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周细胞网络增强快速棘突神经元的兴奋性。

Perineuronal Nets Enhance the Excitability of Fast-Spiking Neurons.

机构信息

Grass Laboratory, Marine Biological Laboratory , Woods Hole, Massachusetts 02543.

出版信息

eNeuro. 2016 Jul 27;3(4). doi: 10.1523/ENEURO.0112-16.2016. eCollection 2016 Jul-Aug.

Abstract

Perineuronal nets (PNNs) are specialized complexes of extracellular matrix molecules that surround the somata of fast-spiking neurons throughout the vertebrate brain. PNNs are particularly prevalent throughout the auditory brainstem, which transmits signals with high speed and precision. It is unknown whether PNNs contribute to the fast-spiking ability of the neurons they surround. Whole-cell recordings were made from medial nucleus of the trapezoid body (MNTB) principal neurons in acute brain slices from postnatal day 21 (P21) to P27 mice. PNNs were degraded by incubating slices in chondroitinase ABC (ChABC) and were compared to slices that were treated with a control enzyme (penicillinase). ChABC treatment did not affect the ability of MNTB neurons to fire at up to 1000 Hz when driven by current pulses. However, f-I (frequency-intensity) curves constructed by injecting Gaussian white noise currents superimposed on DC current steps showed that ChABC treatment reduced the gain of spike output. An increase in spike threshold may have contributed to this effect, which is consistent with the observation that spikes in ChABC-treated cells were delayed relative to control-treated cells. In addition, parvalbumin-expressing fast-spiking cortical neurons in >P70 slices that were treated with ChABC also had reduced excitability and gain. The development of PNNs around somata of fast-spiking neurons may be essential for fast and precise sensory transmission and synaptic inhibition in the brain.

摘要

周围神经毡(PNNs)是一种特殊的细胞外基质分子复合物,存在于整个脊椎动物大脑中快速放电神经元的胞体周围。PNNs 在听觉脑干中尤为普遍,听觉脑干以高速和高精度传输信号。目前尚不清楚 PNNs 是否有助于其周围神经元的快速放电能力。在出生后第 21 天(P21)至 P27 天的急性脑切片中,从梯形体中间核(MNTB)主要神经元进行全细胞膜片钳记录。通过在软骨素酶 ABC(ChABC)中孵育切片来降解 PNNs,并将其与用对照酶(青霉素酶)处理的切片进行比较。ChABC 处理不会影响 MNTB 神经元在电流脉冲驱动下以高达 1000 Hz 的频率放电的能力。然而,当向 DC 电流阶跃上叠加高斯白噪声电流进行 f-I(频率-强度)曲线构建时,ChABC 处理显示出降低了尖峰输出的增益。尖峰阈值的增加可能促成了这种效应,这与 ChABC 处理细胞中的尖峰相对于对照处理细胞延迟的观察结果一致。此外,ChABC 处理的> P70 切片中表达 Parvalbumin 的快速放电皮质神经元的兴奋性和增益也降低。快速放电神经元胞体周围 PNNs 的发育可能对大脑中快速和精确的感觉传递和突触抑制至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccc4/4987413/42278f0c0d23/enu004162092r001.jpg

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