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Calcium channels in isolated rat dorsal horn neurones including labelled spinothalamic and trigeminothalamic cells.

机译:分离的大鼠背角神经元中的钙通道包括标记的多囊丘脑和三叉神经丘脑细胞。

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摘要

1. Single isolated neurones were prepared from the spinal trigeminal nucleus and the dorsal horn of cervical spinal cord of the rat. Spinothalamic and trigeminothalamic neurones were identified using rhodamine-labelled fluorescent latex microspheres. 2. Calcium currents in these cells were examined by the whole-cell patch-clamp technique. Three types of calcium currents, transient (T) and slow inactivating (N and L) types, were identified by their sensitivities to inorganic blockers and rates of inactivation at two different holding potentials (temperature = 21-25 degrees C). 3. From a holding potential of -100 mV, the ICa,T began to activate at -60 mV. The current reached its maximum amplitude around -30 mV and was inactivated completely when the cell was held more positive than -60 mV. The time constant of the inactivation was between 10 and 50 ms. 4. The slow inactivating component of ICa was dissociated into two components by eliciting ICa from two holding potentials of -100 and of -40 mV. The current (ICa,L) activated from -40 mV was characterized by positive activation potentials and a very slow inactivation (time constant, 700-4000 ms). The current (ICa,N) elicited from a holding potential of -100 mV started to activate at -30 mV and inactivated slowly with time constants ranging between 400 and 1000 ms. 5. Compared with the ICa,T, the inactivation curve for ICa,N was shifted about 30 mV in the depolarizing direction. ICa,N inactivated over a broader range of potentials, and its inactivation and activation curves overlapped. 6. Cadmium blocked ICa,T at a concentration 24 times higher than that which was needed to block slow inactivating currents. The apparent dissociation constant of nickel for ICa,T is twofold lower than that for the slow inactivating currents. 7. Nimodipine (2 microM) decreased the slow inactivating currents, but had no effect on ICa,T. (-)-Bay K 8644 (200 nM) increased both ICa,N and ICa,L and shifted the current activation in the hyperpolarizing direction. This result is different from that obtained in sensory and sympathetic neurones in which ICa,N is insensitive to Bay K 8644.
机译:1.从大鼠三叉神经核和大鼠颈脊髓背角制备单个分离的神经元。使用罗丹明标记的荧光乳胶微球鉴定出了脊髓型和三叉型的神经元。 2.通过全细胞膜片钳技术检查这些细胞中的钙电流。通过对无机阻滞剂的敏感性和在两种不同保持电位(温度= 21-25摄氏度)下的失活速率,可以识别出三种类型的钙电流,即瞬时(T)和缓慢失活(N和L)。 3. ICa,T从保持电位-100 mV开始在-60 mV激活。当电池保持高于-60 mV的正电压时,电流达到约-30 mV的最大幅度,并完全失活。灭活的时间常数在10到50毫秒之间。 4.通过从-100和-40 mV的两个保持电势激发ICa,将ICa的缓慢失活组分分解为两个组分。从-40 mV激活的电流(ICa,L)的特征在于正的激活电位和非常缓慢的失活(时间常数700-4000 ms)。从-100 mV的保持电势引出的电流(ICa,N)在-30 mV时开始激活,并以400至1000 ms的时间常数缓慢失活。 5.与ICa,T相比,ICa,N的失活曲线在去极化方向上移动了约30 mV。 ICa,N在更广泛的电位范围内失活,并且其失活和激活曲线重叠。 6.镉阻断ICa,T的浓度比阻断缓慢的失活电流所需的浓度高24倍。镍对于ICa,T的表观解离常数比缓慢失活电流的表观解离常数低两倍。 7.尼莫地平(2 microM)降低了缓慢的失活电流,但对ICa,T无影响。 (-)-Bay K 8644(200 nM)增加了ICa,N和ICa,L并在超极化方向上移动了电流激活。该结果不同于在感觉和交感神经元中ICa,N对Bay K 8644不敏感的结果。

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