Institute of Microelectronics (IME), 11 Science Park Road, Science Park II, Singapore.
Lab Chip. 2010 Apr 21;10(8):1044-50. doi: 10.1039/b922051h. Epub 2010 Jan 20.
Lateral patch-clamping has emerged as a chip-based platform for automation of the conventional patch-clamp technique, the 'gold' standard for studying cellular ion channels. The conventional technique, as it relies on skilled-maneuver of glass micropipettes to patch cells, is extremely delicate, low in throughput, and thus cannot be used for primary screening of compounds against ion channels. Direct integration of glass capillaries on silicon provides lateral junctions for automated trapping and patching of cells. We demonstrate here a method of scaling up the lateral junctions to a standard 1536-well microtiter plate format. A single unit of 1536-well plate has been formed here on a 9 mm by 9 mm microstructured silicon with the inclusive of 16 wells molded in a capping layer made of polydimethylsiloxane (PDMS). The silicon substrate provides integrated glass capillaries (total 12) and their associated microfluidic network. Each glass capillary has an independent access through a dedicated well in PDMS and leads to a centralized channel in which cell suspension can be delivered through one of the remaining 4 wells. The unit has been tested on RBL-1 cells by recording whole-cell activity from inwardly rectifying endogenous potassium channels. A revised test protocol has been prescribed to avoid inaccurate readings due to altered ionic composition of the recording buffer when a typical suction is applied to capture cells.
侧池片钳技术已成为一种基于芯片的平台,可以实现传统片钳技术的自动化,而传统片钳技术是研究细胞离子通道的“金标准”。传统技术依赖于熟练操作玻璃微管来贴附细胞,因此非常精细,通量低,因此不能用于针对离子通道的化合物的初步筛选。玻璃毛细管与硅的直接集成提供了用于自动捕获和贴附细胞的横向连接。我们在此展示了一种将横向连接扩展到标准的 1536 孔微板格式的方法。这里在 9 毫米乘 9 毫米的微结构硅上形成了一个 1536 孔板的单个单元,其中包括在聚二甲基硅氧烷 (PDMS) 制成的盖子层中成型的 16 个孔。硅基底提供了集成的玻璃毛细管(总共 12 个)及其相关的微流控网络。每个玻璃毛细管都通过 PDMS 中的专用孔独立进入,并通向一个集中的通道,细胞悬浮液可以通过其余 4 个孔中的一个输送到该通道中。该单元已通过从内向整流性内源性钾通道记录全细胞活性在 RBL-1 细胞上进行了测试。由于在捕获细胞时应用典型的吸力会改变记录缓冲液的离子组成,因此规定了修订后的测试方案,以避免不准确的读数。