首页> 外文期刊>The Journal of Physiology >Spatiotemporal gradients of intra-axonal (Na+) after transection and resealing in lizard peripheral myelinated axons.
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Spatiotemporal gradients of intra-axonal (Na+) after transection and resealing in lizard peripheral myelinated axons.

机译:横断并重新密封蜥蜴外周有髓轴突后轴突内(Na +)的时空梯度。

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1. Post-transection changes in intracellular Na+ ([Na+]i) were measured in lizard peripheral axons ionophoretically injected with the Na(+)-sensitive ratiometric dye, sodium-binding benzofuran isophthalate (SBFI). 2. Following axonal transection in physiological saline [Na+]i increased to more than 100 mM in a region that quickly extended hundreds of micrometers from the transection site. This post-transection increase in [Na+]i was similar when the bath contained 5 microM tetrodotoxin, but was absent in Na(+)-free solution. Depolarization of uncut axons in 50 mM K+ produced little or no elevation of [Na+]i until veratridine was added. These results suggest that the post-transection increase in [Na+]i was due mainly to Na+ entry via the cut end, rather than via depolarization-activated Na+ channels. 3. The spatiotemporal profile of the post-transection increase in [Na+]i could be accounted for by movement of Na+ from the cut end with an apparent diffusion coefficient of 1.3 x 10(-5) cm2 s-1. 4. [Na+]i began to decline toward resting levels by 20 +/- 15 min (mean +/- S.D.) post-transection, except in regions of the axon within 160 +/- 85 microns of the transection site, where [Na+]i remained high. The boundary between axonal regions in which [Na+]i did or did not recover probably defines a locus of resealing of the axonal membrane. 5. [Na+]i returned to resting values within about 1 h after resealing, even in axonal regions where the normal transmembrane [Na+] gradient had completely dissipated. The recovery of [Na+]i was faster and reached lower levels than expected by diffusional redistribution of Na+ along the axon. Partial recovery occurred even in an isolated internode, indicating that the internodal axolemma can actively extrude Na+.
机译:1.横断后细胞内Na +([Na +] i)的变化是在离子性地注射了对Na(+)敏感的比例染料钠结合苯并呋喃间苯二甲酸酯(SBFI)的蜥蜴周围轴突中测得的。 2.在生理盐水中轴突横切之后,[Na +] i在从横切部位迅速延伸数百微米的区域中增加至100 mM以上。当浴液含有5 microM河豚毒素时,横切后[Na +] i的增加是相似的,但是在无Na(+)的溶液中却没有。在加入维拉替丁之前,未切割的轴突在50 mM K +中去极化几乎不产生[Na +] i。这些结果表明,[Na +] i的横切后增加主要是由于Na +通过切割末端进入,而不是通过去极化激活的Na +通道。 3. [Na +] i横切后增加的时空分布可能是由于Na +从切端开始移动所致,其表观扩散系数为1.3 x 10(-5)cm2 s-1。 4. [Na +] i在横切后20 +/- 15分钟(平均+/- SD)开始向静止水平下降,除了在横切位点160 +/- 85微米内的轴突区域。 Na +] i保持较高水平。 [Na +] i恢复或未恢复的轴突区域之间的边界可能定义了轴突膜重新密封的位置。 5. [Na +] i在重新密封后约1小时内恢复到静止值,即使在正常跨膜[Na +]梯度已完全消失的轴突区域也是如此。 [Na +] i的恢复速度更快,并且达到的水平低于Na +沿着轴突的扩散重新分布所预期的水平。即使在孤立的节间也发生了部分恢复,表明节间性腋窝可以主动挤出Na +。

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