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Loss of parasympathetic innervation leads to sustained expression of pro-inflammatory genes in the rat lacrimal gland

机译:副交感神经支配的丧失导致大鼠泪腺中促炎基因的持续表达

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摘要

It has been shown that removal of parasympathetic innervation to the lacrimal gland (LG) leads to rapid reduction in tear flow. Additionally, removal of the neural input resulted in disorganization of LG structure and changes in the expression of genes associated with the secretory pathway and inflammation. The goal of this study was to investigate the change in pro-inflammatory and pro-apoptotic gene expression in the rat LG following parasympathetic denervation. Male Long- Evans rats underwent unilateral sectioning of the greater superficial petrosal nerve and were sacrificed 7 days or 2.5 months later. cDNA was synthesized from LG RNA from the contralateral control (Ctla) and parasympathectomized (Px) glands and comparative real-time PCR was performed. Mean threshold cycles (MCT) for the Ctla and Px LG genes were normalized to 18S rRNA MCT values, and the relative fold change was calculated for each gene using the 2TΔΔC method. The expression of nuclear factor kappa B1, caspase 1, eotaxin, leukocyte antigen MRC-OX44, allograft inflammatory factor-1, MHC class II molecules RT.1B and RT.1D, IgG receptor FcRn, and macrophage metalloelastase was increased and remained elevated in the Px LG, compared with the Ctla LG. Increased expression of the initiator of apoptosis gene, caspase 2, was confirmed, but expression of the executor gene, caspase 6, was not elevated in the Px LG. Reduced expression of genes associated with post-translational protein processing-furin convertase, protein disulfide isomerase, and UDP-gal transporter isozyme 1-was noted in the Px LG. No significant changes in the expression of genes associated with lysosomal and non-lysosomal-mediated protein degradation were found. Removal of parasympathetic input may lead to decreased capacity for protein synthesis and elevated immune responses in the Px LG. These changes occur without increases in expression of the muscarinic acetylcholine receptor subtype 3, and may suggest the early changes in LG acinar cells and the pathophysiology of autoimmune responses.
机译:已经显示,除去交感神经支配到泪腺(LG)会导致泪液的迅速减少。另外,去除神经输入导致LG结构的混乱和与分泌途径和炎症相关的基因表达的变化。这项研究的目的是研究副交感神经去神经后大鼠LG中促炎和促凋亡基因表达的变化。雄性Long-Evans大鼠接受了较大的浅表神经的单侧切片,并在7天或2.5个月后处死。从对侧对照(Ctla)和副交感神经切除(Px)腺的LG RNA合成cDNA,并进行比较实时PCR。将Ctla和Px LG基因的平均阈值周期(MCT)标准化为18S rRNA MCT值,并使用 2 T < mrow> Δ Δ C 方法。核因子κB1,caspase 1,嗜酸粒细胞趋化因子,白细胞抗原MRC-OX44,同种移植炎症因子1,MHC II类分子RT.1B和RT.1D,IgG受体FcRn和巨噬细胞金属弹性蛋白酶的表达升高并保持升高。 Px LG,而Ctla LG。证实了凋亡基因caspase 2的启动子表达增加,但执行基因caspase 6的表达在Px LG中并未升高。在Px LG中注意到与翻译后蛋白质加工-弗林蛋白酶转化酶,蛋白质二硫键异构酶和UDP-gal转运蛋白同工酶1相关的基因表达降低。没有发现与溶酶体和非溶酶体介导的蛋白质降解相关的基因表达发生显着变化。副交感神经输入的去除可能导致Px LG中蛋白质合成的能力下降和免疫反应升高。这些变化的发生不会增加毒蕈碱型乙酰胆碱受体亚型3的表达,并且可能暗示LG腺泡细胞的早期变化和自身免疫应答的病理生理。

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