Brüggemann Andrea, Farre Cecilia, Haarmann Claudia, Haythornthwaite Ali, Kreir Mohamed, Stoelzle Sonja, George Michael, Fertig Niels
Nanion Technologies GmbH, Munich, Germany.
Methods Mol Biol. 2008;491:165-76. doi: 10.1007/978-1-59745-526-8_13.
Ion channels have gained increased interest as therapeutic targets over recent years, since a growing number of human and animal diseases have been attributed to defects in ion channel function. Potassium channels are the largest and most diverse family of ion channels. Pharmaceutical agents such as Glibenclamide, an inhibitor of K(ATP) channel activity which promotes insulin release, have been successfully sold on the market for many years. So far, only a small group of the known ion channels have been addressed as potential drug targets. The functional testing of drugs on these ion channels has always been the bottleneck in the development of these types of pharmaceutical compounds.New generations of automated patch clamp screening platforms allow a higher throughput for drug testing and widen this bottleneck. Due to their planar chip design not only is a higher throughput achieved, but new applications have also become possible. One of the advantages of planar patch clamp is the possibility of perfusing the intracellular side of the membrane during a patch clamp experiment in the whole-cell configuration. Furthermore, the extracellular membrane remains accessible for compound application during the experiment.Internal perfusion can be used not only for patch clamp experiments with cell membranes, but also for those with artificial lipid bilayers. In this chapter we describe how internal perfusion can be applied to potassium channels expressed in Jurkat cells, and to Gramicidin channels reconstituted in a lipid bilayer.
近年来,离子通道作为治疗靶点越来越受到关注,因为越来越多的人类和动物疾病被归因于离子通道功能缺陷。钾通道是最大且最多样化的离子通道家族。像格列本脲这样的药物制剂,它是一种促进胰岛素释放的K(ATP)通道活性抑制剂,已经在市场上成功销售多年。到目前为止,只有一小部分已知的离子通道被视为潜在的药物靶点。在这些离子通道上进行药物功能测试一直是这类药物化合物开发的瓶颈。新一代的自动膜片钳筛选平台提高了药物测试的通量,拓宽了这一瓶颈。由于其平面芯片设计,不仅实现了更高的通量,而且还出现了新的应用。平面膜片钳的优点之一是在全细胞配置的膜片钳实验期间可以对膜的内侧进行灌流。此外,在实验过程中,细胞外膜仍可用于施加化合物。内部灌流不仅可用于细胞膜的膜片钳实验,也可用于人工脂质双层的膜片钳实验。在本章中,我们描述了如何将内部灌流应用于Jurkat细胞中表达的钾通道以及脂质双层中重组的短杆菌肽通道。