The RIPK3 inhibitor GSK'872 mitigated myocardial fibrosis, inflammation, and necroptosis in mice following transverse aortic constriction by modulating CaMKII activation.
Mice undergoing transverse aortic constriction (TAC) to induce myocardial fibrosis, and in vitro cardiac fibroblasts stimulated with angiotensin II.
RIPK3 depletion and RIPK3 inhibitor GSK'872
Untreated TAC mice / control fibroblasts (implied)
Extent of myocardial fibrosis, myocardial injury, CaMKII activity, and necroptosissurrogate
Inhibition of RIPK3 with GSK'872 mitigates myocardial fibrosis and injury by reducing CaMKII activation and necroptosis in a murine model of pressure overload.
BACKGROUND: /calmodulin-dependent protein kinase (CaMKII) is pivotal in cardiovascular disease (CVD). This study aimed to evaluate the impact and underlying mechanisms of RIPK3 on myocardial injury in MF and to elucidate the potential involvement of CaMKII. METHODS: ) mice underwent random assignment for transverse aortic constriction (TAC) in vivo. Four weeks post-procedure, the MF model was effectively established. Parameters such as the extent of MF, myocardial injury, RIPK3 expression, necroptosis, CaMKII activity, phosphorylation of mixed lineage kinase domain-like protein (MLKL), mitochondrial ultrastructural details, and oxidative stress levels were examined. Cardiomyocyte fibrosis was simulated in vitro using angiotensin II on cardiac fibroblasts. RESULTS: TAC reliably produced MF, myocardial injury, CaMKII activation, and necroptosis in mice. RIPK3 depletion ameliorated these conditions. The RIPK3 inhibitor, GSK'872, suppressed the expression of RIPK3 in myocardial fibroblasts, leading to improved fibrosis and inflammation, diminished CaMKII oxidation and phosphorylation levels, and the rectification of CaMKIIδ alternative splicing anomalies. Furthermore, GSK'872 downregulated the expressions of RIPK1, RIPK3, and MLKL phosphorylation, attenuated necroptosis, and bolstered the oxidative stress response. CONCLUSIONS: Our data suggested that in MF mice, necroptosis was augmented in a RIPK3-dependent fashion. There seemed to be a positive correlation between CaMKII activation and RIPK3 expression. The adverse effects on myocardial fibrosis mediated by CaMKII δ through RIPK3 could potentially be mitigated by the RIPK3 inhibitor, GSK'872. This offered a fresh perspective on the amelioration and treatment of MF and myocardial injury.
Building similarity graph...
Analyzing shared references across papers
Loading...
Jingjing Zhang
Shihezi University
Ji Cao
Jiangxi Agricultural University
Jianan Qian
Shanghai University of Traditional Chinese Medicine
Biomedicine & Pharmacotherapy
Nantong University
Affiliated Hospital of Nantong University
Second People's Hospital of NanTong
Building similarity graph...
Analyzing shared references across papers
Loading...
Zhang et al. (Sat,) conducted a other in Myocardial fibrosis and myocardial injury. RIPK3 depletion and RIPK3 inhibitor GSK'872 vs. Control/Vehicle was evaluated on Extent of myocardial fibrosis, myocardial injury, RIPK3 expression, necroptosis, and CaMKII activity. The RIPK3 inhibitor GSK'872 mitigated myocardial fibrosis, inflammation, and necroptosis in mice following transverse aortic constriction by modulating CaMKII activation.
synapsesocial.com/papers/6a10efa369716c70d0489016 — DOI: https://doi.org/10.1016/j.biopha.2023.115380