首页|期刊导航|Journal of Neurorestoratology|Lycium barbarum polysaccharide promotes motor function recovery in rats after spinal cord injury by regulating macrophage/microglial polarization

Lycium barbarum polysaccharide promotes motor function recovery in rats after spinal cord injury by regulating macrophage/microglial polarizationOA

中文摘要

Background:Macrophage and microglial polarization are key drivers of localised inflammatory responses following spinal cord injury(SCI).The equilibrium between the anti-inflammatory and pro-inflammatory effects mediated by polarised cells plays a critical role in influencing neurological recovery post-SCI.Lycium barbarum polysaccharide(LBP),a bioactive compound derived from Lycium barbarum,has shown potential in modulating inflammatory responses and enhancing neurofunctional recovery,yet its underlying mechanisms are still not fully understood.Methods:We selected 48 adult female rats as the experimental subjects for the in vivo study.Random assignment placed the rats into three distinct groups(n=16):Sham,SCI,and SCI+LBP.A rat spinal cord contusion model was utilised to evaluate the therapeutic effects of LBP on histological repair and locomotor recovery following SCI.Inflammatory cytokine levels at the injury site were quantified.In vitro,a lipopolysaccharide(LPS)-induced bone marrow-derived macrophage(BMDM)model was employed to assess the anti-inflammatory effects of LBP,with subsequent analysis of inflammatory mediator profiles and macrophage M1/M2 polarization status.Results:LBP treatment significantly improved hindlimb motor function and enhanced nerve conduction capacity in SCI rats,accompanied by reduced histological damage.Moreover,LBP substantially downregulated pro-inflammatory cytokine expression at the injury site.Mechanistically,LBP suppressed M1 polarization while promoting M2 polarization of macrophages and microglia.Conclusion:LBP offers neuroprotective effects by mitigating post-SCI inflammatory responses via modulation of macrophage and microglial polarization to an anti-inflammatory phenotype.These results provide preclinical evidence for the potential application of LBP as a treatment for SCI.

Dun-Xu Hu;Er-Ke Gao;Jia-Yi Zhang;Jun-Bo Chen;De-Jing Zhang;Peng-Tian Zhao;Zhi-Qi Wang;Jun-Jin Li;Zhi-Jian Wei;Tao Zhang

Department of Spine Surgery,The Second Qilu Hospital of Shandong University,Cheeloo College of Medicine,Shandong University,Jinan 250033,Shandong,ChinaGraduate School of Tianjin Medical University,Tianjin 300070,ChinaCollege of Life Science,Nankai University,Tianjin 300071,ChinaGraduate School of Tianjin Medical University,Tianjin 300070,ChinaGraduate School of Tianjin Medical University,Tianjin 300070,ChinaGraduate School of Tianjin Medical University,Tianjin 300070,ChinaDepartment of Orthopedic,Tianjin First Central Hospital,Tianjin 300192,ChinaNational Spinal Cord Injury International Cooperation Base,Tianjin Key Laboratory of Spine and Spinal Cord Injury,Department of Orthopedics,Tianjin Medical University General Hospital,Tianjin 300070,ChinaDepartment of Orthopedics,Qilu Hospital of Shandong University,Shandong University Centre for Orthopedics,Advanced Medical Research Institute,Shandong University,Jinan 250000,Shandong,ChinaDepartment of Spine Surgery,The Second Qilu Hospital of Shandong University,Cheeloo College of Medicine,Shandong University,Jinan 250033,Shandong,China

医药卫生

Spinal cord injuryPolarizationInflammationBone marrow-derived macrophageLycium barbarum polysaccharide

《Journal of Neurorestoratology》 2026 (1)

P.63-72,10

10.1016/j.jnrt.2025.100264

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