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Enriched housing promotes post-stroke functional recovery through astrocytic HMGB1-IL-6-mediated angiogenesis

机译:丰富的住房通过星形细胞HMGB1-IL-6介导的血管生成促进中风后功能恢复

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摘要

Enriched environment (EE) is shown to promote angiogenesis, neurogenesis and functional recovery after ischemic stroke. However, the underlying mechanisms remain unclear. C57BL/6 mice underwent middle cerebral artery occlusion (60 min) followed by reperfusion, after which mice were housed in either standard environment (SE) or EE. Here we found that post-ischemic EE exhibited decreased depression and anxiety-like behavior, and promoted angiogenesis and functional recovery compared to SE mice. EE mice treated with high-mobility group box-1 (HMGB1) inhibitor glycyrrhizin had an increased post-stroke depression and anxiety-like behavior, and the angiogenesis and functional recovery were decreased. HMGB1 and interleukin-6 (IL-6) expression in astrocyte were increased in EE mice. EE mice treated with glycyrrhizin decreased, whereas EE mice treated with recombinant HMGB1 (rHMGB1) increased the levels of IL-6 and p-AKT. Blockade of IL-6 with anti-IL-6-neutralizing antibody in EE mice attenuated EE-mediated angiogenesis and functional recovery. Furthermore, our in vitro data revealed that in primary astrocyte cultures rHMGB1 promoted the expression of IL-6 in activated astrocytes. PI3K/AKT signaling pathway was involved in HMGB1-mediated expression of astrocytic IL-6. Thus, our results reveal a previously uncharacterized property of HMGB1/IL-6 signaling pathway in EE-mediated angiogenesis and functional recovery after ischemic stroke.
机译:缺血性中风后,丰富的环境(EE)可促进血管生成,神经发生和功能恢复。但是,其潜在机制仍不清楚。对C57BL / 6小鼠进行大脑中动脉闭塞(60分钟),然后进行再灌注,然后将它们饲养在标准环境(SE)或EE中。在这里,我们发现与SE小鼠相比,缺血后EE表现出降低的抑郁和焦虑样行为,并促进了血管生成和功能恢复。用高迁移率族box-1(HMGB1)抑制剂甘草甜素治疗的EE小鼠中风后抑郁和焦虑样行为增加,血管生成和功能恢复降低。 EE小鼠星形胶质细胞中HMGB1和白介素6(IL-6)表达增加。用甘草甜素处理的EE小鼠减少,而用重组HMGB1(rHMGB1)处理的EE小鼠增加IL-6和p-AKT的水平。用抗IL-6中和抗体阻断EE小鼠中的IL-6会减弱EE介导的血管生成和功能恢复。此外,我们的体外数据显示,在原代星形胶质细胞培养物中,rHMGB1促进了活化星形胶质细胞中IL-6的表达。 PI3K / AKT信号通路参与了HMGB1介导的星形细胞IL-6的表达。因此,我们的研究结果揭示了缺血性卒中后HMGB1 / IL-6信号通路在EE介导的血管生成和功能恢复中未曾表征的特性。

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