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Unique patterns of cardiogenic and fibrotic gene expression in rat cardiac fibroblasts

机译:大鼠心肌成纤维细胞中的心绞源和纤维化基因表达的独特模式

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Background and Aim: Cardiac fibroblasts are important for both normal and pathological states of the heart, but the knowledge in cell physiology and genomics is still poorly understood. The aims of the present study were; first, to investigate the expression of cardiac and fibrotic genes in rat cardiac fibroblasts compared to cardiomyocytes and other fibroblasts (skin and muscle fibroblasts), second, to examine the in vitro effect of serum concentration on fibroblast gene expression. The findings can potentially be applied in ischemia/reperfusion models. Materials and Methods: Rat cardiac fibroblasts were collected and cultured in different conditions, and their gene expression (21 cardiogenic genes and 16 fibrotic genes) was compared with cardiomyocytes and other fibroblasts using comparative quantitative polymerase chain reaction. We also mimicked myocardial ischemia/reperfusion by depleting and then adding a serum into the culture in conventional culture (10% serum). Results: Cardiac fibroblasts expressed most of the cardiogenic genes, but their expression levels were significantly lower than in cardiomyocytes, while almost all fibrotic genes in the cardiac fibroblasts were significantly more highly expressed than in cardiomyocytes, except matrix metallopeptidase 9 ( Mmp9 ) which also had greater expression in other fibroblasts. After mimicking cardiac ischemia and reperfusion in vitro by starving and then adding a serum into the cardiac fibroblast culture, the results revealed that Mmp9 expression was significantly increased (30 times) after increasing but not reducing the serum in the culture. The expression of most cardiogenic and fibrotic genes in cardiac fibroblasts tended to decrease after increasing the serum in the culture. These changes were specific to cardiac fibroblasts but no other fibroblasts. Conclusion: Cardiac fibroblasts have a distinct pattern of gene expression from other fibroblasts and cardiomyocytes. They are also sensitive to high serum concentration but not affected by serum depletion, suggesting that the process of developing cardiac fibrosis might be stimulated by reperfusion or overcirculation rather than ischemia. The cell starvation followed the adding of serum may serve as a useful model to study cardiac fibrosis cause by the change of blood flow.
机译:背景和目的:心肌成纤维细胞对心脏的正常和病理状态很重要,但细胞生理学和基因组学中的知识仍然很清楚。本研究的目的是;首先,与心肌细胞和其他成纤维细胞(皮肤和肌肉成纤维细胞)相比,研究大鼠心脏成纤维细胞中心肌和纤维化基因的表达,用于检查血清浓度对成纤维细胞基因表达的体外影响。该发现可能适用于缺血/再灌注模型。材料和方法:收集大鼠心脏成纤维细胞并在不同条件下培养,并使用比较定量聚合酶链反应与心肌细胞和其他成纤维细胞进行比较它们的基因表达(21个胸腺发生基因和16个纤维化基因)。我们还通过耗尽来模仿心肌缺血/再灌注,然后在常规培养物(10%血清)中加入培养物中。结果:心脏成纤维细胞表达了大多数心肌基因,但它们的表达水平显着低于心肌细胞,而心肌细胞的几乎所有纤维素基因也明显更高度表达,除了基质金属肽酶9(MMP9)之外的心肌细胞显着表达。在其他成纤维细胞中的更大表达。通过饥饿并将血清添加到心脏成纤维细胞培养物中模拟心脏缺血并再灌注后,结果表明,在增加后,MMP9表达显着增加(> 30次),但不降低培养物中的血清。在增加培养物中血清后,心肌成纤维细胞中大多数血管生成和纤维化基因的表达趋于降低。这些变化是针对心肌成纤维细胞的特异性,但没有其他成纤维细胞。结论:心脏成纤维细胞具有来自其他成纤维细胞和心肌细胞的不同基因表达模式。它们对高血清浓度也敏感,但不受血清耗尽的影响,表明可以通过再灌注或超细刺激而不是缺血来刺激发育心肌纤维化的过程。细胞饥饿遵循加入血清可以作为研究心脏纤维化引起的有用模型来研究血流的变化。

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