Fucoidan improving spinal cord injury recovery: Modulating microenvironment and promoting remyelination

褐藻糖胶改善脊髓损伤恢复:调节微环境,促进髓鞘再生

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作者:Haoming Shu, Xin Zhang, Yingyan Pu, Yinuo Zhang, Shixue Huang, Jun Ma, Li Cao, Xuhui Zhou

Conclusion

Fucoidan improves SCI repair by modulating the microenvironment and promoting remyelination.

Methods

In this study, we established an SCI model in mice and intervened in injury repair by daily intraperitoneal injections of different doses of fucoidan (10 and 20 mg/kg). Concurrently, primary oligodendrocyte precursor cells (OPCs) were treated in vitro to validate the differentiation-promoting effect of fucoidan on OPCs. Basso Mouse Scale (BMS), Louisville Swim Scale (LSS), and Rotarod test were carried out to measure the functional recovery. Immunofluorescence staining, and transmission electron microscopy (TEM) were performed to assess the neuroinflammation, apoptosis, glial scar, and remyelination. Western blot analysis was conducted to clarify the underlying mechanism of remyelination.

Results

Our results indicate that in the SCI model, fucoidan exhibits significant anti-inflammatory effects and promotes the transformation of pro-inflammatory M1-type microglia/macrophages into anti-inflammatory M2-type ones. Fucoidan enhances the survival of neurons and axons in the injury area and improves remyelination. Additionally, fucoidan promotes OPCs differentiation into mature oligodendrocytes by activating the PI3K/AKT/mTOR pathway.

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