Spi1 regulates the microglial/macrophage inflammatory response via the PI3K/AKT/mTOR signaling pathway after intracerebral hemorrhage

小胶质细胞 脑出血 神经炎症 PI3K/AKT/mTOR通路 再髓鞘化 巨噬细胞 医学 细胞生物学 神经科学 癌症研究 炎症 生物 免疫学 信号转导 中枢神经系统 髓鞘 内科学 生物化学 体外 蛛网膜下腔出血
作者
Guoqiang Zhang,Jianing Lu,Jingwei Zheng,Shuhao Mei,Huaming Li,Xiaotao Zhang,Ping An,Shiqi Gao,Yuanjian Fang,Jun Yu
出处
期刊:Neural Regeneration Research [Medknow Publications]
卷期号:19 (1): 161-170
标识
DOI:10.4103/1673-5374.375343
摘要

Preclinical and clinical studies have shown that microglia and macrophages participate in a multiphasic brain damage repair process following intracerebral hemorrhage. The E26 transformation-specific sequence-related transcription factor Spi1 regulates microglial/macrophage commitment and maturation. However, the effect of Spi1 on intracerebral hemorrhage remains unclear. In this study, we found that Spi1 may regulate recovery from the neuroinflammation and neurofunctional damage caused by intracerebral hemorrhage by modulating the microglial/macrophage transcriptome. We showed that high Spi1 expression in microglia/macrophages after intracerebral hemorrhage is associated with the activation of many pathways that promote phagocytosis, glycolysis, and autophagy, as well as debris clearance and sustained remyelination. Notably, microglia with higher levels of Spi1 expression were characterized by activation of pathways associated with a variety of hemorrhage-related cellular processes, such as complement activation, angiogenesis, and coagulation. In conclusion, our results suggest that Spi1 plays a vital role in the microglial/macrophage inflammatory response following intracerebral hemorrhage. This new insight into the regulation of Spi1 and its target genes may advance our understanding of neuroinflammation in intracerebral hemorrhage and provide therapeutic targets for patients with intracerebral hemorrhage.
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