Soci Ursula Paula Reno, Cavalcante Bruno Raphael Ribeiro, Improta-Caria Alex Cleber, Roever Leonardo
Biodynamics of the Human Body Movement Department, School of Physical Education and Sports, São Paulo University-USP, São Paulo, Brazil.
Gonçalo Moniz Institute, Oswaldo Cruz Foundation (IGM-FIOCRUZ/BA), Salvador, Brazil.
Front Cell Dev Biol. 2022 Jul 4;10:910884. doi: 10.3389/fcell.2022.910884. eCollection 2022.
Overweight and obesity (OBT) is a serious health condition worldwide, and one of the major risk factors for cardiovascular disease (CVD), the main reason for morbidity and mortality worldwide. OBT is the proportional increase of Adipose Tissue (AT) compared with other tissue and fluids, associated with pathological changes in metabolism, hemodynamic overload, cytokine secretion, systemic inflammatory profile, and cardiac metabolism. In turn, AT is heterogeneous in location, and displays secretory capacity, lipolytic activation, insulin sensitivity, and metabolic status, performing anatomic, metabolic, and endocrine functions. Evidence has emerged on the bidirectional crosstalk exerted by miRNAs as regulators between the heart and AT on metabolism and health conditions. Here, we discuss the bidirectional endocrine role of miRNAs between heart and AT, rescuing extracellular vesicles' (EVs) role in cell-to-cell communication, and the most recent results that show the potential of common therapeutic targets through the elucidation of parallel and ⁄or common epigenetic mechanisms.
超重和肥胖(OBT)是一种全球性的严重健康问题,也是心血管疾病(CVD)的主要危险因素之一,而心血管疾病是全球发病和死亡的主要原因。OBT是脂肪组织(AT)相对于其他组织和体液的比例性增加,与代谢的病理变化、血流动力学过载、细胞因子分泌、全身炎症状态和心脏代谢相关。反过来,AT在位置上是异质性的,并表现出分泌能力、脂解激活、胰岛素敏感性和代谢状态,执行解剖、代谢和内分泌功能。关于微小RNA(miRNA)作为心脏和AT之间代谢和健康状况调节因子所发挥的双向串扰作用,已有证据出现。在此,我们讨论miRNA在心脏和AT之间的双向内分泌作用,阐明细胞外囊泡(EVs)在细胞间通讯中的作用,以及通过阐明平行和/或共同的表观遗传机制来显示共同治疗靶点潜力的最新研究结果。