粒研磨时,则需要进行冻干。

结论

对各种粪便均质化条件的全面系统评估,为不同均质化方法的影响提供了深刻的理解。我们的发现将有助于协助粪便样本均质化方案的标准化。

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