Ohkuma Mahito, Kawai Fusao, Horiguchi Masayuki, Miyachi Ei-Ichi
Department of Physiology, School of Medicine, Fujita Health University, Toyoake, Aichi, Japan.
Photochem Photobiol. 2007 Mar-Apr;83(2):317-22. doi: 10.1562/2006-06-15-RA-923.
Photoreceptors and retinal bipolar cells are considered as nonspiking neurons; however, we recently showed that human rod photoreceptors can generate sodium action potentials in response to membrane depolarization from membrane potentials of -60 or -70 mV (Kawai et al., Neuron 30 [2001] 451). We performed patch-clamp recording of human cone photoreceptors and retinal bipolar cells to examine whether functional voltage-gated sodium channels are expressed in these cells as well as rod photoreceptors. Under current-clamp conditions, the injection of depolarizing current steps into a cone photoreceptor-induced marked action potentials. These action potentials were blocked by 1 microM tetrodotoxin, a voltage-gated sodium channel blocker. Under voltage-clamp conditions, depolarizing voltage steps-induced a fast transient inward current in several bipolar cells (n = 4/78). This current was activated from -70 to + 20 mV (maximal at -10 mV) and inactivated within 5 ms. The 10-90% rise time of this current was shorter than another inward current (less than one-hundredth). These results indicate that human cones and bipolar cells express voltage-gated sodium channels as rod photoreceptors. Sodium channels may serve to amplify the release of a neurotransmitter and to accelerate the light-dark change in photosignals.
光感受器和视网膜双极细胞被认为是非爆发性神经元;然而,我们最近发现,人类视杆光感受器在膜电位从-60或-70 mV去极化时能够产生钠动作电位(Kawai等人,《神经元》30 [2001] 451)。我们对人类视锥光感受器和视网膜双极细胞进行了膜片钳记录,以检查这些细胞以及视杆光感受器中是否表达功能性电压门控钠通道。在电流钳制条件下,向视锥光感受器中注入去极化电流阶跃会诱导明显的动作电位。这些动作电位被1微摩尔河豚毒素(一种电压门控钠通道阻滞剂)阻断。在电压钳制条件下,去极化电压阶跃在几个双极细胞中(n = 4/78)诱导出快速的瞬时内向电流。该电流在-70至+20 mV时被激活(在-10 mV时最大),并在5毫秒内失活。该电流的10 - 90%上升时间比另一种内向电流短(不到百分之一)。这些结果表明,人类视锥细胞和双极细胞与视杆光感受器一样表达电压门控钠通道。钠通道可能有助于放大神经递质的释放,并加速光信号中的明暗变化。