Parsons Chris G, Gilling Kate
Head in Vitro Pharmacology, Preclinical Research and Development, Merz Pharmaceuticals GmbH, Germany.
Methods Mol Biol. 2007;403:15-36. doi: 10.1007/978-1-59745-529-9_2.
Electrophysiological techniques can be used to great effect to help determine the mechanism of action of a compound. However, many factors can compromise the resulting data and their analysis, such as the speed of solution exchange, expression of additional ion channel populations including other ligand-gated receptors and voltage-gated channels, compounds having multiple binding sites, and current desensitization and rundown. In this chapter, such problems and their solutions are discussed and illustrated using data from experiments involving the uncompetitive N-methyl-D-aspartate (NMDA) receptor antagonist memantine. Memantine differs from many other NMDA receptor channel blockers in that it is well tolerated and does not cause psychotomimetic effects at therapeutic doses. Various electrophysiological parameters of NMDA-induced current blockade by memantine have been proposed to be important in determining therapeutic tolerability, potency, onset and offset kinetics, and voltage dependency. These were all measured using whole cell patch-clamp techniques using hippocampal neurons. Full results are shown here for memantine, and these are summarized and compared with those from similar experiments with other NMDA channel blockers. The interpretation of these results is discussed, as are theories concerning the tolerability of NMDA channel blockers, with the aim of illustrating how electrophysiological data can be used to form and support a physiological hypothesis.
电生理技术可被高效用于帮助确定化合物的作用机制。然而,许多因素会影响所得数据及其分析,例如溶液交换速度、包括其他配体门控受体和电压门控通道在内的额外离子通道群体的表达、具有多个结合位点的化合物,以及电流脱敏和衰减。在本章中,将使用来自涉及非竞争性N-甲基-D-天冬氨酸(NMDA)受体拮抗剂美金刚的实验数据来讨论和说明此类问题及其解决方案。美金刚与许多其他NMDA受体通道阻滞剂不同,它耐受性良好,在治疗剂量下不会引起拟精神病效应。已提出美金刚对NMDA诱导电流的各种电生理参数在确定治疗耐受性、效力、起效和消退动力学以及电压依赖性方面很重要。这些都是使用海马神经元的全细胞膜片钳技术进行测量的。此处展示了美金刚的完整结果,并对其进行了总结,并与其他NMDA通道阻滞剂的类似实验结果进行了比较。讨论了这些结果的解释以及关于NMDA通道阻滞剂耐受性的理论,目的是说明如何使用电生理数据来形成和支持生理学假设。