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Quantitative and Microstructural Changes of the Blood-Nerve Barrier in Peripheral Neuropathy

机译:周围神经病变血神经屏障的数量和微观结构变化

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摘要

Peripheral neuropathy is accompanied by changes in the neuronal environment. The blood-nerve barrier (BNB) is crucial in protecting the neural homeostasis: Tight junctions (TJ) seal paracellular spaces and thus prevent external stimuli from entering. In different models of neuropathic pain, the BNB is impaired, thus contributing to local damage, immune cell invasion and, ultimately, the development of neuropathy with its symptoms. In this study, we examined changes in expression and microstructural localization of two key tight junction proteins (TJP), claudin-1 and the cytoplasmic anchoring ZO-1, in the sciatic nerve of mice subjected to chronic constriction injury (CCI). Via qPCR and analysis of fluorescence immunohistochemistry, a marked downregulation of mRNA as well as decreased fluorescence intensity were observed in the nerve for both proteins. Moreover, a distinct zig-zag structure for both proteins located at cell-cell contacts, indicative of the localization of TJs, was observed in the perineurial compartment of sham-operated animals. This microstructural location in cell-cell-contacts was lost in neuropathy as semiquantified via computational analysis, based on a novel algorithm. In summary, we provide evidence that peripheral neuropathy is not only associated with decrease in relevant TJPs but also exhibits alterations in TJP arrangement and loss in barrier tightness, presumably due to internalization. Specifically, semiquantification of TJP in cell-cell-contacts of microcompartments could be used in the future for routine clinical samples of patients with neuropathy.
机译:周围神经病变伴有神经环境的变化。血液神经屏障(BNB)在保护神经稳态方面至关重要:紧密连接(TJ)密封细胞旁间隙,从而防止外部刺激进入。在不同的神经性疼痛模型中,BNB受损,从而导致局部损伤,免疫细胞入侵,并最终导致其症状引起的神经病。在这项研究中,我们研究了小鼠慢性坐骨神经损伤(CCI)坐骨神经中两个关键紧密连接蛋白(TJP)的claudin-1和胞质锚定ZO-1的表达和微结构定位的变化。通过qPCR和荧​​光免疫组织化学分析,两种蛋白在神经中均观察到mRNA显着下调以及荧光强度降低。此外,在假手术动物的尿道隔室中观察到两种蛋白在细胞-细胞接触处的独特的曲折结构,这表明TJ的定位。通过一种新的算法,通过计算分析对神经病进行半定量分析,从而发现了这种细胞-细胞接触中的微结构位置丢失了。总之,我们提供的证据表明,周围神经病变不仅与相关TJP的降低有关,而且还表现为TJP排列的改变和屏障紧密性的丧失,这大概是由于内在化所致。具体而言,将来在微区室的细胞间接触中对TJP的半定量可用于神经病患者的常规临床样本。

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