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Immunohistochemical and transcriptome analyses indicate complex breakdown of axonal transport mechanisms in canine distemper leukoencephalitis

机译:免疫组织化学和转录组分析表明犬瘟热性白质脑炎中轴突转运机制的复杂分解

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Abstract Introduction CDV-DL (Canine distemper virus-induced demyelinating leukoencephalitis) represents a spontaneously occurring animal model for demyelinating disorders. Axonopathy represents a key pathomechanism in this disease; however, its underlying pathogenesis has not been addressed in detail so far. This study aimed at the characterization of axonal cytoskeletal, transport, and potential regenerative changes with a parallel focus upon Schwann cell remyelination. Methods Immunohistochemistry of canine cerebellar tissue as well as a comparative analysis of genes from an independent microarray study were performed. Results Increased axonal immunoreactivity for nonphosphorylated neurofilament was followed by loss of cytoskeletal and motor proteins. Interestingly, a subset of genes encoding for neurofilament subunits and motor proteins was up-regulated in the chronic stage compared to dogs with subacute CDV-DL. However, immunohistochemically, hints for axonal regeneration were restricted to up-regulated axonal positivity of hypoxia-inducible factor 1 alpha, while growth-associated protein 43, erythropoietin and its receptor were not or even down-regulated. Periaxin-positive structures, indicative of Schwann cell remyelination, were only detected within few advanced lesions. Conclusions The present findings demonstrate a complex sequence of axonal cytoskeletal breakdown mechanisms. Moreover, though sparse, this is the first report of Schwann cell remyelination in CDV-DL. Facilitation of these very limited endogenous regenerative responses represents an important topic for future research.
机译:摘要简介CDV-DL(犬瘟热病毒引起的脱髓鞘性白质脑炎)代表了一种自发发生的脱髓鞘疾病的动物模型。轴突病是该疾病的关键发病机制。然而,到目前为止,其潜在的发病机理尚未得到详细解决。这项研究旨在表征轴突细胞骨架,运输和潜在的再生变化与雪旺氏细胞髓鞘形成的并行。方法对犬小脑组织进行免疫组织化学分析,并通过独立的芯片研究对基因进行比较分析。结果对非磷酸化神经丝的轴突免疫反应性增加,随后是细胞骨架和运动蛋白的损失。有趣的是,与具有亚急性CDV-DL的狗相比,在慢性阶段,编码神经丝亚基和运动蛋白的基因的子集被上调。但是,从免疫组织化学的角度来看,轴突再生的提示仅限于缺氧诱导因子1α的轴突阳性表达上调,而生长相关蛋白43,促红细胞生成素及其受体则没有甚至下调。 Periaxin阳性结构,指示雪旺氏细胞髓鞘再生,仅在少数晚期病变中检测到。结论本研究结果证明了轴突细胞骨架分解机制的复杂序列。此外,尽管稀疏,但这是CDV-DL中Schwann细胞髓鞘再生的首次报道。这些非常有限的内源性再生反应的促进是未来研究的重要课题。

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