Hirano T, Kubo Y, Wu M M
Proc Natl Acad Sci U S A. 1986 Jul;83(13):4957-61. doi: 10.1073/pnas.83.13.4957.
Electrophysiological properties of cerebellar granule cells and synapses between granule and Purkinje cells were studied in dissociated cultures. Electrophysiological properties of neurons and synapses in the mammalian central nervous system are best studied in dissociated cell cultures because of good target cell visibility, control over the contents of the extracellular solution, and the feasibility of whole-cell patch electrode recording, which has been a powerful technique in analyzing biophysical properties of ionic channels in small cells. We have applied this whole-cell recording technique to cultured cerebellar granule cells whose electrophysiological properties have been almost unknown because of their small cell size. In this study, simultaneous intracellular recordings from presynaptic granule and postsynaptic Purkinje cells demonstrated that granule cells made functional monosynaptic connections with Purkinje cells in dissociated cell cultures. Further, the existence of Na, Ca, and K channels in granule cells is demonstrated by external ion substitutions.
在解离培养物中研究了小脑颗粒细胞的电生理特性以及颗粒细胞与浦肯野细胞之间的突触。由于目标细胞可见性良好、可控制细胞外溶液成分以及全细胞膜片电极记录的可行性,哺乳动物中枢神经系统中神经元和突触的电生理特性在解离细胞培养物中得到了最佳研究,全细胞膜片电极记录是分析小细胞中离子通道生物物理特性的一项强大技术。我们已将这项全细胞记录技术应用于培养的小脑颗粒细胞,由于其细胞体积小,其电生理特性几乎未知。在本研究中,对突触前颗粒细胞和突触后浦肯野细胞进行同步细胞内记录表明,在解离细胞培养物中颗粒细胞与浦肯野细胞形成了功能性单突触连接。此外,通过外部离子置换证明了颗粒细胞中钠、钙和钾通道的存在。