Oswald Anne-Marie M, Reyes Alex D
Center for Neural Science, New York University, 4 Washington Place, Rm 809, New York, NY 10003, USA.
J Neurophysiol. 2008 Jun;99(6):2998-3008. doi: 10.1152/jn.01160.2007. Epub 2008 Apr 16.
We investigated the development of L2/3 pyramidal cell (PC) circuitry in juvenile mice from postnatal day 10 (P10) to P29. Using whole cell recordings in an in vitro thalamocortical slice preparation, we examined the connection architecture and intrinsic and synaptic properties of PCs. The excitatory connections between PCs were highly localized: the probability of connection between PCs declined with intersomatic distance from 0.18 to about 0.05 over 150 microm, but did not vary with age. However, the mean and variance of the intrinsic and synaptic properties of PCs changed dramatically between P10 and P29. The input resistance, membrane time constant, and resting membrane potential decreased, leading to reduced neural excitability in older animals. Likewise, there were age-dependent decreases in the amplitude and decay time of the excitatory postsynaptic potentials as well as short-term synaptic depression. Both the intrinsic and synaptic properties underwent a transitional period between P10 and P18 prior to reaching steady state at P19-P29. We show that these properties combine to produce age-related differential synaptic responses to low- and high-frequency synaptic input that may contribute to differences in auditory processing during development.
我们研究了从出生后第10天(P10)到第29天(P29)的幼年小鼠中L2/3锥体神经元(PC)回路的发育情况。利用体外丘脑皮质脑片制备中的全细胞膜片钳记录,我们检测了PC的连接结构以及内在特性和突触特性。PC之间的兴奋性连接高度局限:在150微米的范围内,PC之间的连接概率随着体细胞间距离从0.18降至约0.05,但不随年龄变化。然而,PC的内在特性和突触特性的均值和方差在P10和P29之间发生了显著变化。输入电阻、膜时间常数和静息膜电位降低,导致年长动物的神经兴奋性降低。同样,兴奋性突触后电位的幅度和衰减时间以及短期突触抑制也存在年龄依赖性降低。内在特性和突触特性在P10和P18之间都经历了一个过渡期,然后在P19 - P29达到稳态。我们表明,这些特性共同作用,产生与年龄相关的对低频和高频突触输入的不同突触反应,这可能有助于发育过程中听觉处理的差异。