Novel preventive effect of isorhamnetin on electrical and structural remodeling in atrial fibrillation

异鼠李素 内科学 血管紧张素II 心房颤动 医学 内分泌学 心钠素 药理学 化学 受体 类黄酮 抗氧化剂 生物化学 山奈酚
作者
Kazuhiro Aonuma,Dongzhu Xu,Nobuyuki Murakoshi,Kazuko Tajiri,Yuta Okabe,Zixun Yuan,Siqi Li,Yoshiko Murakata,Ken‐ichi Tominaga,Akihiko Nogami,Kazutaka Aonuma,Masaki Ieda,Hiroko Isoda
出处
期刊:Clinical Science [Portland Press]
卷期号:136 (24): 1831-1849 被引量:9
标识
DOI:10.1042/cs20220319
摘要

Isorhamnetin, a natural flavonoid, has strong antioxidant and antifibrotic effects, and a regulatory effect against Ca2+-handling. Atrial remodeling due to fibrosis and abnormal intracellular Ca2+ activities contributes to initiation and persistence of atrial fibrillation (AF). The present study investigated the effect of isorhamnetin on angiotensin II (AngII)-induced AF in mice. Wild-type male mice (C57BL/6J, 8 weeks old) were assigned to three groups: (1) control group, (2) AngII-treated group, and (3) AngII- and isorhamnetin-treated group. AngII (1000 ng/kg/min) and isorhamnetin (5 mg/kg) were administered continuously via an implantable osmotic pump for two weeks and intraperitoneally one week before initiating AngII administration, respectively. AF induction and electrophysiological studies, Ca2+ imaging with isolated atrial myocytes and HL-1 cells, and action potential duration (APD) measurements using atrial tissue and HL-1 cells were performed. AF-related molecule expression was assessed and histopathological examination was performed. Isorhamnetin decreased AF inducibility compared with the AngII group and restored AngII-induced atrial effective refractory period prolongation. Isorhamnetin eliminated abnormal diastolic intracellular Ca2+ activities induced by AngII. Isorhamnetin also abrogated AngII-induced APD prolongation and abnormal Ca2+ loading in HL-1 cells. Furthermore, isorhamnetin strongly attenuated AngII-induced left atrial enlargement and atrial fibrosis. AngII-induced elevated expression of AF-associated molecules, such as ox-CaMKII, p-RyR2, p-JNK, p-ERK, and TRPC3/6, was improved by isorhamnetin treatment. The findings of the present study suggest that isorhamnetin prevents AngII-induced AF vulnerability and arrhythmogenic atrial remodeling, highlighting its therapeutic potential as an anti-arrhythmogenic pharmaceutical or dietary supplement.
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