...
首页> 外文期刊>Journal of neuroinflammation >Decreased MHC I expression in IFN gamma mutant mice alters synaptic elimination in the spinal cord after peripheral injury
【24h】

Decreased MHC I expression in IFN gamma mutant mice alters synaptic elimination in the spinal cord after peripheral injury

机译:IFNγ突变小鼠中MHC I表达的降低改变了周围神经损伤后脊髓中的突触消除

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background The histocompatibility complex (MHC) class I expression in the central nervous system (CNS) regulates synaptic plasticity events during development and adult life. Its upregulation may be associated with events such as axotomy, cytokine exposition and changes in neuron electrical activity. Since IFNγ is a potent inducer of the MHC I expression, the present work investigated the importance of this pro-inflammatory cytokine in the synaptic elimination process in the spinal cord, as well as the motor recovery of IFN?/?, following peripheral injury. Methods The lumbar spinal cords of C57BL/6J (wild type) and IFNγ?/? (mutant) mice, subjected to unilateral sciatic nerve transection, were removed and processed for immunohistochemistry and real time RT-PCR, while the sciatic nerves from animals subjected to unilateral crush, were submitted to immunohistochemistry and electron microscopy for counting of the axons. Gait recovery was monitored using the Cat Walk system. Newborn mice astrocyte primary cultures were established in order to study the astrocytic respose in the absence of the IFNγ expression. Results IFNγ?/? mutant mice showed a decreased expression of MHC I and β2-microglobulin mRNA coupled with reduced synaptophysin immunolabelling in the lesioned spinal cord segment. Following unilateral nerve transection, the Iba-1 (ionized calcium binding adaptor molecule 1) and glial fibrillary acid protein (GFAP) reactivities increased equally in both strains. In vitro, the astrocytes demonstrated similar GFAP levels, but the proliferation rate was higher in the wild type mice. In the crushed nerves (distal stump), neurofilaments and p75NTR immunolabeling were upregulated in the mutant mice as compared to the wild type and an improvement in locomotor recovery was observed. Conclusion The present results show that a lack of IFNγ affects the MHC I expression and the synaptic elimination process in the spinal cord. Such changes, however, do not delay peripheral nerve regeneration after nerve injury.
机译:背景在中枢神经系统(CNS)中的组织相容性复合物(MHC)I类表达调节发育和成年生活中的突触可塑性事件。其上调可能与诸如轴切术,细胞因子暴露和神经元电活动改变等事件相关。由于IFNγ是MHC I表达的有效诱导剂,所以本研究调查了这种促炎细胞因子在脊髓突触消除过程中以及外周损伤后IFNα/β的运动恢复中的重要性。方法采用C57BL / 6J(野生型)腰椎脊髓和IFNγ/γ治疗。取出单侧坐骨神经横断的(突变)小鼠并进行免疫组织化学和实时RT-PCR处理,将单侧压迫动物的坐骨神经进行免疫组织化学和电子显微镜检查以计数轴突。使用Cat Walk系统监控步态恢复。建立新生小鼠星形胶质细胞原代培养是为了研究在不存在IFNγ表达的情况下星形胶质细胞的存在。结果IFNγ?/?突变小鼠显示病变的脊髓节段中MHC I和β2-微球蛋白mRNA的表达降低,同时突触素免疫标记降低。单侧神经横断后,两种菌株中的Iba-1(离子化钙结合衔接分子1)和神经胶质纤维酸蛋白(GFAP)反应性均增加。在体外,星形胶质细胞表现出相似的GFAP水平,但在野生型小鼠中增殖率更高。与野生型相比,在突变的小鼠中,压碎的神经(远端残端)中的神经丝和p75NTR免疫标记被上调,并且运动恢复也有所改善。结论目前的结果表明,缺乏IFNγ会影响脊髓中MHC I的表达和突触消除过程。但是,这种变化不会延迟神经损伤后周围神经的再生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号