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Ion channel recordings on an injection-molded polymer chip

机译:注塑聚合物芯片上的离子通道记录

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摘要

In this paper, we demonstrate recordings of the ion channel activity across the cell membrane in a biological cell by employing the so-called patch clamping technique on an injection-molded polymer microfluidic device. The findings will allow direct recordings of ion channel activity to be made using the cheapest materials and production platform to date and with the potential for very high throughput. The employment of cornered apertures for cell capture allowed the fabrication of devices without through holes and via a scheme comprising master origination by dry etching in a silicon substrate, electroplating in nickel and injection molding of the final part. The most critical device parameters were identified as the length of the patching capillary and the very low surface roughness on the inside of the capillary. The cross-sectional shape of the orifice was found to be less critical, as both rectangular and semicircular profiles seemed to have almost the same ability to form tight seals with cells with negligible leak currents. The devices were functionally tested using human embryonic kidney cells expressing voltage-gated sodium channels (Nav1.7) and benchmarked against a commercial state-of-the-art system for automated ion channel recordings. These experiments considered current–voltage (IV) relationships for activation and inactivation of the Nav1.7 channels and their sensitivity to a local anesthetic, lidocaine. Both IVs and lidocaine dose–response curves obtained from the injection-molded polymer device were in good agreement with data obtained from the commercial system.
机译:在本文中,我们通过在注射成型的聚合物微流体装置上采用所谓的膜片钳技术,证明了生物细胞中跨细胞膜的离子通道活性的记录。该发现将使人们可以使用迄今为止最便宜的材料和生产平台直接记录离子通道的活性,并具有很高的通量潜力。使用用于细胞捕获的角孔允许制造不具有通孔的装置,并且经由包括在硅基板中进行干法蚀刻,在镍中进行电镀以及最终部件的注射成型的母版制作的方案。最关键的设备参数确定为修补毛细管的长度和毛细管内部非常低的表面粗糙度。发现孔的横截面形状不是那么关键,因为矩形和半圆形轮廓似乎具有与泄漏电流可忽略的电池形成紧密密封的几乎相同的能力。使用表达电压门控钠通道(Nav1.7)的人类胚胎肾细胞对设备进行了功能测试,并针对用于自动离子通道记录的商业级最新系统进行了基准测试。这些实验考虑了Nav1.7通道激活和失活的电流-电压(IV)关系及其对局麻药利多卡因的敏感性。从注射成型的聚合物装置获得的IVs和利多卡因剂量-反应曲线与从商业系统获得的数据非常吻合。

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