Laboratorio Nacional de Canalopatías, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, México City, Mexico.
Methods Mol Biol. 2024;2796:97-103. doi: 10.1007/978-1-0716-3818-7_6.
The development of cell-based fluorescent assays has resulted in an incredible tool for searching new ion channels' modulators with a biophysical and clinical profile. Among all the ion channels, potassium (K)-permeable channels represent the most diverse and relevant for cell function, making them attractive targets for drug discovery. Some of the cell-based assays for K channels take advantage of a thallium-sensitive dye whose fluorescence increased upon the binding of thallium (Tl), an ion able to move through K channels. We optimize the FLIPR Potassium Assay Kit based on thallium influx to measure the Kv10.1 activity.
基于细胞的荧光检测方法的发展为寻找具有生物物理和临床特征的新型离子通道调节剂提供了一种令人难以置信的工具。在所有的离子通道中,钾(K)渗透性通道是最具多样性和与细胞功能相关的,这使得它们成为药物发现的有吸引力的靶点。一些基于细胞的 K 通道检测方法利用一种对铊敏感的染料,该染料在与铊(Tl)结合时荧光增强,铊是一种能够通过 K 通道的离子。我们优化了基于铊内流的 FLIPR 钾测定试剂盒,以测量 Kv10.1 的活性。