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Direct Measurement of Total Vesicular Catecholamine Content with Electrochemical Microwell Arrays

机译:用电化学微孔阵列直接测量总脉体吸引含量

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摘要

We have designed and fabricated a microwell array chip (MWAC) to trap and detect the entire content of individual vesicles after disruption of the vesicular membrane by an applied electrical potential. To understand the mechanism of vesicle impact electrochemical cytometry (VIEC) in microwells, we simulated the rupture of the vesicles and subsequent diffusion of entrapped analytes. Two possibilities were tested: (i) the vesicle opens toward the electrode, and (ii) the vesicle opens away from the electrode. These two possibilities were simulated in the different microwells with varied depth and width. Experimental VIEC measurements of the number of molecules for each vesicle in the MWAC were compared to VIEC on a gold microdisk electrode as a control, and the quantified catecholamines between these two techniques was the same. We observed a prespike foot in a significant number of events (similar to 20%) and argue this supports the hypothesis that the vesicles rupture toward the electrode surface with a more complex mechanism including the formation of a stable pore intermediate. This study not only confirms that in standard VIEC experiments the whole content of the vesicle is oxidized and quantified at the surface of the microdisk electrode but actively verifies that the adsorbed vesicle on the surface of the electrode forms a pore in the vicinity of the electrode rather than away from it. The fabricated MWAC promotes our ability to quantify the content of vesicles accurately, which is fundamentally important in bioanalysis of the vesicles.
机译:我们已经设计和制造了微孔阵列芯片(MWAC)以通过应用的电位破坏囊状膜后捕获并检测单个囊泡的整个含量。为了了解微孔中囊泡冲击电化学细胞仪(VIEC)的机制,我们模拟了囊泡的破裂和随后的捕获分析物的扩散。测试了两种可能性:(i)囊泡朝向电极打开,并且(ii)囊泡从电极开口。在不同的微孔中模拟了这两种可能性,具有变化的深度和宽度。将MWAC中每个囊泡的分子数的实验VIEC测量与金微磁盘电极上的VIEC相比,作为对照,并且这两种技术之间的量化的儿茶酚胺是相同的。我们在大量事件(类似于20%)中观察到一只预定脚(类似于20%)并争辩地支持囊泡朝向电极表面的假设,其具有更复杂的机制,包括形成稳定的孔中间体。这项研究不仅证实,在标准的Viec实验中,囊泡的整个含量在微芯片电极的表面处被氧化和量化,但是主动验证电极表面上的吸附囊泡在电极附近形成孔而不是远离它。制造的MWAC促进了我们准确地量化囊泡含量的能力,这在囊泡的生物分析方面是重要的。

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  • 来源
    《Analytical chemistry》 |2020年第16期|共7页
  • 作者单位

    Univ Gothenburg Dept Chem &

    Mol Biol Gothenburg Sweden;

    Univ Gothenburg Dept Chem &

    Mol Biol Gothenburg Sweden;

    Chalmers Univ Technol Div Biol Phys Dept Appl Phys SE-41296 Gothenburg Sweden;

    Univ Gothenburg Dept Chem &

    Mol Biol Gothenburg Sweden;

    Univ Gothenburg Dept Chem &

    Mol Biol Gothenburg Sweden;

    Univ Gothenburg Dept Chem &

    Mol Biol Gothenburg Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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