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培养的小鼠背根神经节和脊髓细胞兴奋性的离子决定因素。

Ionic determinants of excitability in cultured mouse dorsal root ganglion and spinal cord cells.

作者信息

Ransom B R, Holz R W

出版信息

Brain Res. 1977 Nov 18;136(3):445-53. doi: 10.1016/0006-8993(77)90069-5.

Abstract

The ionic components of the action potentials of mouse spinal cord (SC) cells and dorsal root ganglion (DRG) cells were studied in dissociated cell cultures. It was found that the action potentials of SC cells required Na+ in the medium and were blocked by tetrodotoxin (TTX) (1 micron). Action potentials of DRG cells, on the other hand, were not blocked by TTX (up to 10 micron) and were observed in Na-free media in the presence of 8 mM Ca2+. In low Na (31 mM), low Ca2+ (0.1 mM) medium, action potentials were not observed but could be obtained if the Ca2+ concentration was increased. Action potentials of DRG cells investigated in low Na concentration in the presence of 1 mM or 8 mM Ca2+ became larger in amplitude and shorter in duration when the sodium concentration was increased. Na+ has this effect even in the presence of TTX. It is concluded that the action potentials of SC cells result mainly from a TTX-sensitive Na component. The action potentials of DRG cells on the other hand have both a TTX-insensitive Na component and a Ca2+ component.

摘要

在解离细胞培养物中研究了小鼠脊髓(SC)细胞和背根神经节(DRG)细胞动作电位的离子成分。发现SC细胞的动作电位需要培养基中的Na +,并被河豚毒素(TTX)(1微米)阻断。另一方面,DRG细胞的动作电位不被TTX(高达10微米)阻断,并且在含有8 mM Ca2 +的无钠培养基中观察到。在低钠(31 mM)、低钙2 +(0.1 mM)培养基中,未观察到动作电位,但如果增加Ca2 +浓度则可获得。当钠浓度增加时,在存在1 mM或8 mM Ca2 +的低钠浓度下研究的DRG细胞的动作电位幅度变大且持续时间变短。即使存在TTX,Na +也有这种作用。得出的结论是,SC细胞的动作电位主要由TTX敏感的Na成分引起。另一方面,DRG细胞的动作电位既有TTX不敏感的Na成分,也有Ca2 +成分。

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