Department of Clinical Therapeutics, "Alexandra" Hospital, University of Athens, Athens, Greece.
Department of Electrophysiology and Pacing, Onassis Cardiac Surgery Center, Greece.
Cytokine. 2018 Nov;111:171-177. doi: 10.1016/j.cyto.2018.08.007. Epub 2018 Aug 29.
The network of cytokines consists one of the most extensively studied signaling systems of human body. Cytokines appear to modulate pathogenesis and progress of many different diseases in the human body, particularly in regards to cardiovascular system. However, their effects on the electrical system of the heart has been neglected. Over the past decade, attemps to understand this relationship led to the uncovering of the direct and indirect effects of cytokines on action potential propagation and cell depolarization. This relationship has been depicted in clinical practice as serum levels of cytokines are increasingly associated with prevalence of ventricular arrhythmias either isolated or secondary to either a heart condition or a systemic auto-immune disease. Thus, they present an appealing potential as a biomarker for prediction of arrhythmia generation, as well as the ourtcome of electrophysiological interventions.
细胞因子网络是人体研究最为广泛的信号转导系统之一。细胞因子似乎调节着人体多种不同疾病的发病机制和进展,尤其是心血管系统。然而,它们对心脏电系统的影响却被忽视了。在过去的十年中,人们试图了解这种关系,从而发现细胞因子对动作电位传播和细胞去极化的直接和间接影响。这种关系在临床实践中表现为,细胞因子的血清水平与室性心律失常的发生率呈正相关,这些心律失常要么是孤立性的,要么是继发于心脏疾病或系统性自身免疫性疾病。因此,它们作为心律失常发生预测以及电生理干预预后的生物标志物具有很大的吸引力。