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Monitoring Dopamine ex Vivo during Electrical Stimulation Using Liquid-Microjunction Surface Sampling

机译:使用液体微结表面采样在电刺激期间监测多巴胺离体

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Liquid-microjunction surface sampling (LMJ-SS) is an ambient ionization technique based on the continuous flow of solvent using an in situ microextraction device in which solvent moves through the probe, drawing in the analytes in preparation for ionization using an electrospray ionization source. However, unlike traditional mass spectrometry (MS) techniques, it operates under ambient pressure and requires no sample preparation, thereby making it ideal for rapid sampling of thicker tissue sections for electrophysiological and other neuroscientific research studies. Studies interrogating neural synapses, or a specific neural circuit, typically employ thick, ex vivo tissue sections maintained under near-physiological conditions to preserve tissue viability and maintain the neural networks. Deep brain stimulation (DBS) is a surgical procedure used to treat the neurological symptoms that are associated with certain neurodegenerative and neuropsychiatric diseases. Parkinsons disease (PD) is a neurological disorder which is commonly treated with DBS therapy. PD is characterized by the degeneration of dopaminergic neurons in the substantia nigra pars compacta portion of the brain. Here, we demonstrate that the LMJ-SS methodology can provide a platform for ex vivo analysis of the brain during electrical stimulation, such as DBS. We employ LMJ-SS in the ex vivo analysis of mouse brain tissue for monitoring dopamine during electrical stimulation of the striatum region. The mouse brain tissue was sectioned fresh post sacrifice and maintained in artificial cerebrospinal fluid to create near-physiological conditions before direct sampling using LMJ-SS. A selection of metabolites, including time-sensitive metabolites involved in energy regulation in the brain, were identified using standards, and the mass spectral database mzCloud was used to assess the feasibility of the methodology. Thereafter, the intensity of m/z 154 corresponding to protonated dopamine was monitored before and after electrical stimulation of the striatum region, showing an increase in signal directly following a stimulation event. Dopamine is the key neurotransmitter implicated in PD, and although electrochemical detectors have shown such increases in dopamine post-DBS, this is the first study to do so using MS methodologies.
机译:液体微结表面采样(LMJ-SS)是一种基于使用溶剂通过探针的溶剂的连续溶剂的连续流动的环境电离技术,其中在分析物中绘制用于使用电喷雾电离源进行电离。然而,与传统的质谱(MS)技术不同,它在环境压力下运行并且不需要样品制备,从而使其成为电生理和其他神经科学研究研究的较厚组织切片的快速采样。研究询问神经突触或特定的神经电路,通常采用厚体内组织切片,在接近生理条件下保持,以保持组织存活率并维持神经网络。深脑刺激(DBS)是一种用于治疗与某些神经变性和神经精神疾病相关的神经系统症状的外科手术。帕金森病(PD)是一种常见的含有DBS疗法的神经系统疾病。 PD的特征在于大脑的基质NIGRA中的多巴胺能神经元的变性。在这里,我们证明了LMJ-SS方法可以在电刺激期间为大脑进行前体内分析,例如DBS提供平台。我们在小鼠脑组织前体内分析中使用LMJ-SS监测多巴胺在纹状体区域的电气刺激期间。小鼠脑组织被切片的新鲜后牺牲,并在使用LMJ-SS直接采样之前维持在人工脑脊液中以产生近生物条件。使用标准鉴定了一种代谢物,包括涉及脑中能量调节的时间敏感的代谢物,并使用质谱数据库MZCloud来评估方法的可行性。此后,在纹状体区域的电刺激之前和之后监测对应于质子化多巴胺的M / Z 154的强度,显示出在刺激事件之后直接的信号增加。多巴胺是涉及PD的关键神经递质,但虽然电化学检测器已经显示在DOPamine后DBS的增加,但是使用MS方法是这样做的第一研究。

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