日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Preventing the phosphorylation of RyR2 at canonical sites reduces Ca(2+) leak and promotes arrhythmia by reactivating the I(Na) current.

阻止 RyR2 在典型位点的磷酸化可减少 Ca(2+) 泄漏,并通过重新激活 I(Na) 电流促进心律失常

Zheng Jingjing, Ponce-Balbuena Daniela, Ríos Pérez Erick B, Xiao Li, Dooge Holly C, Valdivia Héctor H, Alvarado Francisco J

Dual ablation of the RyR2-Ser2808 and RyR2-Ser2814 sites increases propensity for pro-arrhythmic spontaneous Ca(2+) releases.

RyR2-Ser2808 和 RyR2-Ser2814 两个位点的双重消融会增加促心律失常的自发性 Ca(2+) 释放的倾向

Janicek Radoslav, Camors Emmanuel M, Potenza Duilio M, Fernandez-Tenorio Miguel, Zhao Yanting, Dooge Holly C, Loaiza Randall, Alvarado Francisco J, Egger Marcel, Valdivia Hector H, Niggli Ernst

Ablation of three major phospho-sites in RyR2 preserves the global adrenergic response but creates an arrhythmogenic substrate

RyR2中三个主要磷酸化位点的消融保留了整体肾上腺素能反应,但产生了致心律失常的基质。

Zheng, Jingjing; Dooge, Holly C; Valdivia, Héctor H; Alvarado, Francisco J

Preserved cardiac performance and adrenergic response in a rabbit model with decreased ryanodine receptor 2 expression

在兔模型中,尽管兰尼碱受体2表达降低,但心脏功能和肾上腺素能反应仍得以保留。

Zheng, Jingjing; Dooge, Holly C; Pérez-Hernández, Marta; Zhao, Yan-Ting; Chen, Xi; Hernandez, Jonathan J; Valdivia, Carmen R; Palomeque, Julieta; Rothenberg, Eli; Delmar, Mario; Valdivia, Héctor H; Alvarado, Francisco J