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Interrelation of inflammation and APP in sIBM: IL-1 beta induces accumulation of beta-amyloid in skeletal muscle.

机译:sIBm中炎症和app的相互关系:IL-1β诱导骨骼肌中β-淀粉样蛋白的积累。

摘要

Distinct interrelationships between inflammation and beta-amyloid-associated degeneration, the two major hallmarks of the skeletal muscle pathology in sporadic inclusion body myositis (sIBM), have remained elusive. Expression of markers relevant for these pathomechanisms were analysed in biopsies of sIBM, polymyositis (PM), dermatomyositis (DM), dystrophic and non-myopathic muscle as controls, and cultured human myotubes. By quantitative PCR, a higher upregulation was noted for the mRNA-expression of CXCL-9, CCL-3, CCL-4, IFN-gamma, TNF-alpha and IL-1 beta in sIBM muscle compared to PM, DM and controls. All inflammatory myopathies displayed overexpression of degeneration-associated markers, yet only in sIBM, expression of the mRNA of amyloid precursor protein (APP) significantly and consistently correlated with inflammation in the muscle and mRNA-levels of chemokines and IFN-gamma. Only in sIBM, immunohistochemical analysis revealed that inflammatory mediators including IL-1 beta co-localized to beta-amyloid depositions within myofibres. In human myotubes, exposure to IL-1 beta caused upregulation of APP with subsequent intracellular aggregation of beta-amyloid. Our data suggest that, in sIBM muscle, production of high amounts of pro-inflammatory mediators specifically induces beta-amyloid-associated degeneration. The observations may help to design targeted treatment strategies for chronic inflammatory disorders of the skeletal muscle.
机译:炎症与β-淀粉样变性相关的不同相互关系仍然是难以捉摸的,后者是散发性包涵体肌炎(sIBM)骨骼肌病理的两个主要标志。在sIBM,多肌炎(PM),皮肌炎(DM),营养不良和非肌萎缩性肌肉作为活检标本和培养的人肌管中,分析了与这些病理机制相关的标志物的表达。通过定量PCR,与PM,DM和对照组相比,在sIBM肌肉中CXCL-9,CCL-3,CCL-4,IFN-γ,TNF-α和IL-1β的mRNA表达被注意到更高的上调。所有炎症性肌病均显示出变性相关标志物的过表达,但仅在sIBM中,淀粉样前体蛋白(APP)的mRNA表达显着且始终与肌肉炎症以及趋化因子和IFN-γ的mRNA水平相关。仅在sIBM中,免疫组织化学分析显示,包括IL-1β在内的炎症介质共定位于肌纤维内的β淀粉样蛋白沉积。在人肌管中,暴露于IL-1β会引起APP的上调,并随后引起β淀粉样蛋白的细胞内聚集。我们的数据表明,在sIBM肌肉中,大量促炎性介质的产生会特异性诱导β-淀粉样蛋白相关的变性。这些发现可能有助于设计针对骨骼肌慢性炎症性疾病的针对性治疗策略。

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