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Characterization of the anterior cingulate cortex in adult tree shrew

机译:成年树sh前扣带回皮层的表征

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摘要

The anterior cingulate cortex (ACC) is a key brain region for the perception of pain and emotion. Cellular and molecular mechanisms of the ACC are usually investigated in rodents such as mice and rats. Studies of synaptic mechanisms in primates are limited. To facilitate the translation of basic results from rodents to humans, it is critical to use a primate-like animal model for the investigation of the ACC. The tree shrew presents a great opportunity for this as they have similar genome sequences to primates and are considered to have many similarities to primates. In the present study, by combining anatomy, immunostaining and micro-optical sectioning tomography methods, we examined the morphological properties of the ACC in the tree shrew and compared them with the mouse and rat. We found that the ACC in the tree shrew is significantly larger than those found in the mouse and rat. The sizes of cell bodies of ACC pyramidal cells in tree shrew are also larger than that found in the mouse or rat. Furthermore, there are significantly more apical/basal dendritic branches and apical dendritic spines of ACC pyramidal neurons in tree shrew. These results demonstrate that pyramidal cells of the ACC in tree shrews are more advanced than those found in rodents (mice and rats), indicating that the tree shrew can be used as a useful animal model for studying the cellular mechanism for ACC-related physiological and pathological changes in humans.
机译:前扣带回皮层(ACC)是感知疼痛和情绪的关键大脑区域。通常在啮齿动物例如小鼠和大鼠中研究ACC的细胞和分子机制。在灵长类动物中突触机制的研究是有限的。为了便于将啮齿动物的基本结果转化为人类,至关重要的是使用灵长类动物模型进行ACC研究。树sh为此提供了巨大的机会,因为它们与灵长类动物具有相似的基因组序列,并被认为与灵长类动物具有许多相似性。在本研究中,通过结合解剖,免疫染色和显微光学断层扫描技术,我们检查了树sh中ACC的形态学特性,并将其与小鼠和大鼠进行了比较。我们发现树sh中的ACC明显大于在小鼠和大鼠中发现的ACC。树sh中ACC锥体细胞的细胞体大小也比小鼠或大鼠中的大。此外,在树A中,ACC锥体神经元的顶端/基底树突分支和顶端树突棘明显更多。这些结果表明,树sh中ACC的锥体细胞比在啮齿动物(小鼠和大鼠)中发现的锥体细胞更先进,这表明树sh可以用作研究ACC相关生理和生理细胞机制的有用动物模型。人类的病理变化。

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