Effects of facial nerve axotomy on Th2-associated and Th1-associated chemokine mRNA expression in the facial motor nucleus of wild-type and presymptomatic SOD1 mice.

Derek A Wainwright, Nichole A Mesnard, Junping Xin, Virginia M Sanders, Kathryn J Jones
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Abstract

The authors have previously demonstrated a neuroprotective mechanism of facial motoneuron (FMN) survival after facial nerve transection that is dependent on CD4(+)T helper 2 (Th2) cell interactions with peripheral antigen presenting cells, as well as central nervous system (CNS) resident microglia. Pituitary adenylyl cyclase activating polypeptide is expressed by injured FMN and increases Th2-associated chemokine expression in cultured murine microglia. Collectively, these data suggest a model involving CD4(+) Th2 cell migration to the facial motor nucleus after injury via microglial expression of Th2-associated chemokines. In this study, the authors tested the hypothesis that Th2-associated chemokine expression occurs in the facial motor nucleus after facial nerve axotomy at the stylomastoid foramen. Initial microarray analysis of Th2-associated and Th1-associated chemokine mRNA levels was accomplished after facial nerve axotomy in wild type (WT) and presymptomatic mutant superoxide dismutase 1 (mSOD1) [model of familial amyotrophic lateral sclerosis (ALS)] mice. Based on that initial microarray analysis, the Th2-associated chemokine, CCL11, and Th1-associated chemokine, CXCL11, were further analyzed by RT-PCR. The results indicate that facial nerve injury predominantly increases Th2-associated chemokine, but not Th1-associated chemokine mRNA levels in the mouse facial motor nucleus. Interestingly, no differences were detected between WT and mSOD1 mice for CCL11 and CXCL11 after injury. These data provide a basis for further investigation into Th2-associated chemokine expression in the facial motor nucleus after FMN injury, which may lead to more specifically targeted therapeutics in motoneuron diseases, such as ALS.

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面神经切断术对野生型和症状前SOD1小鼠面肌运动核中th2相关和th1相关趋化因子mRNA表达的影响
作者先前已经证明了面神经横断后面神经运动神经元(FMN)存活的神经保护机制依赖于CD4(+)T辅助2 (Th2)细胞与外周抗原呈递细胞以及中枢神经系统(CNS)驻留小胶质细胞的相互作用。垂体腺苷酸环化酶激活多肽在损伤的FMN中表达,并增加培养小鼠小胶质细胞中th2相关趋化因子的表达。总的来说,这些数据表明,在损伤后,CD4(+) Th2细胞通过小胶质细胞表达Th2相关趋化因子向面部运动核迁移的模型。在这项研究中,作者验证了在茎突乳突孔处面神经轴突切开术后面神经运动核中出现th2相关趋化因子表达的假设。在野生型(WT)和症状前突变型超氧化物歧化酶1 (mSOD1)[家族性肌萎缩性侧索硬化症(ALS)模型]小鼠面神经切开术后,完成了th2相关和th1相关趋化因子mRNA水平的初始微阵列分析。在初始微阵列分析的基础上,通过RT-PCR进一步分析th2相关趋化因子CCL11和th1相关趋化因子CXCL11。结果表明,面神经损伤显著增加小鼠面神经运动核中th2相关趋化因子mRNA水平,而不增加th1相关趋化因子mRNA水平。有趣的是,WT和mSOD1小鼠在损伤后CCL11和CXCL11的表达没有差异。这些数据为进一步研究FMN损伤后面部运动核中th2相关趋化因子的表达提供了基础,这可能会导致更有针对性的治疗运动神经元疾病,如ALS。
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Delayed functional recovery in presymptomatic mSOD1G93A mice following facial nerve crush axotomy. Effects of facial nerve axotomy on Th2-associated and Th1-associated chemokine mRNA expression in the facial motor nucleus of wild-type and presymptomatic SOD1 mice. Differential actions of pituitary adenylyl cyclase-activating polypeptide and interferon gamma on Th2- and Th1-associated chemokine expression in cultured murine microglia.
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