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培养的皮层神经元中低镁引发的周期性同步爆发和细胞内钙瞬变。

Periodic synchronized bursting and intracellular calcium transients elicited by low magnesium in cultured cortical neurons.

作者信息

Robinson H P, Kawahara M, Jimbo Y, Torimitsu K, Kuroda Y, Kawana A

机构信息

Nippon Telegraph and Telephone Basic Research Laboratories, Tokyo, Japan.

出版信息

J Neurophysiol. 1993 Oct;70(4):1606-16. doi: 10.1152/jn.1993.70.4.1606.

Abstract
  1. In Mg(2+)-free external solution, rat cortical neurons in cultured networks entered a stable firing mode, consisting of regular bursts of action potentials superimposed on long-lasting depolarizations. The average separation between bursts varied from culture to culture, but was usually between 5 and 20 s. The distribution of burst intervals followed a Gaussian or normal distribution, with a standard deviation of typically 10% of the average burst period. 2. A gradually depolarizing pacemaker potential was never observed between bursts, but the threshold for action potentials during the quiescent phase was > or = 10 mV above the resting potential. No progressive change in conductance or excitability was observed during the quiescent period. Intracellular stimulation of action potentials did not reproduce the long-lasting depolarization. 3. Switching from current clamp to voltage clamp at the resting potential revealed large postsynaptic currents, mainly excitatory but with a small inhibitory component, at the same phase and frequency as the spike bursts, showing that periodic synaptic input is responsible for the burst-depolarizations. The current could be eliminated by local application of 2-amino-5-phosphonovaleric acid (APV) or 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) to the postsynaptic cell. In the presence of tetrodotoxin, irregular miniature excitatory postsynaptic currents were observed. 4. A fluorescent calcium indicator (fluo-3, 100 microM) was included in the whole-cell pipette solution, to allow simultaneous electrical and calcium measurements in the same cell. In current clamp, transient intracellular calcium increases were found, which were synchronized to the spike bursts. The Ca2+ rise lasted as long as the action potential burst, and was followed by an exponential decay considerably slower than that of the membrane potential. Calcium transients disappeared during voltage clamp at the resting potential, suggesting that calcium influx through voltage-dependent calcium channels greatly exceeds that through synaptic channels. 5. Multisite Ca2+ recording, after loading with fluo-3 acetoxymethyl (AM) ester, revealed that the onsets of burst-related calcium transients were synchronized in all active cells of each view-field, to within approximately 20 ms. Occasionally, secondary rhythms were observed in which only a subset of cells participated. The times to peak and the decay times of calcium transients varied among synchronized cells. 6. The pharmacology of the burst-related calcium transients was investigated by bath application of a variety of compounds.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在无镁的细胞外溶液中,培养网络中的大鼠皮层神经元进入一种稳定的放电模式,由叠加在持久去极化上的规则动作电位爆发组成。爆发之间的平均间隔在不同培养物中有所不同,但通常在5到20秒之间。爆发间隔的分布遵循高斯或正态分布,标准差通常为平均爆发周期的10%。2. 在爆发之间从未观察到逐渐去极化的起搏电位,但静息期动作电位的阈值比静息电位高≥10 mV。在静息期未观察到电导或兴奋性的逐渐变化。细胞内刺激动作电位并未重现持久的去极化。3. 在静息电位下从电流钳切换到电压钳显示,在与尖峰爆发相同的相位和频率处有大的突触后电流,主要是兴奋性的,但有一小部分抑制性成分,表明周期性突触输入是爆发性去极化的原因。通过向突触后细胞局部应用2-氨基-5-磷酸戊酸(APV)或6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)可以消除该电流。在存在河豚毒素的情况下,观察到不规则的微小兴奋性突触后电流。4. 全细胞膜片钳溶液中包含一种荧光钙指示剂(fluo-3,100 microM),以便在同一细胞中同时进行电和钙测量。在电流钳中,发现细胞内钙瞬时增加,其与尖峰爆发同步。Ca2+上升与动作电位爆发持续时间相同,随后是指数衰减,比膜电位的衰减慢得多。在静息电位的电压钳期间钙瞬变消失,表明通过电压依赖性钙通道的钙内流大大超过通过突触通道的钙内流。5. 在用fluo-3乙酰氧基甲酯(AM)酯加载后进行的多位点Ca2+记录显示,在每个视野的所有活跃细胞中,爆发相关钙瞬变的起始在约20毫秒内同步。偶尔观察到次级节律,其中只有一部分细胞参与。同步细胞中钙瞬变的峰值时间和衰减时间各不相同。6. 通过在浴中应用各种化合物研究了爆发相关钙瞬变的药理学。(摘要截断于400字)

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