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与人类疼痛和触觉引起的大脑激活差异相关的脑基因表达模式

Brain Gene Expression Pattern Correlated with the Differential Brain Activation by Pain and Touch in Humans.

作者信息

Tang Jie, Su Qian, Zhang Xue, Qin Wen, Liu Huaigui, Liang Meng, Yu Chunshui

机构信息

Tianjin Key Laboratory of Functional Imaging, Department of Radiology, Tianjin Medical University General Hospital, Tianjin 300052, P.R. China.

Tianjin Key Laboratory of Cancer Prevention and Therapy, Department of Molecular Imaging and Nuclear Medicine, National Clinical Research Center for Cancer, Tianjin's Clinical Research Center for China, Tianjin Medical University Cancer Institute and Hospital, Tianjin 300060, P.R. China.

出版信息

Cereb Cortex. 2021 Jun 10;31(7):3506-3521. doi: 10.1093/cercor/bhab028.

Abstract

Genes involved in pain and touch sensations have been studied extensively, but very few studies have tried to link them with neural activities in the brain. Here, we aimed to identify genes preferentially correlated to painful activation patterns by linking the spatial patterns of gene expression of Allen Human Brain Atlas with the pain-elicited neural responses in the human brain, with a parallel, control analysis for identification of genes preferentially correlated to tactile activation patterns. We identified 1828 genes whose expression patterns preferentially correlated to painful activation patterns and 411 genes whose expression patterns preferentially correlated to tactile activation pattern at the cortical level. In contrast to the enrichment for astrocyte and inhibitory synaptic transmission of genes preferentially correlated to tactile activation, the genes preferentially correlated to painful activation were mainly enriched for neuron and opioid- and addiction-related pathways and showed significant overlap with pain-related genes identified in previous studies. These findings not only provide important evidence for the differential genetic architectures of specific brain activation patterns elicited by painful and tactile stimuli but also validate a new approach to studying pain- and touch-related genes more directly from the perspective of neural responses in the human brain.

摘要

参与疼痛和触觉的基因已得到广泛研究,但很少有研究尝试将它们与大脑中的神经活动联系起来。在这里,我们旨在通过将艾伦人类大脑图谱的基因表达空间模式与人类大脑中疼痛引发的神经反应相联系,来识别与疼痛激活模式优先相关的基因,并进行平行的对照分析以识别与触觉激活模式优先相关的基因。我们在皮质水平上鉴定出1828个基因,其表达模式与疼痛激活模式优先相关,以及411个基因,其表达模式与触觉激活模式优先相关。与优先与触觉激活相关的基因在星形胶质细胞和抑制性突触传递方面的富集不同,优先与疼痛激活相关的基因主要在神经元以及阿片类和成瘾相关途径方面富集,并且与先前研究中鉴定出的疼痛相关基因有显著重叠。这些发现不仅为疼痛和触觉刺激引发的特定大脑激活模式的差异遗传结构提供了重要证据,还验证了一种从人类大脑神经反应角度更直接地研究疼痛和触觉相关基因的新方法。

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