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基于固相微萃取的微型探头及从活体脑中提取神经递质的方案。

Solid Phase Microextraction-Based Miniaturized Probe and Protocol for Extraction of Neurotransmitters from Brains in Vivo.

机构信息

Department of Chemistry , University of Waterloo , 200 University Avenue West , Waterloo , Ontario N2L 3G1 , Canada.

Department of Psychology , Vanderbilt University , PMB 407817, 2301 Vanderbilt Place , Nashville , Tennessee 37240 , United States.

出版信息

Anal Chem. 2019 Apr 2;91(7):4896-4905. doi: 10.1021/acs.analchem.9b00995. Epub 2019 Mar 18.

Abstract

Despite the importance of monitoring and correlating neurotransmitter concentrations in the brain with observable behavior and brain areas in which they act, in vivo measurement of multiple neurochemicals in the brain remains a challenge. Here, we propose an alternative solid phase microextraction-based (SPME) chemical biopsy approach as a viable method for acquirement of quantitative information on multiple neurotransmitters by one device within a single sampling event, with multisite measurement capabilities and minimized invasiveness, as no tissue is removed. The miniaturized SPME probe developed for integrated in vivo sampling/sample preparation has been thoroughly optimized with respect to probe shape, desorption solvent, and extracting phase tailored for extraction of small hydrophilic molecules via synthesis and functionalization of the SPME coating. Experimental evaluations of sampling time and storage strategy led to achieving appropriate temporal resolution versus recovery balance as well as little or no analyte loss, respectively. Validation of the developed SPME-HPLC-MS/MS protocol in a surrogate brain matrix yielded satisfactory accuracies of 80-100%, precision below 17%, as well as linear dynamic range and limits of quantitation suitable for determining neurochemicals at physiologically relevant levels. Finally, we present a proof-of-concept in vivo application in macaque brain, where several target neurotransmitters were extracted simultaneously from three brain areas. The developed probe and protocol are herein presented as a potential powerful addition to the existing in vivo toolbox for measurements of local levels of neurochemicals in multiple brain systems implicated in the neuropathology of psychiatric disorders.

摘要

尽管监测和关联脑内神经递质浓度与可观察行为以及它们作用的脑区非常重要,但在活体中测量脑内的多种神经化学物质仍然是一个挑战。在这里,我们提出了一种替代的固相微萃取(SPME)化学活检方法,作为一种可行的方法,通过一个设备在单个采样事件中获得关于多种神经递质的定量信息,具有多部位测量能力和最小的侵入性,因为不会去除组织。为了通过单个采样事件获得关于多种神经递质的定量信息,我们开发了一种用于集成体内采样/样品制备的微型化 SPME 探头,并对其进行了彻底优化,包括探头形状、解吸溶剂和提取相,这些都是通过 SPME 涂层的合成和功能化来针对小亲水分子的提取进行定制的。对采样时间和存储策略的实验评估分别导致实现了适当的时间分辨率与恢复平衡以及最小或没有分析物损失。在替代脑基质中对开发的 SPME-HPLC-MS/MS 方案进行验证,得到了 80-100%的令人满意的准确度、低于 17%的精密度以及适合在生理相关水平测定神经化学物质的线性动态范围和定量限。最后,我们在猕猴大脑中进行了体内应用的概念验证,其中从三个脑区同时提取了几种目标神经递质。所开发的探头和方案在此被呈现为现有活体工具包的一个潜在强大补充,用于测量与精神障碍神经病理学相关的多个脑系统中的局部神经化学物质水平。

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