Huerta Miguel, Vásquez Clemente, Trujillo Xóchitl, Muñiz Jesús, Trujillo-Hernández Benjamin
Unidad de Investigación Enrico Stefani del Centro Universitario de Investigaciones Biomédicas, Universidad de Colima, Apartado Postal 11, México.
Exp Neurol. 2003 Jun;181(2):313-8. doi: 10.1016/s0014-4886(03)00093-1.
We tested whether the absence of an inward rectifier channel in slow skeletal muscle fibers of the frog is regulated by innervation. Normal and denervated slow fibers were identified according to their passive electrical properties. In current-clamp experiments, anomalous rectification was quantified as the ratio of effective resistances for hyperpolarizing and depolarizing pulses. In isotonic potassium solution, this ratio was 0.45 +/- 0.1 (n = 14) for twitch fibers, whereas slow fibers displayed linear behavior [ratio = 1.0 +/- 0.05 (n = 15)]. However, denervated slow fibers showed anomalous rectification (ratio, 0.48 +/- 0.07; n = 5). This finding was supported by voltage-clamp experiments in which denervated slow fibers displayed (1) an inward rectifier current during hyperpolarizing pulses, (2) an increase in this current when K(+) was increased, and (3) a current inhibition after application of Ba(2+). These results suggest that frog slow fibers, which normally do not possess inward rectifier channels, can express them after denervation.
我们测试了青蛙慢肌纤维中内向整流通道的缺失是否受神经支配调控。根据其被动电特性鉴定正常和去神经支配的慢纤维。在电流钳实验中,反常整流被量化为超极化和去极化脉冲有效电阻的比值。在等渗钾溶液中,抽搐纤维的该比值为0.45±0.1(n = 14),而慢纤维表现为线性行为[比值 = 1.0±0.05(n = 15)]。然而,去神经支配的慢纤维显示出反常整流(比值,0.48±0.07;n = 5)。这一发现得到了电压钳实验的支持,在该实验中,去神经支配的慢纤维表现出:(1)超极化脉冲期间的内向整流电流;(2)当[K⁺]ₒ增加时该电流增加;(3)应用Ba²⁺后电流受到抑制。这些结果表明,正常情况下不具备内向整流通道的青蛙慢纤维在去神经支配后能够表达这些通道。