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Sensitive and accurate determination of neurotransmitters from in vivo rat brain microdialysate of Parkinson's disease using in situ ultrasound-assisted derivatization dispersive liquid–liquid microextraction by UHPLC-MS/MS

机译:UHPLC-MS / MS的原位超声辅助衍生化分散液 - 液体微萃取在帕金森病的体内大鼠脑微透明酸盐中敏感和准确测定神经递质的神经递质。用UHPLC-MS / MS

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A simple, rapid, sensitive and environmentally friendly ultrasound-assisted in situ derivatization dispersive liquid–liquid microextraction ( in situ UA-DDLLME) method followed by ultra high performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) has been developed for the simultaneous determination of amino acid neurotransmitters (AANTs) and monoamine neurotransmitters (MANTs) in rat brain microdialysates and baicalein in blood microdialysates of Parkinson's disease (PD) rats with in vivo multiple sites microdialysis in this work. A novel MS sensitive derivatization reagent 4′-carbonyl chloride rosamine (CCR) with a permanent positive charged moiety, has been designed, synthesized and reported for simultaneous labelling of amino and hydroxyl groups in neurotransmitters. Under the selected conditions, the derivatization and microextraction of analytes were simultaneously completed within 1.0 min. Good linearity for each analyte ( R > 0.992) was observed with a low limit of detection (LOD, S/N > 3). Taken together, in situ UA-DDLLME coupled with UHPLC-MS/MS analysis was demonstrated to be a promising method for sensitive, accurate and simultaneous monitoring of AANTs and MANTs in rat brain and baicalein in rat blood. This method would be expected to be highly useful in PD clinical diagnostics and monitoring the efficacy of treatments.
机译:简单,快速,敏感和环保的超声辅助,原位衍生化分散液 - 液体微萃取(原位UA-DDLLME)方法,然后开发出超高效液相色谱 - 串联质谱(UHPLC-MS / MS)同时测定氨基酸神经递质(余毒性递质(Antane)和单胺神经递质(Mants)在帕金森病(Pd)大鼠的血微透明度中的大鼠血微透明剂与体内多个位点的微透析中的血微透析。已经设计了一种新的MS敏感衍生化试剂4'-羰基氯酰胺(CCR),其具有永久性充带部分,合成并报道了神经递质中的氨基和羟基的同时标记。在所选条件下,分析物的衍生化和微萃取在1.0分钟内同时完成。观察到每个分析物(R> 0.992)的良好线性,具有低检测限(LOD,S / N> 3)。总之,与UHPLC-MS / MS分析相结合的原位UA-DDLLME被证明是一种有希望的方法,用于敏感,准确和同时监测大鼠血液中的大鼠脑和黄芩素的冻害和患者。预计该方法将在PD临床诊断中非常有用,并监测治疗的疗效。

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