首页> 美国卫生研究院文献>The Journal of Physiology >Electrical excitability of outgrowing neurites of embryonic neurones in cultures of dissociated neural plate of Xenopus laevis.
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Electrical excitability of outgrowing neurites of embryonic neurones in cultures of dissociated neural plate of Xenopus laevis.

机译:非洲爪蟾离体神经板培养物中胚胎神经元神经突向外生长的电兴奋性。

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摘要

1. I have studied the electrical excitability of outgrowing processes of individual neurones in cultures made from dissociated neural plates of embryos of Xenopus laevis prior to the time of neurite outgrowth in vivo. 2. The electrical excitability of neurites was tested by stimulating them extracellularly and recording responses with an intracellular electrode in their cell bodies; neurites were excitable at all times examined. 3. The ionic basis of the excitability of neurites was tested by recording from cells while changing the composition of the salines perfusing the cultures. 4. In cultures less than 10 hr old, all neurites tested made responses which depended on Ca2+. The action potentials of the cell bodies were also Ca2+-dependent at these times. 5. Between 10 and 12 hr in culture, a time at which the cell bodies still made Ca2+-dependent action potentials, neurites acquired the ability to make Na+-dependent responses. At these times, two-thirds of neurites tested retained the ability to produce divalent cation-dependent action potentials when perfused with solutions of isotonic Ba2+. 6. After 12 hr in culture, no neurites were observed to make Ca2+-or Ba2+-dependent responses; only Na+-dependent responses were observed. Cells continued to initiate and elongate new neurites until about 24 hr in culture. Thus neurites sent out at different times in culture differed in their development of excitability. 7. Cell bodies making exclusively Ca2+-dependent action potentials could be found until about 15 hr in culture, after which time a Na+-dependent component appeared. Cell bodies could then be observed to make action potentials which depended on both Ca2+ and Na+ until about 3 days in culture. After 3 days, most cell bodies made predominately Na+-dependent action potentials. Unlike the neurites, cell bodies retained the ability to make action potentials in isotonic Ba2+ for as long as the cultures were maintained (up to 5 days). 8. The possibility that changes in the ionic basis of action potentials reflected the death of one population of cells and the simultaneous appearance of another population with different properties was eliminated by observing the fate of single cells while changes in the physiological properties were occurring. Such observations showed that the majority of cells in each culture were surviving throughout the period of study. 9. Thus the membranes of the neurites and cell bodies of neurones in these cultures appeared to undergo independently timed changes in the ionic basis of their action potentials.
机译:1.我研究了在体内神经突生长之前,非洲爪蟾胚胎的离解神经板制成的培养物中单个神经元生长过程的电兴奋性。 2.通过在细胞外刺激神经突并在其细胞体内用细胞内电极记录反应来测试神经突的电兴奋性。在所有时间检查神经突都是兴奋的。 3.通过从细胞中记录,同时改变灌注培养液的盐水组成,来测试神经突兴奋性的离子基础。 4.在不到10小时的培养物中,所有测试的神经突均依赖于Ca2 +做出反应。在这些时候,细胞体的动作电位也依赖于Ca2 +。 5.在培养的10至12小时之间,即细胞体仍产生Ca2 +依赖性动作电位的时间,神经突获得了做出Na +依赖性反应的能力。在这些时间,当用等渗Ba 2+溶液灌注时,三分之二的神经突保留了产生二价阳离子依赖性动作电位的能力。 6.培养12小时后,未观察到神经突产生Ca 2+或Ba 2+依赖的应答。仅观察到Na +依赖性反应。细胞继续引发并延长新的神经突,直至培养约24小时。因此,在文化的不同时期发出的神经突兴奋性发展不同。 7.可以发现仅产生Ca 2+依赖性动作电位的细胞体直至培养约15小时,此后出现Na +依赖性成分。然后可以观察到细胞体产生依赖于Ca 2+和Na +的动作电位,直到培养约3天。 3天后,大多数细胞体主要产生依赖Na +的动作电位。与神经突不同,只要维持培养(长达5天),细胞体就可以保持在等渗Ba2 +中产生动作电位的能力。 8.通过观察发生生理特性变化的单个细胞的命运,消除了动作电位的离子基础变化反映一个细胞群体死亡并同时出现另一个具有不同特性的群体的可能性。这样的观察表明,在整个研究期间,每种培养物中的大多数细胞都存活下来。 9.因此,在这些培养物中,神经元的神经突和细胞膜似乎在其动作电位的离子基础上经历了独立的定时变化。

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