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在单个细胞内和细胞表面使用两个电极同时检测囊泡内容物和胞吐释放。

Simultaneous detection of vesicular content and exocytotic release with two electrodes in and at a single cell.

作者信息

Gu Chaoyi, Ewing Andrew G

机构信息

Department of Chemistry and Molecular Biology, University of Gothenburg Kemivägen 10 412 96 Gothenburg Sweden

出版信息

Chem Sci. 2021 Apr 20;12(21):7393-7400. doi: 10.1039/d1sc01190a.

Abstract

We developed a technique employing two electrodes to simultaneously and dynamically monitor vesicular neurotransmitter storage and vesicular transmitter release in and at the same cell. To do this, two electrochemical techniques, single-cell amperometry (SCA) and intracellular vesicle impact electrochemical cytometry (IVIEC), were applied using two nanotip electrodes. With one electrode being placed on top of a cell measuring exocytotic release and the other electrode being inserted into the cytoplasm measuring vesicular transmitter storage, upon chemical stimulation, exocytosis is triggered and the amount of release and storage can be quantified simultaneously and compared. By using this technique, we made direct comparison between exocytotic release and vesicular storage, and investigated the dynamic changes of vesicular transmitter content before, during, and after chemical stimulation of PC12 cells, a neuroendocrine cell line. While confirming that exocytosis is partial, we suggest that chemical stimulation either induces a replenishment of the releasable pool with a subpool of vesicles having higher amount of transmitter storage, or triggers the vesicles within the same subpool to load more transiently at approximately 10-20 s. Thus, a time scale for vesicle reloading is determined. The effect of l-3,4-dihydroxyphenylalanine (l-DOPA), the precursor to dopamine, on the dynamic alteration of vesicular storage upon chemical stimulation for exocytosis was also studied. We found that l-DOPA incubation reduces the observed changes of vesicular storage in regular PC12 cells, which might be due to an increased capacity of vesicular transmitter loading caused by l-DOPA. Our data provide another mechanism for plasticity after stimulation quantitative and dynamic changes in the exocytotic machinery.

摘要

我们开发了一种技术,该技术使用两个电极同时动态监测同一细胞内囊泡神经递质的储存以及囊泡递质的释放。为此,使用两个纳米尖端电极应用了两种电化学技术,即单细胞安培法(SCA)和细胞内囊泡冲击电化学细胞术(IVIEC)。一个电极置于细胞顶部以测量胞吐释放,另一个电极插入细胞质中以测量囊泡递质储存,在化学刺激下,触发胞吐作用,同时可以对释放量和储存量进行定量并比较。通过使用该技术,我们对胞吐释放和囊泡储存进行了直接比较,并研究了神经内分泌细胞系PC12细胞在化学刺激之前、期间和之后囊泡递质含量的动态变化。在确认胞吐作用是部分性的同时,我们认为化学刺激要么诱导具有较高递质储存量的囊泡亚池对可释放池进行补充,要么触发同一亚池内的囊泡在大约10 - 20秒内更短暂地装载。因此,确定了囊泡重新装载的时间尺度。还研究了多巴胺的前体l - 3,4 - 二羟基苯丙氨酸(l - DOPA)对化学刺激胞吐作用时囊泡储存动态变化的影响。我们发现,l - DOPA孵育减少了正常PC12细胞中观察到的囊泡储存变化,这可能是由于l - DOPA导致囊泡递质装载能力增加所致。我们的数据为刺激后的可塑性提供了另一种机制——胞吐机制中的定量和动态变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d528/8171312/4ccbef4d85b5/d1sc01190a-f1.jpg

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