Department of Chemistry and Chemical Engineering, Chalmers University of Technology , SE-412 96 Gothenburg, Sweden.
Anal Chem. 2016 Feb 16;88(4):2080-7. doi: 10.1021/acs.analchem.5b03316. Epub 2016 Jan 28.
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe consisting of 16 platinum band electrodes placed on top of a supporting borosilicate glass substrate. These 1.2 μm wide electrodes were tightly packed and positioned parallel in two opposite rows within a 20 μm × 25 μm square area and with a distance less than 10 μm from the edge of the glass substrate. We demonstrate the ability to control and place the probe in close proximity to the surface of adherent bovine chromaffin cells and to amperometrically record single exocytosis release events with high spatiotemporal resolution. The two-dimensional position of single exocytotic events occurring in the center gap area separating the two rows of MEA band electrodes and that were codetected by electrodes in both rows was determined by analysis of the fractional detection of catecholamine released between electrodes and exploiting random walk simulations. Hence, two-dimensional electrochemical imaging recording of exocytosis release between the electrodes within this area was achieved. Similarly, by modeling the current spikes codetected by parallel adjacent band electrodes positioned in the same electrode row, a one-dimensional imaging of exocytosis with submicrometer resolution was accomplished within the area. The one- and two-dimensional electrochemical imaging using the MEA probe allowed for high spatial resolution of exocytosis activity and revealed heterogeneous release of catecholamine at the chromaffin cell surface.
我们报告了一种可移动的薄膜微电极阵列(MEA)探针的光刻微加工,该探针由放置在支撑硼硅酸盐玻璃基底顶部的 16 个铂带电极组成。这些 1.2 μm 宽的电极紧密排列,并在 20 μm×25 μm 的正方形区域内平行放置在两排相对的电极中,与玻璃基底边缘的距离小于 10 μm。我们展示了控制探针并使其靠近贴壁牛嗜铬细胞表面的能力,并能够以高时空分辨率进行安培记录单个胞吐释放事件。通过分析在两排 MEA 带电极之间的中心间隙区域中发生的单个胞吐事件的分数检测,并利用随机游走模拟,确定了在两排电极 codetect 的单个胞吐事件的二维位置。因此,实现了该区域内电极之间的胞吐释放的二维电化学成像记录。同样,通过对位于同一电极排中的平行相邻带电极 codetect 的电流尖峰进行建模,在该区域内实现了具有亚微米分辨率的胞吐的一维成像。使用 MEA 探针的一维和二维电化学成像允许对胞吐活性进行高空间分辨率的观察,并揭示了在嗜铬细胞表面上儿茶酚胺的异质释放。