Bratisl Lek Listy. 2021;122(6):396-404. doi: 10.4149/BLL_2021_066.
To investigate the possible molecular mechanisms of radiofrequency ablation (RFA) for treating atrial fibrillation (AF) and the microRNA (miRNA) target for intervention in the future.
We examined the changes in miRNAs regulating the atrial ion-channel proteins across the whole genome. We compared findings from 90 AF patients with those from 90 healthy subjects before RFA and three months after RFA.
Twenty-one miRNAs regulating ion-channel proteins were differentially expressed more than ten-fold, and the findings were completely reversed after RFA as compared with the pre-RFA results. The colonial regulating effects of miRNAs regulating the outward K+ current channels such as those for the ultra-rapid delayed rectifier potassium current (Ikur), voltage-dependent delayed rectifier potassium current (Ikr), and delayed rectifier potassium channel current (Iks) were more unanimous and stronger, while this was not the case for miRNAs regulating the L-type Ca2+ current and INa current channels. Generally, miR-1266 levels were increased in the blood but down-regulated in the rheumatic atrial tissue, while a dual luciferase test indicated that SCN5A was the direct target gene of miR-1266.
Using RFA to treat AF may have an impact via reversing the changes in miRNAs regulating the ion-channel proteins, especially for outward K+ current channels such as Ikur, Ikr, and Iks, which may play a major role in electrical remodeling in AF. It may be that miR-1266 is an antiarrhythmic miRNA and an AF intervention target in the future (Tab. 2, Fig. 4, Ref. 46).
探讨射频消融(RFA)治疗心房颤动(AF)的可能分子机制及未来干预的 miRNA 靶点。
我们检测了调控心房离子通道蛋白的 miRNA 在全基因组水平的变化。我们比较了 90 例 AF 患者 RFA 前后及 3 个月时的 miRNA 表达谱与 90 例健康对照者的差异。
21 种调控离子通道蛋白的 miRNA 表达差异超过 10 倍,RFA 后与 RFA 前相比完全逆转。miRNA 对调节外向 K+电流通道的调控作用更为一致和强烈,如超快速延迟整流钾电流(Ikur)、电压依赖性延迟整流钾电流(Ikr)和延迟整流钾电流(Iks),而对 L 型 Ca2+电流和 INa 电流通道的调节作用则不然。一般来说,miR-1266 在血液中的水平升高,但在风湿性心房组织中下调,而双荧光素酶试验表明 SCN5A 是 miR-1266 的直接靶基因。
RFA 治疗 AF 可能通过逆转调控离子通道蛋白的 miRNA 变化产生影响,特别是对 Ikur、Ikr 和 Iks 等外向 K+电流通道的影响,这可能在 AF 中的电重构中起主要作用。miR-1266 可能是一种抗心律失常 miRNA 和未来 AF 干预的靶点(表 2,图 4,参考文献 46)。