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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Brain‐derived neurotrophic factor fused with a collagen‐binding domain inhibits neuroinflammation and promotes neurological recovery of traumatic brain injury mice via TrkB signalling
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Brain‐derived neurotrophic factor fused with a collagen‐binding domain inhibits neuroinflammation and promotes neurological recovery of traumatic brain injury mice via TrkB signalling

机译:与胶原结合结构域融合的脑衍生的神经营养因子抑制神经引发炎症,促进通过TRKB信号传导的创伤性脑损伤小鼠的神经恢复

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Abstract Objectives As one of the vital nutrient factors in central nervous system (CNS), brain‐derived neurotrophic factor (BDNF) can significantly attenuate neuron damage and promote neurogenesis. Nevertheless, little research has been conducted on regulating the effect of BDNF on the inflammatory response after traumatic brain injury (TBI). Methods In this study, we used BDNF fused with a collagen‐binding domain (CBD‐BDNF) to maintain a sufficient concentration of BDNF in the TBI hemisphere, and then, the regulatory effects of BDNF and CBD‐BDNF on the inflammatory response of microglia were investigated both on a TBI mice model in vivo and LPS‐stimulated microglia experiment in vitro. Key findings The results revealed that BDNF and CBD‐BDNF had similar effects on attenuating the pro‐inflammatory reactions but promoting anti‐inflammatory responses of microglia induced by LPS in vitro. Furthermore, CBD‐BDNF significantly improved the neurological behaviours of TBI mice and alleviated the inflammatory reaction after TBI, while BDNF had weaker effects compared with those of CBD‐BDNF. Additionally, the TrkB inhibitor K252a significantly inhibited the above effects of CBD‐BDNF. Conclusions In conclusion, CBD‐BDNF can promote the anti‐inflammatory function of microglia and neurological recovery of TBI mice through TrkB signalling.
机译:摘要目的是中枢神经系统(CNS)中的重要营养因子之一,脑衍生的神经营养因子(BDNF)可以显着衰减神经元损伤并促进神经发生。然而,在调节BDNF对创伤后炎症反应的影响(TBI)的炎症反应的影响时,已经进行了很少的研究。本研究的方法,我们使用与胶原结合结构域(CBD-BDNF)融合的BDNF,以保持TBI半球中的足够浓度的BDNF,然后,BDNF和CBD-BDNF对微胶质细胞炎症反应的调节作用在体外体内和LPS刺激的微胶质植物实验中对TBI小鼠模型进行了研究。主要发现结果表明,BDNF和CBD-BDNF对衰减促炎反应的效果类似,但促进了LPS体外诱导的小胶质细胞的抗炎反应。此外,CBD-BDNF显着改善了TBI小鼠的神经功能,并减轻了TBI后的炎症反应,而BDNF与CBD-BDNF相比的作用较弱。另外,TRKB抑制剂K252A显着抑制了CBD-BDNF的上述作用。结论总之,CBD-BDNF可以通过TRKB信号传导促进MICRIGLIA的抗炎功能和TBI小鼠的神经恢复。

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