Syková E, Orkand R K, Chvátal A, Hájek I, Kríz N
Institute of Physiological Regulations, Czechoslovak Academy of Science, Prague.
Pflugers Arch. 1988 Jul;412(1-2):183-7. doi: 10.1007/BF00583748.
A 6-10-fold increase in pCO2 in the superfusing Ringer solution increased the volume of the extracellular space (ECS) and changed the spatial distribution and amplitude of the extracellular K+ accumulation which resulted from dorsal root stimulation. Using the increase in tetraethylammonium concentration [( TEA+]) resulting from iontophoretic injection of that ion in the extracellular fluid as an indication of the volume of the ECS, it was found that in high pCO2 the ECS volume in spinal dorsal horn increased by more than 60%. In addition, in the presence of raised pCO2 we also observed the following: (1) The rate of diffusion of TEA+ into the dorsal horn increased. (2) The accumulation of K+ evoked by single or tetanic stimulation of the dorsal root was less. (3) The clearance of K+ was slowed down. (4) The regions where K+ accumulated were more restricted. (5) The K+ evoked depolarization of the primary afferent fibres decreased. (6) In contrast to TEA+, the rate of diffusion of K+ into the dorsal horn decreased. The effects of an increase in pCO2 on K+ accumulation and clearance appear to result from an increase in ECS volume and a possible decrease in glial electrical coupling which interferes with glial spatial buffering of K+.
灌注林格液中pCO2升高6 - 10倍,可增加细胞外间隙(ECS)的容积,并改变背根刺激所致细胞外K+蓄积的空间分布和幅度。以细胞外液中离子电渗注入四乙铵(TEA+)后其浓度升高作为ECS容积的指标,发现高pCO2时脊髓背角的ECS容积增加超过60%。此外,在pCO2升高时我们还观察到以下情况:(1)TEA+向背角的扩散速率增加。(2)单次或强直刺激背根所诱发的K+蓄积减少。(3)K+的清除减慢。(4)K+蓄积的区域更局限。(5)K+诱发的初级传入纤维去极化减弱。(6)与TEA+相反,K+向背角的扩散速率降低。pCO2升高对K+蓄积和清除的影响似乎是由于ECS容积增加以及可能存在的神经胶质电耦合降低,后者干扰了神经胶质对K+的空间缓冲作用。