Early postnatal GABAB antagonist treatment normalizes inhibitory/excitatory balance in neonatal Ts65Dn mice, a genetic model of down syndrome

IF 4.2 2区 医学 Q1 NEUROSCIENCES Experimental Neurology Pub Date : 2025-04-01 Epub Date: 2025-01-29 DOI:10.1016/j.expneurol.2025.115171
Joshua Jin, James Doan, Cassandra Fernandez, Samuel Nguyen, Cole Spencer, Alexander M. Kleschevnikov
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Abstract

Brain abnormalities in Down syndrome (DS) most rapidly accumulate during the third trimester, a critical period for the formation of neural circuits in the hippocampus and neocortex. In mice, this stage roughly corresponds to the first 2.5 weeks after birth. We hypothesized that enhanced Girk2 channel signaling during this critical period profoundly contributes to the formation of faulty neural circuits in mouse genetic models of DS, with a key feature being an imbalance of excitatory and inhibitory neurotransmission favoring inhibition. Major predictions of this hypothesis were tested. We observed that hippocampal Girk2 levels are enhanced, GABAB/Girk2 signaling efficiency is increased, and intrinsic neuronal excitability of dentate gyrus (DG) granule cells is reduced in neonatal Ts65Dn mice. Given this, we tested if suppressing the enhanced GABAB/Girk2 signaling in the early postnatal period would affect the inhibitory/excitatory (I/E) balance in Ts65Dn mice. Remarkably, GABAB antagonist treatment from postnatal day 2 (P2) to P17 normalized the exaggerated IPSC/EPSC ratio in DG granule cells in Ts65Dn mice. Our findings show that GABAB/Girk2 signaling is increased in neonatal Ts65Dn mice, and that pharmacological suppression of GABAB receptors during the early postnatal period normalizes the I/E balance. These results suggest that early intervention targeting GABAB/Girk2 signaling could be a promising therapeutic approach to mitigate cognitive impairment in DS.
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出生后早期GABAB拮抗剂治疗使新生儿Ts65Dn小鼠(唐氏综合征遗传模型)的抑制/兴奋平衡正常化。
唐氏综合征(DS)的大脑异常在妊娠晚期积聚最为迅速,这是海马和新皮层神经回路形成的关键时期。在老鼠身上,这个阶段大致相当于出生后的前2.5周。我们假设,在这一关键时期,增强的Girk2通道信号在很大程度上促成了小鼠退行性椎体变性遗传模型中错误神经回路的形成,其关键特征是兴奋性和抑制性神经传递不平衡,有利于抑制。这一假设的主要预测得到了验证。我们观察到新生Ts65Dn小鼠海马Girk2水平增强,GABAB/Girk2信号传导效率提高,齿状回(DG)颗粒细胞的内在神经元兴奋性降低。鉴于此,我们测试了在产后早期抑制增强的GABAB/Girk2信号是否会影响Ts65Dn小鼠的抑制性/兴奋性(I/E)平衡。值得注意的是,从出生后第2天(P2)到P17天,GABAB拮抗剂治疗使Ts65Dn小鼠DG颗粒细胞中IPSC/EPSC比例升高正常化。我们的研究结果表明,GABAB/Girk2信号在新生Ts65Dn小鼠中增加,并且在出生后早期对GABAB受体的药物抑制使I/E平衡正常化。这些结果表明,针对GABAB/Girk2信号的早期干预可能是缓解退行性痴呆患者认知功能障碍的一种有希望的治疗方法。
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来源期刊
Experimental Neurology
Experimental Neurology 医学-神经科学
CiteScore
10.10
自引率
3.80%
发文量
258
审稿时长
42 days
期刊介绍: Experimental Neurology, a Journal of Neuroscience Research, publishes original research in neuroscience with a particular emphasis on novel findings in neural development, regeneration, plasticity and transplantation. The journal has focused on research concerning basic mechanisms underlying neurological disorders.
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