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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Interleukin-4 differentially regulates osteoprotegerin expression and induces calcification in vascular smooth muscle cells.
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Interleukin-4 differentially regulates osteoprotegerin expression and induces calcification in vascular smooth muscle cells.

机译:白介素-4差异调节骨保护素的表达并诱导血管平滑肌细胞钙化。

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摘要

Vascular calcification is characterized by cellular transdifferentiation and expression of bone-related matrix proteins that result in the presence of bone-like structures in the vascular wall. Interleukin (IL)-4, a pleiotropic cytokine, and osteoprotegerin (OPG), an essential regulator of osteoclast biology, have both been linked to vascular disease. Here, we assessed the role of IL-4 and OPG in vascular calcification in vitro. IL-4 induced OPG mRNA levels and protein secretion by 5-fold in a dose- and time-dependent fashion in human coronary artery smooth muscle cells (CASMC). Activation of the transcription factor STAT6 preceded IL-4-induced OPG expression, and blockade of IL-4-induced STAT6 activation by the phospholipase C inhibitor D609 decreased OPG expression. Long-term exposure of IL-4 for 4 weeks resulted in transformation of CASMC towards an osteoblastic phenotype, based on the expression of the transcription factor Cbfa1 and increased mineral deposition. Notably, calcification of CASMC was inhibited by gene silencing of Cbfa1. During osteogenic transformation, IL-4 down-regulated OPG production in CASMC. IL-4 has differential effects in CASMC: While short-term exposure enhances OPG production through a STAT6-dependent mechanism, long-term exposure causes Cbfa1-dependent osteogenic transformation and a decreased production of OPG, an inhibitor of bone resorption.
机译:血管钙化的特征在于细胞的转分化和骨相关基质蛋白的表达,这些蛋白导致血管壁中存在骨样结构。白细胞介素(IL)-4是一种多效性细胞因子,而骨保护素(OPG)是破骨细胞生物学的重要调节剂,都与血管疾病有关。在这里,我们评估了IL-4和OPG在体外血管钙化中的作用。 IL-4在人冠状动脉平滑肌细胞(CASMC)中以剂量和时间依赖性的方式诱导OPG mRNA水平和蛋白质分泌增加5倍。转录因子STAT6的激活先于IL-4诱导的OPG表达,而磷脂酶C抑制剂D609阻断IL-4诱导的STAT6激活会降低OPG表达。根据转录因子Cbfa1的表达和矿物质沉积的增加,IL-4长期暴露4周导致CASMC向成骨细胞表型转化。值得注意的是,Cbfa1基因沉默抑制了CASMC的钙化。在成骨转化过程中,IL-4下调了CASMC中的OPG产量。 IL-4在CASMC中具有不同的作用:虽然短期暴露通过STAT6依赖性机制增强OPG的产生,但长期暴露会导致Cbfa1依赖性成骨转化和OPG产生的减少,OPG是骨吸收的抑制剂。

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