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A decellularized nerve matrix scaffold inhibits neuroma formation in the stumps of transected peripheral nerve after peripheral nerve injury

摘要Traumatic painful neuroma is an intractable clinical disease characterized by improper extracellular matrix(ECM)deposition around the injury site.Studies have shown that the microstructure of natural nerves provides a suitable microenvironment for the nerve end to avoid abnormal hyperplasia and neuroma formation.In this study,we used a decellularized nerve matrix scaffold(DNM-S)to prevent against the formation of painful neuroma after sciatic nerve transection in rats.Our results showed that the DNM-S effectively reduced abnormal deposition of ECM,guided the regeneration and orderly arrangement of axon,and decreased the density of regenerated axons.The epineurium-perilemma barrier prevented the invasion of vascular muscular scar tissue,greatly reduced the invasion of α-smooth muscle actin-positive myofibroblasts into nerve stumps,effectively inhibited scar formation,which guided nerve stumps to gradually transform into a benign tissue and reduced pain and autotomy behaviors in animals.These findings suggest that DNM-S-optimized neuroma microenvironment by ECM remodeling may be a promising strategy to prevent painful traumatic neuromas.

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作者 Shuai Qiu [1] Pei-Jun Deng [1] Fu-Lin He [2] Li-Wei Yan [1] Zhe-Hui Tu [3] Xiao-Lin Liu [4] Da-Ping Quan [5] Ying Bai [6] Can-Bin Zheng [4] Qing-Tang Zhu [4] 学术成果认领
作者单位 Department of Microsurgery and Orthopedic Trauma,The First Affiliated Hospital,Sun Yat-sen University,Guangzhou,Guangdong Province,China [1] Department of Orthopedic Surgery,The Seventh Affiliated Hospital,Sun Yat-sen University,Shenzhen,Guangdong Province,China [2] Department of Pediatric Orthopedics,Guangzhou Women and Children's Medical Center,Guangzhou Medical University,Guangzhou,Guangdong Province,China [3] Department of Microsurgery and Orthopedic Trauma,The First Affiliated Hospital,Sun Yat-sen University,Guangzhou,Guangdong Province,China;Guangdong Provincial Peripheral Nerve Tissue Engineering and Technology Research Center,Guangzhou,Guangdong Province,China;Guangdong Province Engineering Laboratory for Soft Tissue Biofabrication,Guangzhou,Guangdong Province,China [4] Guangdong Provincial Peripheral Nerve Tissue Engineering and Technology Research Center,Guangzhou,Guangdong Province,China;Schoolof Chemistry,Sun Yat-sen University,Guangzhou,Guangdong Province,China;School of Material Science and Engineering,Sun Yat-sen University,Guangzhou,Guangdong Province,China [5] Guangdong Provincial Peripheral Nerve Tissue Engineering and Technology Research Center,Guangzhou,Guangdong Province,China;Guangdong Province Engineering Laboratory for Soft Tissue Biofabrication,Guangzhou,Guangdong Province,China;School of Material Science and Engineering,Sun Yat-sen University,Guangzhou,Guangdong Province,China [6]
发布时间 2022-08-23(万方平台首次上网日期,不代表论文的发表时间)
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2023年18卷3期

664-670页

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