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非洲爪蟾胚胎脊髓神经元体外神经递质敏感性的出现与发育

The appearance and development of neurotransmitter sensitivity in Xenopus embryonic spinal neurones in vitro.

作者信息

Bixby J L, Spitzer N C

出版信息

J Physiol. 1984 Aug;353:143-55. doi: 10.1113/jphysiol.1984.sp015328.

Abstract

We have determined the time of onset and examined some of the properties of neurotransmitter sensitivity in Xenopus spinal neurones developing in dissociated cell culture. These cells are initially insensitive, but acquire responses to several agonists over a period of 6 h. Nearly one-third of the neurones were depolarized by gamma-aminobutyric acid (GABA) or by both GABA and glycine; these cells were not affected by glutamate. The reversal potential of the ionophoretic GABA response is -35 mV. These neurones are likely to be Rohon-Beard neurones. Roughly two-thirds of the neurones were depolarized by glutamate and hyperpolarized by GABA and by glycine. The reversal potential of the ionophoretic GABA response is -58 mV. These neurones are likely to include motoneurones. A quantitative measure of the sensitivity to a given GABA dose was obtained at early and intermediate stages of development. The mean 'sensitivity index' (ionophoretic sensitivity/input resistance) for both classes of neurones in vitro was initially the same as that seen in Rohon-Beard neurones in vivo. This sensitivity index did not increase with time in culture to attain the value at intermediate stages in vivo. The development of chemosensitivity in Rohon-Beard-like neurones in these cultures resembles that of Rohon-Beard neurones in the spinal cord with respect to the time of onset of responses to GABA, the reversal potential, pharmacology and desensitization of these responses, and the spectrum of agonists to which they are sensitive. It differs in the absence of a developmental increase in sensitivity to GABA. The development of chemosensitivity in motoneurone-like neurones in these cultures parallels that of Rohon-Beard-like neurones, with respect to the time of onset and level of sensitivity, as well as susceptibility to pharmacological blockers. Several features of normal neurotransmitter sensitivity, like features of the action potential, differentiate in culture in the absence of normal cellular interactions.

摘要

我们已经确定了非洲爪蟾脊髓神经元在解离细胞培养中发育时神经递质敏感性的起始时间,并研究了其一些特性。这些细胞最初不敏感,但在6小时内会对几种激动剂产生反应。近三分之一的神经元被γ-氨基丁酸(GABA)或GABA和甘氨酸共同作用而发生去极化;这些细胞不受谷氨酸的影响。离子电泳GABA反应的反转电位为-35 mV。这些神经元可能是罗霍恩-比尔兹神经元。大约三分之二的神经元被谷氨酸去极化,被GABA和甘氨酸超极化。离子电泳GABA反应的反转电位为-58 mV。这些神经元可能包括运动神经元。在发育的早期和中期阶段,我们获得了对给定GABA剂量敏感性的定量测量。体外培养的两类神经元的平均“敏感性指数”(离子电泳敏感性/输入电阻)最初与体内罗霍恩-比尔兹神经元中的情况相同。该敏感性指数在培养过程中并未随时间增加而达到体内中期阶段的值。在这些培养物中,类罗霍恩-比尔兹神经元化学敏感性的发育在对GABA反应的起始时间、反转电位、药理学特性以及这些反应的脱敏情况,以及它们对其敏感的激动剂谱方面,与脊髓中的罗霍恩-比尔兹神经元相似。不同之处在于对GABA的敏感性在发育过程中没有增加。在这些培养物中,类运动神经元化学敏感性的发育在起始时间、敏感性水平以及对药理学阻断剂的敏感性方面,与类罗霍恩-比尔兹神经元相似。正常神经递质敏感性的几个特征,就像动作电位的特征一样,在缺乏正常细胞相互作用的培养中也会发生分化。

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