Pharmacology Laboratory, Department of Biomedical Sciences, College of Life Sciences, Ritsumeikan University, Shiga, Japan.
United Graduate School of Child Development, Osaka University, Suita, Japan.
J Comp Neurol. 2022 Aug;530(11):2033-2055. doi: 10.1002/cne.25319. Epub 2022 Apr 3.
The structural plasticity of dendritic spines serves as the adaptive capabilities of the central nervous system to various stimuli. Among these stimuli, cerebral ischemia induces dynamic alterations in neuronal network activity. Arcadlin/Paraxial protocadherin/Protocadherin-8 (Acad), a regulator of dendritic spine density, is strongly induced by activating stimuli to the neurons. However, the detailed distribution of Acad in normal and ischemic adult brains remains unclear. We comprehensively described Acad expression patterns in normal and ischemic adult brains by in situ hybridization histochemistry. We found that intact adult brains expressed Acad in the piriform cortex, dentate gyrus, hippocampal CA3, entorhinal cortex, amygdala, and hypothalamus. Acad expression was dramatically upregulated in the piriform cortex, olfactory area, dentate gyrus, entorhinal cortex, prefrontal cortex, insular cortex, amygdala, and septohippocampal nucleus 4 h after cerebral ischemia. Cerebral ischemia induced widespread neuronal activation, which was required for Acad upregulation. Our data suggested the involvement of Acad in the adaptive plasticity and remodeling of the neuronal network in the limbic and paralimbic systems.
树突棘的结构可塑性是中枢神经系统对各种刺激产生适应能力的基础。在这些刺激中,脑缺血会引起神经元网络活动的动态改变。Arcadlin/Paraxial 原钙黏蛋白/原钙黏蛋白-8(Acad)是树突棘密度的调节因子,它可以被神经元的激活刺激强烈诱导。然而,Acad 在正常和缺血成年脑中的详细分布仍不清楚。我们通过原位杂交组织化学技术全面描述了 Acad 在正常和缺血成年脑中的表达模式。我们发现,完整的成年脑中在梨状皮层、齿状回、海马 CA3 区、内嗅皮层、杏仁核和下丘脑表达 Acad。脑缺血 4 小时后,Acad 在梨状皮层、嗅觉区、齿状回、内嗅皮层、前额叶皮层、岛叶皮层、杏仁核和隔海马核中的表达显著上调。脑缺血诱导了广泛的神经元激活,这是 Acad 上调所必需的。我们的数据表明 Acad 参与了边缘和旁边缘系统中神经网络的适应性可塑性和重塑。