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A Dual-Column Solid Phase Extraction Strategy for Online Collection and Preparation of Continuously Flowing Effluent Streams for Mass Spectrometry

机译:用于在线收集的双柱固相提取策略并为质谱法的连续流出流出物流的制备

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摘要

Current desalination techniques for mass spectrometry-based protocols are problematic for performing temporal response studies where increased temporal resolution requires small samples and faster sampling frequencies, which greatly increases the number of samples and sample preparation time. These challenges are pertinent to cellular dynamics experiments, where it is important to sample the biological system frequently and with as little sample waste as possible. To address these needs, we present a dual-column online solid phase extraction (SPE) approach capable of preconcentrating and preparing a constantly perfusing sample stream, with minimal to no sample loss. This strategy is evaluated for use in microfluidic bioreactor studies specifically aimed at characterizing suitable sample flow rates, temporal resolving power, and analyte concentrations. In this work we demonstrate that this strategy may be used for flow rates as low as 500 nL/min, with temporal resolving power on the order of 3 minutes, with analyte loadings ranging from fmol to pmol for metabolites. Under these conditions recoveries of ca. 80% are obtained even at fmol loadings.
机译:当前用于基于质谱法的方案的脱盐技术对于执行时间响应研究是有问题的,在时间响应研究中,提高的时间分辨率需要小的样品和更快的采样频率,这大大增加了样品数量和样品制备时间。这些挑战与细胞动力学实验有关,在细胞动力学实验中,对生物系统进行频繁采样并尽可能减少样本浪费非常重要。为了满足这些需求,我们提出了一种双柱在线固相萃取(SPE)方法,该方法能够预浓缩并制备不断注入的样品流,而样品损失最少,甚至没有损失。对该策略进行了评估,以用于微流体生物反应器研究中,该研究专门旨在表征合适的样品流速,时间分辨能力和分析物浓度。在这项工作中,我们证明了该策略可用于低至500 nL / min的流速,时间分辨能力为3分钟,代谢物的分析物上样量从fmol到pmol。在这些条件下,回收率约为即使在fmol负载下也可达到80%。

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