...
首页> 外文期刊>Analytical chemistry >Microfluidic Platform with In-Chip Electrophoresis Coupled to Mass Spectrometry for Monitoring Neurochemical Release from Nerve Cells
【24h】

Microfluidic Platform with In-Chip Electrophoresis Coupled to Mass Spectrometry for Monitoring Neurochemical Release from Nerve Cells

机译:芯片内电泳与质谱联用的微流控平台,用于监测神经细胞中神经化学物质的释放

获取原文
获取原文并翻译 | 示例
           

摘要

Chemical stimulus-induced neurotransmitter release from neuronal cells is well-documented. However, the dynamic changes in neurochemical release remain to be fully explored. In this work, a three-layered microfluidic chip was fabricated and evaluated for studying the dynamics of neurotransmitter release from PC-12 cells. The chip features integration of a nanoliter sized chamber for cell perfusion, pneumatic pressure valves for fluidic control, a microfluidic channel for electrophoretic separation, and a nanoelectrospray emitter for ionization in MS detection. Deploying this platform, a microchip electrophoresis mass spectrometric method (MCE-MS) was developed to simultaneously quantify important neurotransmitters, including dopamine (DA), serotonin (5-HT), aspartic acid (Asp), and glutamic acid (Glu) without need for labeling or enrichment. Monitoring neurotransmitter release from PC-12 cells exposed to KCl (or alcohol) revealed that all four neurotransmitters investigated were released. Two release patterns were observed, one for the two monoamine neurotransmitters (i.e., DA and 5-HT) and another for the two amino acid neurotransmitters. Release dynamics for the two monoamine neurotransmitters was significantly different. The cells released DA most quickly and heavily in response to the stimulation. After exposure to the chemical stimulus for 4 min, the DA level in the perfusate from the cells was 86% lower than that at the beginning. Very interestingly, the cells started to release 5-HT in large quantities when they stopped releasing DA. These results suggest that DA and 5-HT are packaged into different vesicle pools and they are mobilized differently in response to chemical stimuli. The microfluidic platform proposed is proven useful for monitoring cellular release in biological studies.
机译:化学刺激引起的神经元细胞神经递质的释放是有据可查的。但是,神经化学释放的动态变化仍有待充分探讨。在这项工作中,制作了三层微流控芯片并进行了评估,以研究PC-12细胞释放神经递质的动力学。该芯片具有用于细胞灌注的纳升大小的腔室,用于流体控制的气压阀,用于电泳分离的微流体通道以及用于MS检测中电离的纳米电喷雾发射器的集成。利用该平台,开发了一种微芯片电泳质谱法(MCE-MS),可同时对重要的神经递质进行定量,包括多巴胺(DA),血清素(5-HT),天冬氨酸(Asp)和谷氨酸(Glu)。用于标记或浓缩。监测暴露于氯化钾(或酒精)的PC-12细胞中神经递质的释放表明所研究的所有四种神经递质均被释放。观察到两种释放模式,一种为两种单胺神经递质(即DA和5-HT),另一种为两种氨基酸神经递质。两种单胺神经递质的释放动力学有显着差异。细胞对刺激的响应最快,最重。暴露于化学刺激4分钟后,细胞灌注液中的DA水平比开始时降低了86%。非常有趣的是,当细胞停止释放DA时,它们开始大量释放5-HT。这些结果表明,DA和5-HT被包装在不同的囊泡池中,并且它们对化学刺激的反应也不同。事实证明,提出的微流体平台可用于监测生物学研究中的细胞释放。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号