首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Differences in Expression of Genes Involved in Bone Development and Morphogenesis in the Walls of Internal Thoracic Artery and Saphenous Vein Conduits May Provide Markers Useful for Evaluation Graft Patency
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Differences in Expression of Genes Involved in Bone Development and Morphogenesis in the Walls of Internal Thoracic Artery and Saphenous Vein Conduits May Provide Markers Useful for Evaluation Graft Patency

机译:胸内动脉壁和大隐静脉导管壁中涉及骨发育和形态发生的基因表达差异可能为标记移植物的通畅性提供有用的标记

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摘要

Coronary artery bypass grafting (CABG) is one of the most efficient procedures for patients with advanced coronary artery disease. From all the blood vessels with the potential to be used in this procedure, the internal thoracic artery (ITA) and the saphenous vein (SV) are the most commonly applied as aortocoronary conduits. Nevertheless, in order to evaluate the graft patency and efficiency effectively, basic knowledge should be constantly expanding at the molecular level as well, as the understanding of predictive factors is still limited. In this study, we have employed the expressive microarray approach, validated with Real-Time Quantitative Polymerase Chain Reaction (RT-qPCR), to analyze the transcriptome of both venous and arterial grafts. Searching for potential molecular factors, we analyzed differentially expressed gene ontologies involved in bone development and morphogenesis, for the possibility of discovery of new markers for the evaluation of ITA and SV segment quality. Among three ontological groups of interest—“endochondral bone morphogenesis”, “ossification”, and “skeletal system development”—we found six genes common to all of them. BMP6, SHOX2, COL13A1, CSGALNACT1, RUNX2, and STC1 showed differential expression patterns in both analyzed vessels. STC1 and COL13A1 were upregulated in ITA samples, whereas others were upregulated in SV. With regard to the Runx2 protein function in osteogenic phenotype regulation, the RUNX2 gene seems to be of paramount importance in assessing the potential of ITA, SV, and other vessels used in the CABG procedure. Overall, the presented study provided valuable insight into the molecular background of conduit characterization, and thus indicated genes that may be the target of subsequent studies, also at the protein level. Moreover, it has been suggested that RUNX2 may be recognized as a molecular marker of osteogenic changes in human blood vessels.
机译:冠状动脉旁路移植术(CABG)是晚期冠状动脉疾病患者最有效的方法之一。在所有可能用于此过程的血管中,最常用的是胸内动脉(ITA)和隐静脉(SV)。但是,为了有效评估移植物的通畅性和效率,由于对预测因素的理解仍然有限,因此基础知识也应该在分子水平上不断扩展。在这项研究中,我们采用了表达微阵列方法,并通过实时定量聚合酶链反应(RT-qPCR)进行了验证,以分析静脉和动脉移植物的转录组。为了寻找潜在的分子因素,我们分析了参与骨骼发育和形态发生的差异表达基因本体,以发现用于评估ITA和SV段质量的新标记的可能性。在感兴趣的三个本体论组中,“线粒体骨形态发生”,“骨化”和“骨骼系统发育”,我们发现了它们共有的六个基因。 BMP6,SHOX2,COL13A1,CSGALNACT1,RUNX2和STC1在两个分析的容器中均显示差异表达模式。 ITA样品中的STC1和COL13A1上调,而SV中的其他上调。关于成骨细胞表型调节中的Runx2蛋白功能,RUNX2基因似乎在评估ITA,SV和CABG程序中使用的其他血管的潜力中至关重要。总体而言,本研究为导管表征的分子背景提供了宝贵的见识,因此表明了可能在蛋白质水平上成为后续研究目标的基因。此外,已经建议RUNX2可以被认为是人血管中成骨变化的分子标记。

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