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Inhibiting epidermal growth factor receptor attenuates reactive astrogliosis and improves functional outcome after spinal cord injury in rats

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单位: [1]Huazhong Univ Sci & Technol,Tongji Med Coll,Tongji Hosp,Dept Neurol,Wuhan 430030,Hubei,Peoples R China [2]Nanjing Med Univ, Wuxi Peoples Hosp, Dept Neurol, Wuxi 214023, Jiangsu, Peoples R China [3]Shandong Univ, Prov Hosp, Dept Integrated Chinese & Western Med Pediat, Jinan 250021, Shandong, Peoples R China
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关键词: Epidermal growth factor receptor Spinal cord injury Reactive astrogliosis CSPGs GAP-43

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As a physical barrier to regenerating axons, reactive astrogliosis is also a biochemical barrier which can secrete inhibitory molecules, including chondroitin sulfate proteoglycans (CSPGs) in the pathological mechanism of spinal cord injury (SCI). Thus, inhibition of astroglial proliferation and CSPG production might facilitate axonal regeneration after SCI. Recent studies have demonstrated that epidermal growth factor receptor (EGFR) activation triggers quiescent astrocytes into becoming reactive astrocytes and forming glial scar after CNS injury. In the present study, we investigated whether a specific EGFR inhibitor (AG1478) could attenuate the reactive astrogliosis and production of CSPGs, alleviate demyelination, and eventually enhance the functional recovery after SCI in rats. Our results showed that pEGFR immunoreactivity was up-regulated significantly post injury, mainly confined to astrocytes. Meanwhile, astrocytes near the injury site after SCI became activated obviously characterized by hypertrophic morphology and enhanced GFAP expression. However, administration of AG1478 remarkably reduced trauma induced-reactive astrogliosis and accumulation of CSPGs. Furthermore, the treatment with AG1478 also alleviated demyelination, increased expression of growth-associated proteins-43 (GAP-43) and improved hindlimb function after SCI. Therefore, the local blockade of EGFR in an injured area is beneficial to functional outcome by facilitating a more favorable environment for axonal regeneration in SCI rats. (C) 2011 Elsevier Ltd. All rights reserved.

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出版当年[2010]版:
大类 | 3 区 医学
小类 | 3 区 生化与分子生物学 3 区 神经科学
最新[2025]版:
大类 | 3 区 医学
小类 | 2 区 生化与分子生物学 3 区 神经科学
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出版当年[2009]版:
Q2 NEUROSCIENCES Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
最新[2023]版:
Q1 NEUROSCIENCES Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY

影响因子: 最新[2023版] 最新五年平均 出版当年[2009版] 出版当年五年平均 出版前一年[2008版] 出版后一年[2010版]

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第一作者单位: [1]Huazhong Univ Sci & Technol,Tongji Med Coll,Tongji Hosp,Dept Neurol,Wuhan 430030,Hubei,Peoples R China [2]Nanjing Med Univ, Wuxi Peoples Hosp, Dept Neurol, Wuxi 214023, Jiangsu, Peoples R China
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