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用于溶液中活体 NMR 的低容量流系统的开发与应用。

Development and Application of a Low-Volume Flow System for Solution-State in Vivo NMR.

机构信息

Department of Physical and Environment Sciences , University of Toronto Scarborough , 1265 Military Trail , Toronto , Ontario , Canada M1C 1A4.

Ministry of Environment and Climate Change , Toronto , Ontario M9P 3V6 , Canada.

出版信息

Anal Chem. 2018 Jul 3;90(13):7912-7921. doi: 10.1021/acs.analchem.8b00370. Epub 2018 Jun 18.

DOI:10.1021/acs.analchem.8b00370
PMID:29863330
Abstract

In vivo nuclear magnetic resonance (NMR) spectroscopy is a particularly powerful technique, since it allows samples to be analyzed in their natural, unaltered state, criteria paramount for living organisms. In this study, a novel continuous low-volume flow system, suitable for in vivo NMR metabolomics studies, is demonstrated. The system allows improved locking, shimming, and water suppression, as well as allowing the use of trace amounts of expensive toxic contaminants or low volumes of precious natural environmental samples as stressors. The use of a double pump design with a sump slurry pump return allows algal food suspensions to be continually supplied without the need for filters, eliminating the possibility of clogging and leaks. Using the flow system, the living organism can be kept alive without stress indefinitely. To evaluate the feasibility and applicability of the flow system, changes in the metabolite profile of C enriched Daphnia magna over a 24-h period are compared when feeding laboratory food vs exposing them to a natural algal bloom sample. Clear metabolic changes are observed over a range of metabolites including carbohydrates, lipids, amino acids, and a nucleotide demonstrating in vivo NMR as a powerful tool to monitor environmental stress. The particular bloom used here was low in microcystins, and the metabolic stress impacts are consistent with the bloom being a poor food source forcing the Daphnia to utilize their own energy reserves.

摘要

体内核磁共振(NMR)光谱学是一种特别强大的技术,因为它允许对样品进行在其自然、未改变的状态下进行分析,这是对于生物体而言是至关重要的标准。在这项研究中,展示了一种新颖的连续低容量流系统,适用于体内 NMR 代谢组学研究。该系统允许改进锁定、匀场和水抑制,以及允许使用痕量的昂贵有毒污染物或少量珍贵的天然环境样品作为应激物。使用带有储液器泥浆泵回流的双泵设计允许连续供应藻类食物悬浮液,而无需过滤器,消除了堵塞和泄漏的可能性。使用该流系统,可以使生物体在没有压力的情况下无限期地存活。为了评估该流系统的可行性和适用性,在 24 小时内,比较了喂养实验室食物和暴露于天然藻类水华样本时,富集的大型溞体内代谢物图谱的变化。在包括碳水化合物、脂质、氨基酸和核苷酸在内的一系列代谢物中观察到明显的代谢变化,证明了体内 NMR 是监测环境应激的有力工具。这里使用的特定水华微囊藻毒素含量低,代谢应激的影响与水华是一种不良食物来源一致,迫使大型溞利用自己的能量储备。

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