寻找对移植物通畅评价有用的标记物——胸内动脉和隐静脉导管“肌肉系统过程”的分子分析

Q4 Biochemistry, Genetics and Molecular Biology
S. Kałużna, M. Nawrocki, K. Jopek, Greg Hutchings, B. Perek, M. Jemielity, B. Kempisty, A. Malińska, P. Mozdziak, M. Nowicki
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引用次数: 1

摘要

摘要冠状动脉旁路移植术(CABG)是治疗冠状动脉疾病(CAD)最常用的手术方法。CABG中使用的血管通常是胸内动脉(ITA)和隐静脉(SV)。移植通畅是影响移植成功的重要因素之一。在这项研究中,我们使用了经RT-qPCR批准的表达微阵列方法,对动脉和静脉移植物进行转录组分析。为了寻找潜在的分子因素,我们分析了基于肌肉系统的不同表达的基因本体。在感兴趣的组中,我们区分了肌肉细胞增殖、肌肉收缩、肌肉系统过程、平滑肌细胞增殖调控和平滑肌细胞增殖。其中,ACTN2、RBPMS2、NR4A3、KCNA5基因表达量增幅最大,P2RX1、KCNH2、DES和MYOT基因表达量降幅最小。特别值得注意的是ACTN2和NR4A3基因,它们对血管通畅有重要影响。ACTN2是一个可以影响动脉粥样硬化斑块形成的基因,而NR4A3出现在讨论的5个本体论组中的4个中,并且可以影响血管的炎症过程。总之,本研究对CABG血管的分子特征提供了有价值的见解,特别是鉴定出的基因可能是进一步研究导管通畅的目标。跑步题目:CABG移植物“肌肉系统过程”的分子分析
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In search of markers useful for evaluation of graft patency - molecular analysis of ‘muscle system process’ for internal thoracic artery and saphenous vein conduits
Abstract Coronary artery bypass graft (CABG) is the surgical method most commonly used to treat coronary artery disease (CAD). The vessels that are used in CABG are usually the internal thoracic artery (ITA) and the saphenous vein (SV). Transplant patency is one of the most important factors affecting transplant success. In this study, we used an expressive microarray method, approved by RT-qPCR, for transcriptome analysis of arterial and venous grafts. In the search for potential molecular factors, we analyzed gene ontologies of different expression based on the muscular system. Among interesting groups, we distinguished muscle cell proliferation, muscle contraction, muscle system process, regulation of smooth muscle cell proliferation and smooth muscle cell proliferation. The highest increase in gene expression was observed in: ACTN2, RBPMS2, NR4A3, KCNA5, while the smallest decrease in expression was shown by the P2RX1, KCNH2, DES and MYOT genes. Particularly noteworthy are the ACTN2 and NR4A3 genes, which can have a significant impact on vascular patency. ACTN2 is a gene that can affect the formation of atherosclerotic plaques, while NR4A3 occurs in 4 of the 5 ontological groups discussed and can affect the inflammatory process in the blood vessel. To summarize, the presented study provided valuable insight into the molecular aspects characterizing the vessels used in CABG, and in particular identified genes that may be the target for further studies on duct patency. Running title: CABG grafts’ molecular analysis of ‘muscle system process’
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来源期刊
Medical Journal of Cell Biology
Medical Journal of Cell Biology Biochemistry, Genetics and Molecular Biology-Cell Biology
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