Vijayvergiya Viksita, Acharya Shiv, Wilson Sidney P, Schmidt Jacob J
Department of Bioengineering, University of California Los Angeles, Los Angeles, California, United States of America.
PLoS One. 2015 Oct 29;10(10):e0141366. doi: 10.1371/journal.pone.0141366. eCollection 2015.
Electrophysiological characterization of ion channels is useful for elucidation of channel function as well as quantitative assessment of pharmaceutical effects on ion channel conductance. We used droplet bilayers to measure ensemble ion channel currents from membrane preparations made from TRPV1-expressing HEK cells. Conductance measurements showed rectification, activation by acid and capsaicin, and inhibition by capsazepine, SB 452533, and JNJ 17293212. We also quantitatively measured concentration-dependent inhibition of channel conductance through determination of capsazepine IC50 in agreement with previously published studies using patch clamp. These results, combined with the reduced apparatus and material requirements of droplet bilayers, indicate that this platform could be used for study of other physiologically relevant ion channels.
离子通道的电生理特性对于阐明通道功能以及定量评估药物对离子通道电导的影响很有用。我们使用液滴双层膜来测量由表达TRPV1的HEK细胞制成的膜制剂中的整体离子通道电流。电导测量显示出整流、酸和辣椒素激活以及辣椒平、SB 452533和JNJ 17293212抑制。我们还通过测定辣椒平IC50定量测量了通道电导的浓度依赖性抑制,这与先前使用膜片钳发表的研究一致。这些结果,结合液滴双层膜对仪器和材料要求的降低,表明该平台可用于研究其他生理相关的离子通道。