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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Coupling electrochemistry and TIRE-microscopy with the fluorescent false neurotransmitter FFN102 supports the fluorescence signals during single vesicle exocytosis detection
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Coupling electrochemistry and TIRE-microscopy with the fluorescent false neurotransmitter FFN102 supports the fluorescence signals during single vesicle exocytosis detection

机译:耦合电化学和轮胎显微镜与荧光假神经递质FFN102在单囊泡外毒性检测期间支持荧光信号

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摘要

Applications of the Fluorescent False Neurotransmitter FFN102, an analog of biogenic neurotransmitters and a suitable probe for coupled amperometry and TIRFM (total internal reflexion fluorescence microscopy) investigations of exocytotic secretion, were considered here. The electroactivity of FFN102 was shown to very likely arise from the oxidation of its phenolic group through a CE (Chemical-Electrochemical) mechanism. Evidences that the aminoethyl group of FFN102 is the key recognition element by BON N13 cells were also provided. Amperometric measurements were then performed at the single cell level with carbon fiber electrode (CFE) or Indium Tin Oxide (ITO) surfaces. It proved the disparity of kinetic and quantitative parameters of FFN102-stained cells acquired either at cell top and bottom. Moreover, coupled analyses of FFN102 loaded vesicles allowed us to classify three types of optical signals that probably arise from secretion releases thanks to their concomitant detection with an electrochemical spike. Finally, preliminary benefits from the coupling involving FFN102 were reported in terms of origins of overlapped amperometric spikes or assignment of fluorescence extinctions to real exocytotic events.
机译:在此考虑荧光假神经递质FFN102的应用,生物神经递质的类似物和用于偶联和TIRFM(全内部反射荧光显微镜)的合适探针的研究。显示FFN102的电切性非常可能通过CE(化学电化学)机制从其酚类基团的氧化产生。还提供了FFN102的氨基乙基的证据,也提供了Bon N13细胞的关键识别元件。然后在用碳纤维电极(CFE)或氧化铟锡(ITO)表面的单细胞水平处进行安培测量。它证明了在细胞顶部和底部获得的FFN102染色细胞的动力学和定量参数的差异。此外,FFN102装载的囊泡的耦合分析允许我们分类三种类型的光学信号,其由于它们的伴随具有电化学秒杀而被分泌释放。最后,根据重叠的化妆尖峰或荧光灭绝分配给真正的外毒性事件,涉及涉及FFN102的偶联的初步益处。

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