Conte Camerino D, De Luca A, Mambrini M, Vrbovà G
Dipartimento Farmacobiologico, Facoltà di Farmacia, Università di Bari, Italy.
Pflugers Arch. 1989 Mar;413(5):568-70. doi: 10.1007/BF00594192.
The development of membrane ionic conductances of rat extensor digitorum longus (EDL) muscle fibers was studied in vitro using intracellular recordings. At 7-8 days after birth, the potassium conductance (GK) dominated the total membrane conductance while the chloride conductance (GCl) was very low. A rapid increase of GCl towards adult values was observed after few days (12-14 day old rats), whereas GK did not decrease up to day 23. Denervation at 7-8 days after birth suppressed the maturation of the electrical parameters measured, and 15 days after the nerve crush, GCl was just detectable. These results suggest that the maturation of the electrical properties, and in particular that of the resting chloride conductance in mammalian striated muscle fibers, occurs during the first weeks of postnatal life and is dependent on innervation.
利用细胞内记录技术在体外研究了大鼠趾长伸肌(EDL)肌纤维膜离子电导的发育情况。出生后7 - 8天,钾电导(GK)在总膜电导中占主导地位,而氯电导(GCl)非常低。几天后(12 - 14日龄大鼠)观察到GCl迅速增加至成年水平,而GK直到第23天才下降。出生后7 - 8天去神经支配抑制了所测电参数的成熟,神经挤压15天后,GCl才刚可检测到。这些结果表明,哺乳动物横纹肌纤维电特性的成熟,尤其是静息氯电导的成熟,发生在出生后的头几周,并且依赖于神经支配。