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维持在细胞培养中的鸡背根神经节神经元的动作电位。

The action potential of chick dorsal root ganglion neurones maintained in cell culture.

作者信息

Dichter M A, Fischbach G D

出版信息

J Physiol. 1977 May;267(2):281-98. doi: 10.1113/jphysiol.1977.sp011813.

Abstract
  1. The directly evoked action potential of dissociated, embryonic, chick, dorsal root ganglion (DRG) neurones maintained in cell culture is prolonged compared to spinal cord cell spikes and the re-polarization phase is marked by a plateau. 2. Evidence was obtained that both Ca2+ and Na+ carry inward current across the active soma membrane. Ca2+ because: overshooting spikes persist in tetrodotoxin (TTX) or Na+-free media; in the presence of TTX (or absence of Na+) spike size varies directly with extracellular Ca2+ and spikes are eliminated by Co2+. Na+ because: spikes persist in the presence of Co2+ or Ca2+-free media; in the presence of Co2+ (or absence of Ca2+) spike varies directly with extracellular Na+ and spikes are blocked by TTX. 3. On the other hand, Ca2+ plays less if any role in action potentials conducted along sensory nerve cell processes. Conducted spikes could not be evoked in TTX containing or Na+-free media. 4. A long-lasting depolarization follows the action potential in some neurones. This depolarization is associated with an increase in membrane conductance and appears to drive the membrane potential to ca. -30mV. It persists when conducted impulses are blocked so it is probably not a recurrent synaptic potential. 5. It is suggested that combined Ca2+-Na+ spikes observed in isolated sensory neurones in vitro reflect the action potential of adult sensory cells but the possibility that they represent an early stage in development is also discussed.
摘要
  1. 与脊髓细胞的尖峰相比,在细胞培养中维持的解离的胚胎鸡背根神经节(DRG)神经元的直接诱发动作电位延长,复极化阶段以平台期为特征。2. 有证据表明,Ca2+和Na+都携带内向电流穿过活跃的胞体膜。Ca2+的原因如下:在河豚毒素(TTX)或无Na+培养基中,过冲尖峰持续存在;在TTX存在(或无Na+)时,尖峰大小与细胞外Ca2+直接相关,且尖峰被Co2+消除。Na+的原因如下:在Co2+或无Ca2+培养基中尖峰持续存在;在Co2+存在(或无Ca2+)时,尖峰与细胞外Na+直接相关,且尖峰被TTX阻断。3. 另一方面,Ca2+在沿感觉神经细胞突起传导的动作电位中即使有作用也很小。在含TTX或无Na+的培养基中无法诱发传导性尖峰。4. 在一些神经元中,动作电位之后会出现持久的去极化。这种去极化与膜电导增加有关,似乎将膜电位驱动到约-30mV。当传导性冲动被阻断时它仍然存在,所以它可能不是一个反复出现的突触电位。5. 有人提出,体外分离的感觉神经元中观察到的Ca2+-Na+复合尖峰反映了成年感觉细胞的动作电位,但也讨论了它们代表发育早期阶段的可能性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ab9/1283615/eb61b64a3274/jphysiol00813-0039-a.jpg

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