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首页> 外文期刊>American Journal of Physiology >Abnormal fibrillin-1 expression and chronic oxidative stress mediate endothelial mesenchymal transition in a murine model of systemic sclerosis.
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Abnormal fibrillin-1 expression and chronic oxidative stress mediate endothelial mesenchymal transition in a murine model of systemic sclerosis.

机译:异常纤维蛋白-1表达和慢性氧化应激在全身硬化症鼠模型中介导内皮间充质转变。

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摘要

Systemic sclerosis (SSc) is an autoimmune connective tissue disorder characterized by oxidative stress, impaired vascular function, and attenuated angiogenesis. The tight-skin (Tsk(-/+)) mouse is a model of SSc that displays many of the cellular features of the clinical disease. We tested the hypotheses that abnormal fibrillin-1 expression and chronic phospholipid oxidation occur in Tsk(-/+) mice and, furthermore, that these factors precipitate a prooxidant state, collagen-related protein expression, apoptosis, and mesenchymal transition in endothelial cells cultured on Tsk(-/+) extracellular matrix. Human umbilical vein endothelial cells were seeded on microfibrils isolated from skin of C57BL/6J (control) and Tsk(-/+) mice in the presence or absence of chronic pretreatment with the apolipoprotein Apo A-I mimetic D-4F (1 mg.kg(-1).day(-1) ip for 6 to 8 wk). Nitric oxide-to-superoxide anion ratio was assessed 12 h after culture, and cell proliferation, apoptosis, and phenotype were studied 72 h after culture. Tsk(-/+) mice demonstrated abnormal "big fibrillin" expression (405 kDa) by Western blot analysis compared with control. Endothelial cells cultured on microfibrils prepared from Tsk(-/+) mice demonstrated reduced proliferation, a prooxidant state (reduced nitric oxide-to-superoxide anion ratio), increased apoptosis, and collagen-related protein expression associated with mesenchymal transition. Chronic D-4F pretreatment of Tsk(-/+) mice attenuated many of these adverse effects. The findings demonstrate that abnormal fibrillin-1 expression and chronic oxidative stress mediate endothelial mesenchymal transition in Tsk(-/+) mice. This mesenchymal transition may contribute to the reduction in angiogenesis that is known to occur in this model of SSc.
机译:全身硬化(SSC)是一种自身免疫性结缔组织障碍,其特征在于氧化应激,血管功能受损和减毒血管生成。紧身皮肤(Tsk( - / +))小鼠是SSC的模型,显示出临床疾病的许多细胞特征。我们测试了Tsk( - / +)小鼠中发生异常的纤维蛋白-1表达和慢性磷脂氧化的假设,并且这些因素沉淀出促进的促进状态,胶原蛋白相关蛋白表达,细胞凋亡和内皮细胞中的间充质转换在TSK( - / +)细胞外基质上。将人的脐静脉内皮细胞接种在从C57BL / 6J(对照)和Tsk( - / +)小鼠的皮肤中分离的微纤维,在存在或不存在慢性预处理与载脂蛋白APO AI模拟D-4F(1mg.kg( -1).Day(-1)IP为6至8周)。在培养后12小时评估一氧化氮 - 超氧化物阴离子比,并在培养后72小时研究细胞增殖,细胞凋亡和表型。与对照相比,TSK( - / +)小鼠通过Western印迹分析显示了异常的“大纤维蛋白”表达(405kDa)。由Tsk(/ +)小鼠制备的微纤维上培养的内皮细胞证明了增殖降低,促释态(减少一氧化氮 - 过氧化物阴离子比率),增加的细胞凋亡和与间充质转变相关的胶原相关蛋白表达。 TSK( - / +)小鼠的慢性D-4F预处理衰减了许多这些不利影响。该研究结果表明,异常的纤维蛋白-1表达和慢性氧化应激在TSK( - / +)小鼠中介导内皮间充质转变。这种间充质转变可能有助于降低已知在该SSC模型中发生的血管生成。

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