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首页> 外文期刊>Journal of orthopaedic research >Lead induces an osteoarthritis-like phenotype in articular chondrocytes through disruption of TGF-β signaling
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Lead induces an osteoarthritis-like phenotype in articular chondrocytes through disruption of TGF-β signaling

机译:铅通过破坏TGF-β信号传导在关节软骨细胞中诱导骨关节炎样表型

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摘要

Lead remains a significant environmental toxin, and we believe we may have identified a novel target of lead toxicity in articular chondrocytes. These cells are responsible for the maintenance of joint matrix, and do so under the regulation of TGF-β signaling. As lead is concentrated in articular cartilage, we hypothesize that it can disrupt normal chondrocyte phenotype through suppression of TGF-β signaling. These experiments examine the effects of lead exposure in vivo and in vitro at biologically relevant levels, from 1 nM to 10 ?μM on viability, collagen levels, matrix degrading enzyme activity, TGF-β signaling, and articular surface morphology. Our results indicate that viability was unchanged at levels ≤100 A;circμM Pb, but low and high level lead in vivo exposure resulted in fibrillation and degeneration of the articular surface. Lead treatment also decreased levels of type II collagen and increased type X collagen, in vivo and in vitro. Additionally, MMP13 activity increased in a dose-dependent manner. Active caspase 3 and 8 were dose-dependently elevated, and treatment with 10 ?μM Pb resulted in increases of 30% and 500%, respectively. Increasing lead treatment resulted in a corresponding reduction in TGF-β reporter activity, with a 95% reduction at 10?μM. Levels of phosphoSmad2 and 3 were suppressed in vitro and in vivo and lead dose-dependently increased Smurf2. These changes closely parallel those seen in osteoarthritis. Over time this phenotypic shift could compromise maintenance of the joint matrix.
机译:铅仍然是一种重要的环境毒素,我们相信我们可能已经确定了关节软骨细胞中铅毒性的新靶标。这些细胞负责维持关节基质,并在TGF-β信号传导的调节下完成。由于铅集中在关节软骨中,我们推测它可以通过抑制TGF-β信号传导破坏正常的软骨细胞表型。这些实验检查了生物学上相关水平(从1 nM至10 µM)的体内和体外铅暴露对生存力,胶原蛋白水平,基质降解酶活性,TGF-β信号传导和关节表面形态的影响。我们的结果表明,在≤100A;大约μMPb的水平下,生存力没有变化,但是体内暴露的高低水平导致关节表面原纤维化和变性。铅治疗还可以在体内和体外降低II型胶原蛋白的水平,增加X型胶原蛋白的水平。此外,MMP13活性以剂量依赖性方式增加。活性半胱天冬酶3和8呈剂量依赖性升高,用10?μMPb处理分别导致30%和500%的增加。铅处理的增加导致TGF-β报告基因活性相应降低,在10?μM时降低95%。磷酸化Smad2和3的水平在体外和体内均被抑制,并导致剂量依赖性地增加Smurf2。这些变化与骨关节炎中的变化非常相似。随着时间的流逝,这种表型转移可能会损害关节基质的维持。

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