Dai Yue, Jordan Larry M
Dept. of Physiology, Univ. of Manitoba, Winnipeg, Manitoba R3E0J9, Canada.
J Neurophysiol. 2010 Apr;103(4):1712-27. doi: 10.1152/jn.01111.2009. Epub 2010 Feb 17.
Using CFos-EGFP transgenic mice (P6-P12), we targeted persistent inward current (PIC) in the spinal interneurons activated by locomotion. Following a locomotor task, whole cell patch-clamp recordings were obtained from ventral EGFP+ neurons in spinal cord slices (200-250 μm from T₁₃-L₄). PIC was recorded by a family of 10 s voltage bi-ramps starting from -70 mV with 30 mV steps. PIC could be classified as ascending and descending forms based on the rising and falling phases of the bi-ramps. Multiple patterns of PIC with various hystereses were found in EGFP+ neurons. A novel form of PIC, single PIC crossing both phases of the bi-ramps, was described in this study. PIC was found in 82% of EGFP+ neurons (n = 129) with no significant difference in laminar distribution. PIC activated at -56.7 ± 8 mV with an amplitude of 85.3 ± 59 pA and time constant of 657.0 ± 272 ms (n = 63). PIC in lamina VIII neurons activated significantly lower (-60.2 ± 7 mV) than in lamina VII (-54.8 ± 6 mV) and lamina X (-55.8 ± 9 mV) neurons. PIC could be differentiated as calcium dependent (Ca-PIC) by bath application of 1-5 μM TTX or sodium dependent (Na-PIC) by administration of 20-30 μM dihydropyridine. Ca-PIC activated at -40.2 ± 19 mV (n = 49), whereas Na-PIC activated at -46.8 ± 16 mV (n = 17). Composite-, Ca-, and Na-PICs were significantly different in activation but not amplitude and time constant. Bath application of 5-HT (10-30 μM) enhanced PIC (n = 32) by hyperpolarizing onset (4.2 ± 6 mV) and increasing amplitude (16%). 5-HT-increased amplitude seemed to be significantly larger in lamina VII neurons (32%) than VIII (6%) and X (14%) neurons. 5-HT enhancement of Ca-PIC (n = 6) and Na-PICs (n = 4) was also observed in EGFP+ neurons. This study unveiled unique properties of PICs in EGFP+ neurons. The lamina-related PIC activation and variable effects of 5-HT on PIC amplitude provides insight into the ionic basis on which locomotion could be generated.
利用CFos-EGFP转基因小鼠(出生后6至12天),我们将目标锁定在由运动激活的脊髓中间神经元中的持续性内向电流(PIC)上。在一项运动任务后,从脊髓切片(距T₁₃ - L₄ 200 - 250μm)中的腹侧EGFP⁺神经元获得全细胞膜片钳记录。通过从 - 70mV开始、步长为30mV的10秒电压双斜坡序列记录PIC。根据双斜坡的上升和下降阶段,PIC可分为上升型和下降型。在EGFP⁺神经元中发现了具有各种滞后现象的多种PIC模式。本研究描述了一种新型的PIC,即单次PIC跨越双斜坡的两个阶段。在82%的EGFP⁺神经元(n = 129)中发现了PIC,其层状分布无显著差异。PIC在 - 56.7±8mV时激活,幅度为85.3±59pA,时间常数为657.0±272ms(n = 63)。VIII层神经元中的PIC激活阈值( - 60.2±7mV)明显低于VII层( - 54.8±6mV)和X层( - 55.8±9mV)神经元。通过浴加1 - 5μM河豚毒素(TTX),PIC可被区分为钙依赖性(Ca - PIC),通过给予20 - 30μM二氢吡啶,可将其区分为钠依赖性(Na - PIC)。Ca - PIC在 - 40.2±19mV时激活(n = 49),而Na - PIC在 - 46.8±16mV时激活(n = 17)。复合PIC、Ca - PIC和Na - PIC在激活方面有显著差异,但在幅度和时间常数方面无差异。浴加5 - 羟色胺(5 - HT,10 - 30μM)通过超极化起始电位(4.2±6mV)和增加幅度(16%)增强了PIC(n = 32)。5 - HT增加的幅度在VII层神经元(32%)中似乎明显大于VIII层(6%)和X层(14%)神经元。在EGFP⁺神经元中也观察到5 - HT对Ca - PIC(n = 6)和Na - PIC(n = 4)的增强作用。本研究揭示了EGFP⁺神经元中PIC的独特特性。与层相关的PIC激活以及5 - HT对PIC幅度的可变影响为运动产生的离子基础提供了见解。