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Nano Secondary Ion Mass Spectrometry Imaging of Dopamine Distribution Across Nanometer Vesicles

机译:纳米囊泡多巴胺分布的纳米二次离子质谱成像

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We report an approach to spatially resolve the content across nanometer neuroendocrine vesicles in nerve-like cells by correlating super high-resolution mass spectrometry imaging, NanoSIMS, with transmission electron microscopy (TEM). Furthermore, intracellular electrochemical cytometry at nanotip electrodes is used to count the number of molecules in individual vesicles to compare to imaged amounts in vesicles. Correlation between the NanoSIMS and TEM provides nanometer resolution of the inner structure of these organelles. Moreover, correlation with electrochemical methods provides a means to quantify and relate vesicle neurotransmitter content and release, which is used to explain the slow transfer of dopamine between vesicular compartments. These nanoanalytical tools reveal that dopamine loading/unloading between vesicular compartments, dense core and halo solution, is a kinetically limited process. The combination of NanoSIMS and TEM has been used to show the distribution profile of newly synthesized dopamine across individual vesicles. Our findings suggest that the vesicle inner morphology might regulate the neurotransmitter release event during open and closed exocytosis from dense core vesicles with hours of equilibrium needed to move significant amounts of catecholamine from the protein dense core despite its nanometer size.
机译:我们通过用透射电子显微镜(TEM)来报告一种方法来在神经状细胞中,在神经状细胞中跨纳米神经内分泌囊泡的内容在空间上解析内容。此外,纳米坡电极的细胞内电化学细胞术用于计算单个囊泡中的分子数,以比较囊泡的成像量。纳米纤维和TEM之间的相关性提供这些细胞器的内部结构的纳米分辨率。此外,与电化学方法的相关性提供了定量和涉及囊泡神经递质含量和释放的方法,用于解释凹片间隔物之间​​的多巴胺的缓慢转移。这些纳米分析工具揭示了多巴胺装载/卸载在囊泡隔室,致密核和卤素溶液之间是动力学上有限的过程。纳米镰糖和TEM的组合已被用于在各个囊泡中显示新合成的多巴胺的分布谱。我们的研究结果表明,囊泡内容形态可能在浓度核心囊泡的开放和闭合的外尿量期间调节神经递质释放事件,并且尽管其纳米尺寸,从蛋白质致密核心中移动大量的儿茶酚胺。

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