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体外培养的新皮层神经元的电生理特性

Electrophysiological properties of neocortical neurons in vitro.

作者信息

Connors B W, Gutnick M J, Prince D A

出版信息

J Neurophysiol. 1982 Dec;48(6):1302-20. doi: 10.1152/jn.1982.48.6.1302.

Abstract
  1. Intracellular recordings were obtained from neurons of the guinea pig sensorimotor cortical slice maintained in vitro. Under control recording conditions input resistances, time constants, and spiking characteristics of slice neurons were well within the ranges reported by other investigators for neocortical neurons in situ. However, resting potentials (mean of -75 mV) and spike amplitudes (mean of 93.5 mV) were 10-25 mV greater than has been observed in intact preparations. 2. Current-voltage relationships obtained under current clamp revealed a spectrum of membrane-rectifying properties at potentials that were subthreshold for spike generation. Ionic and pharmacologic analyses suggest that subthreshold membrane behavior is dominated by voltage-sensitive, very slowly inactivating conductances to K+ and Na+. 3. Action potentials were predominantly Na+ dependent under normal conditions but when outward K+ currents were reduced pharmacologically, it was possible, in most cells, to evoke a non-Na+-dependent, tetrodotoxin-(TTX) insensitive spike, which was followed by a prominent depolarizing after-potential. Both of these events were blocked by the Ca2+ current antagonists, Co2+ and Mn2+. 4. A small population of neurons generated intrinsic, all-or-none burst potentials when depolarized with current pulses or by synaptic activation. These cells were located at a narrow range of depths comprising layer IV and the more superficial parts of layer V. 5. Spontaneous excitatory synaptic potentials appeared in all neurons. Spontaneous inhibitory events were visible in only about 10% of the cells, and in those cases apparently reversed polarity at a level slightly positive to resting potential. Stimulation of the surface of the slice at low intensities evoked robust and usually concurrent excitatory and inhibitory synaptic potentials. Unitary inhibitory postsynaptic potentials (IPSPs) reversed at levels positive to rest. Stronger stimulation produced a labile, long-duration, hyperpolarizing IPSP with a reversal potential 15-20 mV negative to the resting level. 6. Neocortical neurons in vitro retain the basic membrane and synaptic properties ascribed to them in situ. However, the array of passive and active membrane behavior observed in the slice suggests that cortical neurons may be differentiated by specific functional properties as well as by their extensive morphological diversity.
摘要
  1. 细胞内记录取自体外培养的豚鼠感觉运动皮层切片的神经元。在对照记录条件下,切片神经元的输入电阻、时间常数和放电特性均在其他研究者报道的原位新皮层神经元的范围内。然而,静息电位(平均为 -75 mV)和动作电位幅度(平均为 93.5 mV)比在完整标本中观察到的高 10 - 25 mV。2. 在电流钳制下获得的电流 - 电压关系显示,在低于动作电位产生阈值的电位下,存在一系列膜整流特性。离子和药理学分析表明,阈下膜行为主要由对 K⁺ 和 Na⁺ 的电压敏感、非常缓慢失活的电导主导。3. 在正常情况下,动作电位主要依赖 Na⁺,但当通过药理学方法降低外向 K⁺ 电流时,在大多数细胞中有可能诱发一种非 Na⁺ 依赖性、对河豚毒素(TTX)不敏感的动作电位,随后是一个明显的去极化后电位。这两个事件都被 Ca²⁺ 电流拮抗剂 Co²⁺ 和 Mn²⁺ 阻断。4. 一小部分神经元在用电流脉冲或突触激活使其去极化时会产生内在的、全或无的爆发性电位。这些细胞位于包括第 IV 层和第 V 层较浅部分的狭窄深度范围内。5. 所有神经元中都出现自发兴奋性突触电位。自发抑制性事件仅在约 10% 的细胞中可见,在这些情况下,其极性显然在略高于静息电位的水平反转。以低强度刺激切片表面会诱发强烈且通常同时出现的兴奋性和抑制性突触电位。单一抑制性突触后电位(IPSPs)在高于静息电位的水平反转。更强的刺激会产生一个不稳定的、持续时间长的超极化 IPSP,其反转电位比静息水平负 15 - 20 mV。 6. 体外新皮层神经元保留了原位赋予它们的基本膜和突触特性。然而,在切片中观察到的被动和主动膜行为阵列表明,皮层神经元可能通过特定的功能特性以及广泛的形态多样性来区分。

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