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褐藻糖胶改善脊髓损伤恢复:调节微环境和促进髓鞘再生。

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

机构信息

Department of Orthopedics, Second Affiliated Hospital, Naval Medical University, Shanghai, China.

Department of Neurobiology, Key Laboratory of Molecular Neurobiology of the Ministry of Education, Naval Medical University, Shanghai, China.

出版信息

CNS Neurosci Ther. 2024 Aug;30(8):e14903. doi: 10.1111/cns.14903.

Abstract

INTRODUCTION

Excessive neuroinflammation, apoptosis, glial scar, and demyelination triggered by spinal cord injury (SCI) are major obstacles to SCI repair. Fucoidan, a natural marine plant extract, possesses broad-spectrum anti-inflammatory and immunomodulatory effects and is regarded as a potential therapeutic for various diseases, including neurological disorders. However, its role in SCI has not been investigated.

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.

CONCLUSION

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

摘要

简介

脊髓损伤(SCI)引发的过度神经炎症、细胞凋亡、神经胶质瘢痕和脱髓鞘是 SCI 修复的主要障碍。褐藻糖胶是一种天然海洋植物提取物,具有广谱的抗炎和免疫调节作用,被认为是治疗各种疾病的潜在药物,包括神经疾病。然而,其在 SCI 中的作用尚未得到研究。

方法

本研究通过每日腹腔注射不同剂量的褐藻糖胶(10 和 20mg/kg)建立了 SCI 小鼠模型,并干预了损伤修复。同时,对原代少突胶质前体细胞(OPC)进行了体外处理,以验证褐藻糖胶对 OPC 的促分化作用。Basso 小鼠步态评分(BMS)、Louisville 游泳评分(LSS)和转棒试验用于测量功能恢复。免疫荧光染色和透射电镜(TEM)用于评估神经炎症、细胞凋亡、神经胶质瘢痕和髓鞘再生。Western blot 分析用于阐明髓鞘再生的潜在机制。

结果

我们的结果表明,在 SCI 模型中,褐藻糖胶表现出显著的抗炎作用,并促进促炎 M1 型小胶质细胞/巨噬细胞向抗炎 M2 型转化。褐藻糖胶增强了损伤区域神经元和轴突的存活,并改善了髓鞘再生。此外,褐藻糖胶通过激活 PI3K/AKT/mTOR 通路促进 OPC 分化为成熟的少突胶质细胞。

结论

褐藻糖胶通过调节微环境和促进髓鞘再生来改善 SCI 修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af05/11322593/6effb0630db0/CNS-30-e14903-g002.jpg

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