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Fibrosis in systemic sclerosis: common and unique pathobiology

机译:全身性硬化中的纤维化:共同和独特的病理生物学

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摘要

Fibrosis in systemic sclerosis (SSc), a complex polygenic disease associated with autoimmunity and proliferative/obliterative vasculopathy, shares pathobiologic features in common with other fibrosing illnesses, but also has distinguishing characteristics. Fibroblast activation induced by transforming growth factor-β (TGF-β), Wnts and innate immune receptors, along with oxidative stress and reactive oxygen species (ROS) are implicated in pathogenesis. On the other hand, the roles of endothelial-mesenchymal differentiation and bone marrow-derived fibrocytes remain to be established. Fibrotic responses are modulated by transcriptional activators and cofactors, epigenetic factors, and microRNAs that can amplify or inhibit ligand-induced signaling. The nuclear orphan receptor PPAR-γ appears to be important in governing the duration and intensity of fibroblast activation and mesenchymal progenitor cell differentiation, and defects in PPAR-γ expression or function in SSc may underlie the uncontrolled progression of fibrosis. Identifying the perturbations in signaling pathways and cellular differentiation programs responsible for tissue damage and fibrosis in SSc allows their selective targeting using novel compounds, or by innovative uses of already-approved drugs (drug repurposing).
机译:全身性硬化症(SSc)中的纤维化是一种与自身免疫性疾病和增生/闭塞性血管病相关的复杂多基因疾病,与其他纤维化疾病具有共同的病理生物学特征,但也具有鲜明的特征。转化生长因子-β(TGF-β),Wnts和先天性免疫受体诱导的成纤维细胞活化以及氧化应激和活性氧(ROS)参与了发病机理。另一方面,内皮-间质分化和骨髓源性纤维细胞的作用仍有待确立。纤维化反应受转录激活因子和辅因子,表观遗传因子以及可放大或抑制配体诱导的信号传导的microRNA调节。核孤儿受体PPAR-γ在控制成纤维细胞活化和间充质祖细胞分化的持续时间和强度方面似乎很重要,并且SSc中PPAR-γ表达或功能的缺陷可能是纤维化进展不受控制的原因。识别造成SSc中组织损伤和纤维化的信号传导途径和细胞分化程序中的扰动,可以使用新型化合物或通过已获批准的药物的创新使用(药物重新利用)将其选择性靶向。

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