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小胶质细胞集落刺激因子1受体(CSF1R)抑制与GENUS的多模态方法在阿尔茨海默病小鼠中具有治疗效果。

A multimodal approach of microglial CSF1R inhibition and GENUS provides therapeutic effects in Alzheimer's disease mice.

作者信息

Adaikkan Chinnakkaruppan, Islam Md Rezaul, Bozzelli P Lorenzo, Sears Matt, Parro Cameron, Pao Ping-Chieh, Sun Na, Kim TaeHyun, Abdelaal Karim, Sedgwick Mia, Kellis Manolis, Tsai Li-Huei

出版信息

bioRxiv. 2025 Jul 16:2025.04.27.648471. doi: 10.1101/2025.04.27.648471.

Abstract

The CSF1R inhibitor PLX3397, an FDA-approved treatment for a rare cancer, has been shown to reduce microglia count, lower inflammation, and increase synaptic markers in mouse models of Alzheimer's disease (AD). However, the effects of PLX3397 on neural function in AD remain largely unknown. Here, we characterized the effects of PLX3397 treatment in 5xFAD mice. While PLX3397 increased synaptic density, it reduced the percentage of neurons phase-locked to gamma oscillations. This neural decoupling was closely associated with gene expression changes related to synapse organization. We investigated whether Gamma ENtrainment Using Sensory (GENUS) stimulation could counterbalance the neural circuit alterations induced by PLX3397. GENUS + PLX3397 restored gamma phase-locking, reshaped gene expression signatures, and improved learning and memory better than either treatment alone in 5xFAD mice. These findings suggest that CSF1R inhibitors like PLX3397 may benefit from a multimodal approach combining microglial targeting with non-invasive sensory stimulation to support neural physiology and improve cognitive function in AD.

摘要

CSF1R抑制剂PLX3397是一种经美国食品药品监督管理局(FDA)批准用于治疗罕见癌症的药物,在阿尔茨海默病(AD)小鼠模型中已显示出可减少小胶质细胞数量、降低炎症反应并增加突触标记物。然而,PLX3397对AD神经功能的影响在很大程度上仍不清楚。在此,我们对PLX3397治疗5xFAD小鼠的效果进行了表征。虽然PLX3397增加了突触密度,但它降低了与伽马振荡锁相的神经元百分比。这种神经解耦与突触组织相关的基因表达变化密切相关。我们研究了使用感觉刺激进行伽马同步化(GENUS)刺激是否可以抵消PLX3397诱导的神经回路改变。在5xFAD小鼠中,GENUS + PLX3397恢复了伽马锁相,重塑了基因表达特征,并且比单独使用任何一种治疗方法都能更好地改善学习和记忆。这些发现表明,像PLX3397这样的CSF1R抑制剂可能受益于一种多模式方法,即将针对小胶质细胞与非侵入性感觉刺激相结合,以支持神经生理学并改善AD患者的认知功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c7e/12338498/f565eec42154/nihpp-2025.04.27.648471v2-f0001.jpg

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