神经营养因子
分泌物
轴突
再生(生物学)
奶油
巨噬细胞
神经营养素
低强度激光治疗
细胞生物学
病变
巨噬细胞极化
癌症研究
医学
神经科学
化学
体外
生物
内科学
病理
转录因子
受体
激光器
生物化学
激光治疗
物理
基因
光学
作者
Jiawei Zhang,Jiakai Sun,Qiao Zhou,Xueyu Hu,Zhe Wang,Zhicheng Liang,Kun Li,Jiwei Song,Tan Ding,Xuefeng Shen,Jianxin Zhang,Qiao Lin
摘要
Abstract Macrophages play key roles in the secondary injury stage of spinal cord injury (SCI). M1 macrophages occupy the lesion area and secrete high levels of inflammatory factors that hinder lesion repair, and M2 macrophages can secrete neurotrophic factors and promote axonal regeneration. The regulation of macrophage secretion after SCI is critical for injury repair. Low‐level laser therapy (810‐nm) (LLLT) can boost functional rehabilitation in rats after SCI; however, the mechanisms remain unclear. To explore this issue, we established an in vitro model of low‐level laser irradiation of M1 macrophages, and the effects of LLLT on M1 macrophage polarization and neurotrophic factor secretion and the related mechanisms were investigated. The results showed that LLLT irradiation decreased the expression of M1 macrophage‐specific markers, and increased the expression of M2 macrophage‐specific markers. Through forward and reverse experiments, we verified that LLLT can promote the secretion of various neurotrophic factors by activating the PKA‐CREB pathway in macrophages and finally promote the regeneration of axons. Accordingly, LLLT may be an effective therapeutic approach for SCI with clinical application prospects.
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