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40-Hz 光遗传学刺激可挽救中风后的功能性突触可塑性。

40-Hz optogenetic stimulation rescues functional synaptic plasticity after stroke.

机构信息

Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4067, Australia; Engineering Research Centre of Traditional Chinese Medicine Intelligent Rehabilitation, Ministry of Education, Shanghai 201203, China.

Queensland Brain Institute, The University of Queensland, Brisbane, QLD 4067, Australia.

出版信息

Cell Rep. 2023 Dec 26;42(12):113475. doi: 10.1016/j.celrep.2023.113475. Epub 2023 Nov 17.

Abstract

Evoked brain oscillations in the gamma range have been shown to assist in stroke recovery. However, the causal relationship between evoked oscillations and neuroprotection is not well understood. We have used optogenetic stimulation to investigate how evoked gamma oscillations modulate cortical dynamics in the acute phase after stroke. Our results reveal that stimulation at 40 Hz drives activity in interneurons at the stimulation frequency and phase-locked activity in principal neurons at a lower frequency, leading to increased cross-frequency coupling. In addition, 40-Hz stimulation after stroke enhances interregional communication. These effects are observed up to 24 h after stimulation. Our stimulation protocol also rescues functional synaptic plasticity 24 h after stroke and leads to an upregulation of plasticity genes and a downregulation of cell death genes. Together these results suggest that restoration of cortical dynamics may confer neuroprotection after stroke.

摘要

诱发的伽马波段脑振荡已被证明有助于中风恢复。然而,诱发振荡与神经保护之间的因果关系还不是很清楚。我们已经使用光遗传学刺激来研究诱发的伽马振荡如何在中风后急性期调节皮层动力学。我们的结果表明,40Hz 的刺激以刺激频率驱动中间神经元的活动,并以较低的频率锁定主神经元的活动,从而导致跨频耦合增加。此外,中风后的 40Hz 刺激增强了区域间的通讯。这些效应在刺激后 24 小时内都能观察到。我们的刺激方案还能在中风后 24 小时恢复功能性突触可塑性,并导致可塑性基因的上调和细胞死亡基因的下调。总之,这些结果表明皮层动力学的恢复可能在中风后提供神经保护。

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