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Multi-Omics Approach: New Potential Key Mechanisms Implicated in Cardiorenal Syndromes

机译:多OMICS方法:新的潜在关键机制涉及心肺综合征

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Cardiorenal syndromes (CRS) include a scenario of clinical interactions characterized by the heart and kidney dysfunction. The crosstalk between cardiac and renal systems is clearly evidenced but not completely understood. Multi-factorial mechanisms leading to CRS do not involve only hemodynamic parameters. In fact, in recent works on organ crosstalk endothelial injury, the alteration of normal immunologic balance, cell death, inflammatory cascades, cell adhesion molecules, cytokine and chemokine overexpression, neutrophil migration, leukocyte trafficking, caspase-mediated induction of apoptotic mechanisms and oxidative stress has been demonstrated to induce distant organ dysfunction. Furthermore, new alternative mechanisms using the multi-omics approach may be implicated in the pathogenesis of cardiorenal crosstalk. The study of “omics” modifications in the setting of cardiovascular and renal disease represents an emerging area of research. Over the last years, indeed, many studies have elucidated the exact mechanisms involved in gene expression and regulation, cellular communication and organ crosstalk. In this review, we analyze epigenetics, gene expression, small non-coding RNAs, extracellular vesicles, proteomics, and metabolomics in the setting of CRS.
机译:心肺综合征(CRS)包括临床相互作用的场景,其特征是心脏和肾功能紊乱。心脏和肾脏系统之间的串扰明显证明但没有完全理解。导致CRS的多因素机制不涉及血液动力学参数。事实上,在近期对器官串扰内皮损伤的作品中,常规免疫平衡的改变,细胞死亡,炎症级联,细胞粘附分子,细胞因子和趋化因子过表达,中性粒细胞迁移,白细胞贩运,胱天蛋白介导的凋亡机制诱导和氧化应激已被证明诱导遥远的器官功能障碍。此外,使用多常规方法的新替代机制可以涉及心血管串扰的发病机制。在心血管和肾病中的设置中的“OMICS”修饰研究代表了一个新兴的研究领域。事实上,许多研究阐明了基因表达和调节,细胞通信和器官串扰所涉及的确切机制。在该综述中,我们在CRS的设置中分析表观生物学,基因表达,小型非编码RNA,细胞外囊泡,蛋白质组学和代谢组科。

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