首页> 美国卫生研究院文献>Cells >MiR-21 MiR-29a GATA4 and MEF2c Expression Changes in Endothelin-1 and Angiotensin II Cardiac Hypertrophy Stimulated Isl-1+Sca-1+c-kit+ Porcine Cardiac Progenitor Cells In Vitro
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MiR-21 MiR-29a GATA4 and MEF2c Expression Changes in Endothelin-1 and Angiotensin II Cardiac Hypertrophy Stimulated Isl-1+Sca-1+c-kit+ Porcine Cardiac Progenitor Cells In Vitro

机译:内皮素-1和血管紧张素II心肌肥大中的MiR-21MiR-29aGATA4和MEF2c表达变化体外刺激的Isl-1 + Sca-1 + c-kit +猪心脏祖细胞

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摘要

Cost- and time-intensive porcine translational disease models offer great opportunities to test drugs and therapies for pathological cardiac hypertrophy and can be supported by porcine cell culture models that provide further insights into basic disease mechanisms. Cardiac progenitor cells (CPCs) residing in the adult heart have been shown to differentiate in vitro into cardiomyocytes and could contribute to cardiac regeneration. Therefore, it is important to evaluate their changes on the cellular level caused by disease. We successfully isolated Isl1 Sca1 cKit porcine CPCs (pCPCs) from pig hearts and stimulated them with endothelin-1 (ET-1) and angiotensin II (Ang II) in vitro. We also performed a cardiac reprogramming transfection and tested the same conditions. Our results show that undifferentiated Isl1 Sca1 cKit pCPCs were significantly upregulated in GATA4, MEF2c, and miR-29a gene expressions and in BNP and MCP-1 protein expressions with Ang II stimulation, but they showed no significant changes in miR-29a and MCP-1 when stimulated with ET-1. Differentiated Isl1 Sca1 cKit pCPCs exhibited significantly higher levels of MEF2c, GATA4, miR-29a, and miR-21 as well as Cx43 and BNP with Ang II stimulation. -transfected Isl1 Sca1 cKit pCPCs showed significant elevations in MEF2c, GATA4, and BNP expressions when stimulated with ET-1. Our model demonstrates that in vitro stimulation leads to successful Isl1 Sca1 cKit pCPC hypertrophy with upregulation of cardiac remodeling associated genes and profibrotic miRNAs and offers great possibilities for further investigations of disease mechanisms and treatment.
机译:成本高昂且耗时的猪转化疾病模型为测试用于病理性心脏肥大的药物和疗法提供了巨大的机会,并且可以由提供进一步了解基本疾病机制的猪细胞培养模型来支持。研究表明,成年心脏中存在的心脏祖细胞(CPC)在体外可分化为心肌细胞,并可能有助于心脏再生。因此,重要的是评估它们在疾病引起的细胞水平上的变化。我们成功地从猪心脏中分离了Isl1 Sca1 cKit猪CPC(pCPC),并在体外用内皮素-1(ET-1)和血管紧张素II(Ang II)刺激了它们。我们还进行了心脏重编程转染,并测试了相同的条件。我们的结果表明,未分化的Isl1 Sca1 cKit pCPC在Ang II刺激下的GATA4,MEF2c和miR-29a基因表达以及BNP和MCP-1蛋白表达中均显着上调,但在miR-29a和MCP-用ET-1刺激为1。差异化的Isl1 Sca1 cKit pCPC表现出显着更高的MEF2c,GATA4,miR-29a和miR-21水平,以及带有Ang II刺激的Cx43和BNP。 ET-1刺激后,转染的Isl1 Sca1 cKit pCPCs的MEF2c,GATA4和BNP表达明显升高。我们的模型表明,体外刺激可导致成功的Isl1 Sca1 cKit pCPC肥大,并具有心脏重构相关基因和纤维化miRNA的上调,并为疾病机制和治疗的进一步研究提供了巨大的可能性。

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