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沿背腹轴的成年海马神经发生对环境富集与自愿运动相结合减轻小鼠慢性炎性疼痛有不同贡献。

Adult Hippocampal Neurogenesis along the Dorsoventral Axis Contributes Differentially to Environmental Enrichment Combined with Voluntary Exercise in Alleviating Chronic Inflammatory Pain in Mice.

作者信息

Zheng Jie, Jiang Ying-Ying, Xu Ling-Chi, Ma Long-Yu, Liu Feng-Yu, Cui Shuang, Cai Jie, Liao Fei-Fei, Wan You, Yi Ming

机构信息

Neuroscience Research Institute and Department of Neurobiology, School of Basic Medical Sciences, and.

Neuroscience Research Institute and Department of Neurobiology, School of Basic Medical Sciences, and

出版信息

J Neurosci. 2017 Apr 12;37(15):4145-4157. doi: 10.1523/JNEUROSCI.3333-16.2017. Epub 2017 Mar 14.

Abstract

Cognitive behavioral therapy, such as environmental enrichment combined with voluntary exercise (EE-VEx), is under active investigation as an adjunct to pharmaceutical treatment for chronic pain. However, the effectiveness and underlying mechanisms of EE-VEx remain unclear. In mice with intraplantar injection of complete Freund's adjuvant, our results revealed that EE-VEx alleviated perceptual, affective, and cognitive dimensions of chronic inflammatory pain. These effects of EE-VEx on chronic pain were contingent on the occurrence of adult neurogenesis in the dentate gyrus in a functionally dissociated manner along the dorsoventral axis: neurogenesis in the ventral dentate gyrus participated in alleviating perceptual and affective components of chronic pain by EE-VEx, whereas neurogenesis in the dorsal dentate gyrus was involved in EE-VEx's cognitive-enhancing effects. Chronic inflammatory pain was accompanied by decreased levels of brain-derived neurotrophic factor (BDNF) in the dentate gyrus, which were reversed by EE-VEx. Overexpression of BDNF in the dentate gyrus mimicked the effects of EE-VEx. Our results demonstrate distinct contribution of adult hippocampal neurogenesis along the dorsoventral axis to EE-VEx's beneficial effects on different dimensions of chronic pain. Environmental enrichment combined with voluntary exercise (EE-VEx) is under active investigation as an adjunct to pharmaceutical treatment for chronic pain, but its effectiveness and underlying mechanisms remain unclear. In a mouse model of inflammatory pain, the present study demonstrates that the beneficial effects of EE-VEx on chronic pain depend on adult neurogenesis with a dorsoventral dissociation along the hippocampal axis. Adult neurogenesis in the ventral dentate gyrus participates in alleviating perceptual and affective components of chronic pain by EE-VEx, whereas that in the dorsal pole is involved in EE-VEx's cognitive-enhancing effects in chronic pain.

摘要

认知行为疗法,如环境富集结合自主运动(EE-VEx),作为慢性疼痛药物治疗的辅助手段正在积极研究中。然而,EE-VEx的有效性和潜在机制仍不清楚。在足底注射完全弗氏佐剂的小鼠中,我们的结果显示EE-VEx减轻了慢性炎症性疼痛的感觉、情感和认知维度。EE-VEx对慢性疼痛的这些作用取决于齿状回中成年神经发生的发生,且沿背腹轴以功能分离的方式进行:腹侧齿状回中的神经发生参与通过EE-VEx减轻慢性疼痛的感觉和情感成分,而背侧齿状回中的神经发生则参与EE-VEx的认知增强作用。慢性炎症性疼痛伴随着齿状回中脑源性神经营养因子(BDNF)水平的降低,而EE-VEx可使其逆转。齿状回中BDNF的过表达模拟了EE-VEx的作用。我们的结果表明,成年海马神经发生沿背腹轴对EE-VEx对慢性疼痛不同维度的有益作用有不同贡献。环境富集结合自主运动(EE-VEx)作为慢性疼痛药物治疗的辅助手段正在积极研究中,但其有效性和潜在机制仍不清楚。在炎症性疼痛的小鼠模型中,本研究表明EE-VEx对慢性疼痛的有益作用取决于成年神经发生,且沿海马轴存在背腹分离。腹侧齿状回中的成年神经发生参与通过EE-VEx减轻慢性疼痛的感觉和情感成分,而背侧极中的成年神经发生则参与EE-VEx对慢性疼痛的认知增强作用。

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