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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Inhibition of microRNA-155 attenuates sympathetic neural remodeling following myocardial infarction via reducing M1 macrophage polarization and inflammatory responses in mice
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Inhibition of microRNA-155 attenuates sympathetic neural remodeling following myocardial infarction via reducing M1 macrophage polarization and inflammatory responses in mice

机译:通过降低小鼠的M1巨噬细胞极化和炎症反应,微小RORNA-155对MICRORNA-155的抑制减轻了心肌梗死后的交感神经重新凝胶

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摘要

Inflammation plays an important role in sympathetic neural remodeling induced by myocardial infarction (MI). MiR-155 is a vital regulator of inflammatory responses, and macrophage-secreted miR-155 promotes cardiac fibrosis and hypertrophy. However, whether miR-155 influences MI-induced sympathetic neural remodeling is not clear. Therefore, we examined the role of miR-155 in MI-induced sympathetic neural remodeling and the related mechanisms in both an mouse model and in lipopolysaccharide (LPS)-stimulated bone marrow-derived macrophages (BMDMs). Our data showed that miR-155 expression was significantly enhanced in the myocardial tissues of MI mice compared to sham mice. Also, MI up-regulated the electrophysiological parameters, M1 macrophage polarization, inflammatory responses, and suppressor of cytokine signaling 1 (SOCS1) expression, which coincided with the increased expression of sympathetic nerve remodeling markers(nerve growth factor, tyrosine hydroxylase and growth-associated protein 43). Except for SOCS1, these proteins were attenuated by miR-155 antagomir. In vitro, LPS-stimulation promoted miR-155 expression in BMDMs. Consistent with the in vivo findings, miR-155 antagomir diminished the LPS-induced M1 macrophage polarization, nuclear factor (NF)-kappa B activation, and the expression of pro-inflammatory factors and nerve growth factor; but it increased the expression of SOCS1. Inversely, miR-155 agomir significantly potentiated LPS-induced pathophysiological effects in BMDMs. MiR-155 agomir-induced effects were reversed by the NF-kappa B inhibitor. Mechanistically, treatment with siRNA against SOCS1 augmented the aforementioned LPS-mediated activities, which were antagonized by the addition of miR-155 antagomir. In conclusion, miR-155 inhibition downregulated NGF expression via decreasing M1 macrophage polarization and inflammatory responses dependent on the SOCS1/NF-kappa B pathway, subsequently diminishing MI-induced sympathetic neural remodeling and ventricular arrhythmias (VAs).
机译:炎症在心肌梗死(MI)诱导的同情神经重塑中起着重要作用。 miR-155是炎症反应的重要调节因子,巨噬细胞分泌的miR-155促进心肌纤维化和肥大。然而,MIR-155是否影响MI诱导的同情神经重塑是不明确的。因此,我们研究了miR-155在MI诱导的交感神经重塑中的作用和小鼠模型和脂多糖(LPS)型骨髓衍生的巨噬细胞(BMDMS)中的相关机制。我们的数据显示,与假小鼠相比,Mi小鼠心肌组织中,MiR-155表达显着增强。另外,MI上调的电参数,M1巨噬细胞极化,炎症反应,和细胞因子信号1(SOCS1)的表达,其与交感神经重塑标记(神经生长因子,酪氨酸羟化酶和生长相关的表达增加一致的抑制蛋白质43)。除SOCS1外,这些蛋白质由miR-155 antagomir衰减。体外,LPS刺激促进了BMDMS中的miR-155表达。 miR-155 intagomir与体内调查结果一致,静血血患者降低了LPS诱导的M1巨噬细胞极化,核因子(NF)-Kappa激活,以及促炎因子和神经生长因子的表达;但它增加了SOCS1的表达。相反,MIR-155 AGOMIR显着增强了BMDMS的LPS诱导的病理生理学效应。 MIR-155抗核苷诱导的效果被NF-Kappa B抑制剂逆转。机械地,用siRNA对抗SOCs1的治疗增强了上述LPS介导的活性,该活性通过添加miR-155 intagomir来拮抗。最后,的miR-155的抑制通过降低巨噬细胞M1极化和炎症反应依赖于SOCS1 / NF-κB的途径下调NGF表达,随后减少MI诱导的交感神经重塑和室性心律失常(VAS)。

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