Microfabricated Liquid Chromatography System for Analysis of Neurotransmitters
Microfabricated Liquid Chromatography System for Analysis of Neurotransmitters
批准号:
8982717
负责人:
James P Grinias
金额:
$5.24万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-15 至 2017-09-14
关键词:
AffectAnimal ModelBiologicalBiological AssayBrainBrain ChemistryChemicalsCoupledDeep Brain StimulationDetectionDevelopmentDevicesElectrospray IonizationFrequenciesGlassGlutamatesGoalsInjection of therapeutic agentLiquid ChromatographyMeasurementMeasuresMethodsMicrodialysisMicrofabricationMicrofluidic MicrochipsModelingMonitorMovement DisordersNatureNeural PathwaysNeurotransmittersParkinson DiseaseParkinsonian DisordersPatientsPerformancePerfusionPreparationPumpRattusResearchResistanceResolutionRodent ModelSTN stimulationSamplingSignal TransductionSolventsSpeedStructure of subthalamic nucleusSymptomsSystemSystems AnalysisSystems IntegrationTechniquesTestingTherapeuticTimeTremorWorkbasedesigngamma-Aminobutyric Acidimprovedin vivoliquid chromatography mass spectrometryminiaturizenanolitreneurochemistryneurotransmissionneurotransmitter releaseneurotransmitter uptakeparticleplatinum electrodepressurepresynapticpublic health relevanceresearch studysuccesstemporal measurementtoolwasting
中文摘要
描述(申请人提供):拟议的研究旨在帮助了解脑深部刺激(DBS)过程中发生的潜在神经传递,DBS是一种用于缓解帕金森氏症患者震颤症状的常见治疗技术。虽然星展银行的好处是众所周知的,但其发生机制仍存在争议。预计改进的神经递质分析技术将能够帮助揭示DBS期间发生的大脑化学变化,然后可用于支持这种治疗方法的进展,这种治疗方法有助于减少帕金森氏症的衰弱性质。这将通过开发一种小型化的液相色谱(LC)分析系统来实现。目前用于测量神经递质摄取和释放的微透析技术需要限制这种采样的空间和时间分辨率的探针。现在有了可以提高空间分辨率的小型化样品探针,因此必须改进当前的分析技术(基于使用LC的分离),以便也提高时间分辨率。通过普通的微加工技术使LC系统小型化,可以开发出一个完整的集成微流控器件,以帮助提高该方法的速度和灵敏度。通过在分离柱中利用最近可用的表面多孔颗粒、用于样品液滴操纵的分段流动技术以及用于质谱学检测的集成电喷雾,将有一个更快、更高效的LC系统用于生物分析。一旦研制成功,这种微型LC将被用于监测DBS刺激帕金森病大鼠模型丘脑底核时几种神经递质(包括GABA和谷氨酸)的浓度,以测试哪些神经通路与治疗效果最相关。
英文摘要
DESCRIPTION (provided by applicant): The proposed research is designed to help understand the underlying neurotransmission that occurs during deep brain stimulation (DBS), a common therapeutic technique used to relieve tremor symptoms in patients suffering from Parkinson's Disease. While the benefits of DBS are well known, the mechanisms of how it occurs are still in debate. It is anticipated that improved techniques for the analysis of neurotransmitters will be able to help uncover changes in brain chemistry that occur during DBS that could then be used to support advances to this therapeutic method that helps reduce the debilitating nature of Parkinson's Disease. This will be achieved through the development of a miniaturized liquid chromatography (LC) analysis system. Current microdialysis techniques used for measuring neurotransmitter uptake and release require probes that limit both the spatial and temporal resolution for such sampling. Miniaturized sample probes are now available that improve spatial resolution, so advances must be made to current analytical techniques (based on separations utilizing LC) in order to also improve temporal resolution. By miniaturizing a LC system through common microfabrication techniques, an entire integrated microfluidic device can be developed to help enhance both the speed and sensitivity of the method. By utilizing recently available superficially porous particles in the separation column, segmented flow techniques for sample droplet manipulation, and integrated electrospray for mass spectrometric detection, a faster and more efficient LC system will be available for biological analyses. Once developed, the miniaturized LC will be used to monitor concentrations of several neurotransmitters (including GABA and glutamate) during DBS stimulation of the subthalamic nucleus in parkinsonian rat models in order to test which neural pathways are most relevant to the therapeutic benefits.
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Microfabricated Liquid Chromatography System for Analysis of Neurotransmitters
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批准号:9142987
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项目类别:
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资助金额:$1.56万
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财政年份:2015
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负责人:James P Grinias
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依托单位:
海外基金