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非洲爪蟾蝌蚪胚胎背根神经节神经元的动作电位

Action potentials of embryonic dorsal root ganglion neurones in Xenopus tadpoles.

作者信息

Baccaglini P I

出版信息

J Physiol. 1978 Oct;283:585-604. doi: 10.1113/jphysiol.1978.sp012521.

Abstract
  1. Several classes of action potentials can be distinguished in dorsal root ganglion cells, studied by intracellular recording techniques in Xenopus laevis tadpoles 4.5--51 days old. The ionic basis of the action potential was investigated by changing the ionic environment of the cells and applying various blocking agents. 2. The Ca2+-dependent action potential is a plateau of relatively long duration (mean 8.7 msec). It is unaffected by removal of Na+ but blocked by mM quantities of Co2+. It is present only in small cells. 3. Ca2+/Na+-dependent action potentials. Type I is a spike followed by a plateau or hump of different durations (mean 8.1 msec). The spike is selectively blocked by removal of Na+, leaving the plateau which is in turn blocked by Co2+. It is present in cells of small and intermediate size. Type II is a spike of short duration (mean 2.0 msec) with only an inflection on the falling phase. The spike is blocked by removal of Na+ and no other components can be elicited. The inflection is blocked by Co2+. It is present in cells of all sizes. Type III is similar to type I but is seen only in solutions in which the outward current is blocked. It was observed only very infrequently. 4. Na+-dependent action potentials. Type I a is a short duration spike (mean 1.1 msec). It is abolished by removal of Na+ or addition of tetrodotoxin (TTX), but largely unaffected by Co2+ or La3+. It is present in cells of all sizes. When the outward current channels are blocked and cells exposed to Na+-free solutions, all cells are capable of producing an action potential in which the inward current is carried by divalent cations. Type I b is a spike with a smooth, more slowly falling phase. It has the same pharmacological properties as type I a action potential and is present in cells of small size. 5. Na+-dependent action potentials. Type II is a spike with an inflection on the falling phase (mean duration 3.4 msec). It is prolonged by Co2+ and La3+. Removal of Na+ abolishes the spike but TTX does not block it. It is present in cells of all sizes. The mean resting potential is less than that of cells with Na+-dependent type I action potentials, while the mean input resistance is greater. 6. Tetraethylammonium chloride (TEA) prolongs the different kinds of action potentials. The amount of prolongation varies among cells with a given type of action potential, so that no distinction could be made of the different actionpotential types based on the effect of TEA. 7. The percent of cells with each kind of action potential varies with the developmental age of the animal. The number of cells with Ca2+ and Ca2+/Na+ action potentials decreases with age, while the number of cells with a Na+ type I action potentials increases. The Na+ type II action potential appears only at later stages. 8...
摘要
  1. 通过对4.5至51日龄非洲爪蟾蝌蚪采用细胞内记录技术研究发现,背根神经节细胞中可区分出几类动作电位。通过改变细胞的离子环境并应用各种阻断剂,对动作电位的离子基础进行了研究。2. 钙依赖性动作电位是持续时间相对较长的平台期(平均8.7毫秒)。去除钠离子对其无影响,但毫摩尔量的钴离子可阻断它。它仅存在于小细胞中。3. 钙/钠依赖性动作电位。I型是一个尖峰后接不同持续时间的平台期或驼峰(平均8.1毫秒)。去除钠离子可选择性阻断尖峰,留下平台期,而平台期又会被钴离子阻断。它存在于小细胞和中等大小的细胞中。II型是持续时间短的尖峰(平均2.0毫秒),仅在下降相有一个转折。去除钠离子可阻断尖峰,且不会引发其他成分。转折会被钴离子阻断。它存在于各种大小的细胞中。III型与I型相似,但仅在向外电流被阻断的溶液中出现。它非常罕见。4. 钠依赖性动作电位。Ia型是持续时间短的尖峰(平均1.1毫秒)。去除钠离子或添加河豚毒素(TTX)可消除它,但钴离子或镧离子对其影响不大。它存在于各种大小的细胞中。当向外电流通道被阻断且细胞暴露于无钠溶液中时,所有细胞都能够产生一种动作电位,其中内向电流由二价阳离子携带。Ib型是一个尖峰,下降相平滑且更缓慢。它具有与Ia型动作电位相同的药理学特性,存在于小细胞中。5. 钠依赖性动作电位。II型是下降相有一个转折的尖峰(平均持续时间3.4毫秒)。钴离子和镧离子可使其延长。去除钠离子可消除尖峰,但TTX不能阻断它。它存在于各种大小的细胞中。平均静息电位低于具有钠依赖性I型动作电位的细胞,而平均输入电阻更大。6. 氯化四乙铵(TEA)可延长不同类型的动作电位。对于给定类型动作电位的细胞,延长的量各不相同,因此无法根据TEA的作用区分不同类型的动作电位。7. 具有每种动作电位的细胞百分比随动物的发育年龄而变化。具有钙和钙/钠动作电位的细胞数量随年龄减少,而具有钠I型动作电位的细胞数量增加。钠II型动作电位仅在后期出现。8...
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c16/1282797/6daee3b797d5/jphysiol00761-0604-a.jpg

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