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受外部磁刺激和AD谱系患者内部基因表达影响的大脑重叠系统级架构

Brain overlapping system-level architecture influenced by external magnetic stimulation and internal gene expression in AD-spectrum patients.

作者信息

Yao Weina, Hou Xinle, Zheng Wenao, Shi Xian, Zhang JunJian, Bai Feng

机构信息

Department of Neurology, Zhongnan Hospital of Wuhan University, Wuhan, 430071, China.

Geriatric Medicine Center, Taikang Xianlin Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, 210046, China.

出版信息

Mol Psychiatry. 2025 Apr 4. doi: 10.1038/s41380-025-02991-5.

Abstract

The brain overlapping system-level architecture is associated with functional information integration in the multiple roles of the same region, and it has been developed as an underlying novel biomarker of brain disease and may characterise the indicators for the treatment of Alzheimer's disease (AD). However, it remains uncertain whether these changes are influenced by external magnetic stimulation and internal gene expression. A total of 73 AD-spectrum patients (52 with true stimulation and 21 with sham stimulation) were underwent four-week neuronavigated transcranial magnetic stimulation (rTMS). Shannon-entropy diversity coefficient analysis was used to explore the brain overlapping system of the neuroimaging data in these pre- and posttreatment patients. Transcription-neuroimaging association analysis was further performed via gene expression data from the Allen Human Brain Atlas. Compared with the rTMS_sham stimulation group, the rTMS_true stimulation group achieved the goal of cognitive improvement through the reconstruction of functional information integration in the multiple roles of 27 regions associated with the brain overlapping system, involving the attentional network, sensorimotor network, default mode network and limbic network. Furthermore, these overlapping regions were closely linked to gene expression on cellular homeostasis and immune inflammation, and support vector regression analysis revealed that the baseline diversity coefficients of the attentional and sensorimotor networks can effectively predict memory improvement after rTMS treatment. These findings highlight the brain overlapping system associated with cognitive improvement, and provide the first evidence that external magnetic stimulation and internal gene expression could influence these overlapping regions in AD-spectrum patients.

摘要

脑重叠系统级架构与同一区域多种功能中的功能信息整合相关,它已被开发为一种潜在的脑疾病新型生物标志物,并且可能是阿尔茨海默病(AD)治疗的特征性指标。然而,这些变化是否受外部磁刺激和内部基因表达的影响仍不确定。共有73例AD谱系患者(52例接受真刺激,21例接受假刺激)接受了为期四周的神经导航经颅磁刺激(rTMS)。采用香农熵多样性系数分析来探究这些治疗前后患者神经影像数据的脑重叠系统。通过来自艾伦人类大脑图谱的基因表达数据进一步进行转录-神经影像关联分析。与rTMS假刺激组相比,rTMS真刺激组通过重建与脑重叠系统相关的27个区域多种功能中的功能信息整合实现了认知改善的目标,这些区域涉及注意力网络、感觉运动网络、默认模式网络和边缘系统网络。此外,这些重叠区域与细胞稳态和免疫炎症方面的基因表达密切相关,支持向量回归分析显示,注意力和感觉运动网络的基线多样性系数能够有效预测rTMS治疗后的记忆改善情况。这些发现突出了与认知改善相关的脑重叠系统,并提供了首个证据表明外部磁刺激和内部基因表达可影响AD谱系患者的这些重叠区域。

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