Wu-Wong J Ruth, Nakane Masaki, Ma Junli, Ruan Xiaoan, Kroeger Paul E
Abbott Laboratories, R4CM, AP52, 200 Abbott Park Rd., Abbott Park, IL 60064, USA.
Atherosclerosis. 2006 May;186(1):20-8. doi: 10.1016/j.atherosclerosis.2005.06.046. Epub 2005 Aug 10.
Vitamin D analogs provide survival benefit for chronic kidney disease patients with cardiovascular complications. Activation of smooth muscle cells plays a role in cardiovascular diseases. It is not known how Vitamin D analogs modulate gene expression in smooth muscle cells. In this study, DNA microarray technology was used to assess the gene expression profile in human coronary artery smooth muscle cells treated with 0.1microM 1alpha,25-dihydroxyvitamin D3 (calcitriol) or paricalcitol (an analog of calcitriol) for 30 h. The effects of calcitriol and paricalcitol were similar. A total of 176 target genes were identified with 115 up-regulated and 61 down-regulated genes in the paricalcitol group. Target genes fall into various categories including cell differentiation/proliferation. Real-time RT-PCR analysis demonstrated that paricalcitol dose- and time-dependently regulated the expression of IGF1, WT1 and TGFbeta3, three genes known to modulate cell proliferation. Paricalcitol also down-regulated the expression of natriuretic peptide precursor B and thrombospondin 1. Both drugs inhibited cell proliferation in a dose-dependent manner. This study identified genes not previously known to be regulated by VDR, providing insight into understanding the role of VDR on regulating smooth muscle cell growth, thrombogenicity, fibrinolysis and endothelial regeneration.
维生素D类似物可为患有心血管并发症的慢性肾病患者带来生存益处。平滑肌细胞的激活在心血管疾病中起作用。目前尚不清楚维生素D类似物如何调节平滑肌细胞中的基因表达。在本研究中,使用DNA微阵列技术评估用0.1微摩尔1α,25 - 二羟基维生素D3(骨化三醇)或帕立骨化醇(骨化三醇类似物)处理30小时的人冠状动脉平滑肌细胞中的基因表达谱。骨化三醇和帕立骨化醇的作用相似。在帕立骨化醇组中总共鉴定出176个靶基因,其中115个基因上调,61个基因下调。靶基因分为包括细胞分化/增殖在内的各种类别。实时逆转录聚合酶链反应分析表明,帕立骨化醇剂量和时间依赖性地调节胰岛素样生长因子1(IGF1)、威尔姆斯瘤1(WT1)和转化生长因子β3(TGFbeta3)的表达,这三个基因已知可调节细胞增殖。帕立骨化醇还下调利钠肽前体B和血小板反应蛋白1的表达。两种药物均以剂量依赖性方式抑制细胞增殖。本研究鉴定出了以前未知受维生素D受体(VDR)调控的基因,为理解VDR在调节平滑肌细胞生长、血栓形成、纤维蛋白溶解和内皮再生中的作用提供了深入见解。