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Microglial Hv1 proton channel promotes cuprizone-induced demyelination through oxidative damage

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单位: [1]Huazhong Univ Sci & Technol, Tongji Med Coll, Union Hosp, Ctr Canc, Wuhan 430074, Peoples R China [2]Rutgers State Univ, Sch Arts & Sci, Dept Cell Biol & Neurosci, Piscataway, NJ USA [3]Huazhong Univ Sci & Technol,Tongji Med Coll,Tongji Hosp,Dept Neurol,Wuhan 430074,Peoples R China [4]Rutgers Robert Wood Johnson Med Sch, Dept Neurosci & Cell Biol, Piscataway, NJ USA
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关键词: cuprizone demyelination microglia multiple sclerosis oligodendrocytes voltage-gated proton channel Hv1

摘要:
NADPH oxidase (NOX)-dependent reactive oxygen species (ROS) production in inflammatory cellsincluding microglia plays an important role in demyelination and free radical-mediated tissueinjury in multiple sclerosis (MS). However, the mechanism underlying microglial ROS production and demyelination remains largely unknown. The voltage-gated proton channel, Hv1, is selectively expressed in microglia and is required for NOX-dependent ROS generation in the brain. In the present study, we sought to determine the role of microglial Hv1 proton channels in a mouse model of cuprizone-induced demyelination, a model for MS. Following cuprizone exposure, wild-type mice presented obvious demyelination, decreased myelin basic protein expression, loss of mature oligodendrocytes, and impaired motor coordination in comparison to mice on a normal chow diet. However, mice lacking Hv1 (Hv1(-/-)) are partially protected from demyelination and motor deficits compared with those in wild-type mice. These rescued phenotypes in Hv1(-/-) mice in cuprizone-induced demyelination is accompanied by reduced ROS production, ameliorated microglial activation, increased oligodendrocyte progenitor cell (NG2) proliferation, and increased number of mature oligodendrocytes. These results demonstrate that the Hv1 proton channel is required for cuprizone-induced microglial oxidative damage and subsequent demyelination. Our study suggests that the microglial Hv1 proton channel is a unique target for controlling NOX-dependent ROS production in the pathogenesis of MS.

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出版当年[2014]版:
大类 | 2 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 | 3 区 生化与分子生物学 3 区 神经科学
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出版当年[2013]版:
Q1 NEUROSCIENCES Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
最新[2023]版:
Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Q2 NEUROSCIENCES

影响因子: 最新[2023版] 最新五年平均 出版当年[2013版] 出版当年五年平均 出版前一年[2012版] 出版后一年[2014版]

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第一作者单位: [1]Huazhong Univ Sci & Technol, Tongji Med Coll, Union Hosp, Ctr Canc, Wuhan 430074, Peoples R China [2]Rutgers State Univ, Sch Arts & Sci, Dept Cell Biol & Neurosci, Piscataway, NJ USA
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通讯机构: [1]Huazhong Univ Sci & Technol, Tongji Med Coll, Union Hosp, Ctr Canc, Wuhan 430074, Peoples R China [2]Rutgers State Univ, Sch Arts & Sci, Dept Cell Biol & Neurosci, Piscataway, NJ USA [*1]Rutgers State Univ, Dept Cell Biol & Neurosci, 604 Allison Rd, Piscataway, NJ 08854 USA
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