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首页> 外文期刊>Scientific reports. >Enzyme-modified non-oxidized LDL (ELDL) induces human coronary artery smooth muscle cell transformation to a migratory and osteoblast-like phenotype
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Enzyme-modified non-oxidized LDL (ELDL) induces human coronary artery smooth muscle cell transformation to a migratory and osteoblast-like phenotype

机译:酶改性的非氧化LDL(ELDL)将人冠状动脉平滑肌细胞转化诱导到迁移和成骨细胞样表型

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摘要

Enzyme modified non-oxidative LDL (ELDL) is effectively taken up by vascular smooth muscle cells (SMC) and mediates transition into foam cells and produces phenotypic changes in SMC function. Our data show that incubation of human coronary artery SMC (HCASMC) with low concentration of ELDL (10?μg/ml) results in significantly enhanced foam cell formation compared to oxidized LDL (200?μg/ml; p??0.01) or native LDL (200?μg/ml; p??0.01). Bioinformatic network analysis identified activation of p38 MAPK, NFkB, ERK as top canonical pathways relevant for biological processes linked to cell migration and osteoblastic differentiation in ELDL-treated cells. Functional studies confirmed increased migration of HCASMC upon stimulation with ELDL (10?μg/ml) or Angiopoietin like protein 4, (ANGPTL4, 5?μg/ml), and gain in osteoblastic gene profile with significant increase in mRNA levels for DMP-1, ALPL, RUNX2, OPN/SPP1, osterix/SP7, BMP and reduction in mRNA for MGP and ENPP1. Enhanced calcification of HCASMC by ELDL was demonstrated by Alizarin Red staining. In summary, ELDL is highly potent in inducing foam cells in HCASMC and mediates a phenotypic switch with enhanced migration and osteoblastic gene profile. These results point to the potential of ELDL to induce migratory and osteoblastic effects in human smooth muscle cells with potential implications for migration and calcification of SMCs in human atherosclerosis.
机译:通过血管平滑肌细胞(SMC)有效地占据酶改性的非氧化LDL(ELDL),并将过渡到泡沫细胞中并产生SMC功能的表型变化。我们的数据表明,与氧化LDL(200μg/ ml;p≤X≤01)或本机LDL(200?μg/ ml; p?<0.01)。生物信息网络分析鉴定了P38 MAPK,NFKB,ERK的激活,作为与细胞迁移和ELDL处理细胞中的细胞迁移和骨细胞分化相关的生物学过程的顶部规范途径。功能性研究证实了脊柱痉挛在用ELDL(10×μg/ mL)或血管发成素等蛋白4的刺激时增加迁移,(Angptl4,5?μg/ ml),并在骨细胞基因谱中获得DMP-1的mRNA水平显着增加,Alpl,Runx2,OPN / SPP1,Osterix / SP7,BMP和MRNA的减少MGP和ENPP1。通过茜素红染色证明了ELDL的增强rcasmc的钙化。总之,ELDL在哺乳动物中诱导泡沫细胞具有高效性,并用增强的迁移和成骨细胞基因谱介导表型开关。这些结果指出了ELDL的潜力,以诱导人平滑肌细胞中的迁移和骨细胞效应,其对人类动脉粥样硬化中SMC的迁移和钙化的潜在影响。

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