Erickson K R, Ronnekleiv O K, Kelly M J
Department of Physiology, Oregon Health Sciences University, Portland 97201.
Neuroendocrinology. 1993 May;57(5):789-800. doi: 10.1159/000126438.
Guinea pig magnocellular neurosecretory cells (MNCs) of the supraoptic nucleus (SON) were studied using the in vitro slice preparation. Intracellular recordings were made with biocytin-filled electrodes, permitting immunocytochemical identification of the recorded cells as arginine vasopressin- (AVP) versus oxytocin- (OT) containing. Only AVP cells displaying a depolarizing potential (DP) fired phasically. The DP was associated with a transient inward current measured in voltage clamp, which exhibited a number of properties of the T-type calcium current: activation threshold of -64 mV, time course of up to 250 ms, blockade by nickel and augmentation by barium chloride. This current has not been reported previously in SON neurons. The T-type current (IT) was always associated with a damped oscillation of the membrane following the offset from hyperpolarizing steps. In all cells tested, an apamin-sensitive afterhyperpolarization (AHP) was observed, similar to the calcium-dependent potassium current (IK, Ca) described in rat SON and other CNS regions. Therefore, as with other CNS regions displaying damped oscillations, guinea pig SON cells possess both an IT and an IK, Ca. We have previously described an Ih activating at hyperpolarized potentials in these cells, which depolarizes the membrane to a range in which the IT and IK, Ca can interactively support oscillations. In summary, the IT and associated depolarizing potential appears to be a requisite feature for phasic firing in AVP cells of guinea pig SON.
利用体外脑片制备技术对豚鼠视上核(SON)的大细胞神经分泌细胞(MNCs)进行了研究。使用填充生物胞素的电极进行细胞内记录,从而通过免疫细胞化学方法将记录的细胞鉴定为含精氨酸加压素(AVP)或催产素(OT)的细胞。只有显示去极化电位(DP)的AVP细胞产生相位性放电。该DP与电压钳记录到的瞬时内向电流相关,该电流表现出T型钙电流的一些特性:激活阈值为-64 mV,时程长达250 ms,可被镍阻断,被氯化钡增强。这种电流此前在SON神经元中未见报道。T型电流(IT)总是与超极化步骤结束后膜的衰减振荡相关。在所有测试的细胞中,均观察到一种对蜂毒明肽敏感的超极化后电位(AHP),类似于在大鼠SON和其他中枢神经系统区域描述的钙依赖性钾电流(IK,Ca)。因此,与其他显示衰减振荡的中枢神经系统区域一样,豚鼠SON细胞同时具有IT和IK,Ca。我们之前曾描述过这些细胞中在超极化电位时激活的Ih,它将膜去极化到一个IT和IK,Ca可相互作用支持振荡的范围。总之,IT和相关的去极化电位似乎是豚鼠SON的AVP细胞相位性放电的必要特征。