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Danlu Tongdu tablets treat lumbar spinal stenosis through reducing reactive oxygen species and apoptosis by regulating CDK2/CDK4/CDKN1A expression

摘要Lumbar spinal stenosis is caused by the compression of the nerve root or cauda equina nerve by stenosis of the lumbar spinal canal or intervertebral foramen,and is manifested as chronic low back and leg pain.Danlu Tongdu(DLTD)tablets can relieve chronic pain caused by lumbar spinal stenosis,but the molecular mechanism remains largely unknown.In this study,the potential molecular mechanism of DLTD tablets in the treatment of lumbar spinal stenosis was first predicted by the network pharmacology method.Results showed that DLTD functions in regulating anti-oxidative,apoptosis,and inflammation signaling pathways.Furthermore,the flow cytometry results showed that DLTD tablets efficiently reduced reactive oxygen species content and inhibited rat neural stem cell apoptosis induced by hydrogen peroxide.DLTD also inhibited the mitochondrial membrane potential damage induced by hydrogen peroxide.Elisa analysis showed that DLTD induced cell cycle-related protein,CDK2 and CDK4,and reduced CDKN1A protein expression level.Taken together,our study provided new insights of DLTD in treating lumbar spinal stenosis through reducing reactive oxygen species content,decreasing apoptosis by inhibiting CDKN1A and promoting CDK2 and CDK4 expression levels.

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作者 Xue Bai [1] Ayesha Tasleem Tahir [2] Zheng-Heng Yu [3] Wen-Bo Cheng [4] Bo Zhang [5] Jun Kang [1] 学术成果认领
作者单位 School of Life Sciences,Tianjin University,Tianjin 300072,China [1] Department of Biosciences,COMSATS University Islamabad,Islamabad 45550,Pakistan [2] Breast Disease Center,Peking University First Hospital,Beijing 100034,China [3] Tianjin Key Laboratory of Medical Mass Spectrometry for Accurate Diagnosis,Tianjin 300399,China [4] Institute for TCM-X,MOE Key Laboratory of Bioinformatics,Bioinformatics Division,BNRist,Department of Automation,Tsinghua University,Beijing 100084,China;Beijing Intelligent Medicine and Network Pharmacology Co.,Ltd.,Beijing 100020,China [5]
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DOI 10.53388/TMR20230216003
发布时间 2024-11-18(万方平台首次上网日期,不代表论文的发表时间)
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