Ginsenoside Rb1 mitigates acute catecholamine surge-induced myocardial injuries in part by suppressing STING-mediated macrophage activation - 29/05/24
, Teng Zhang a, b, ⁎ 
Abstract |
Stress cardiomyopathy (SCM) is associated with cardiovascular mortality rates similar to acute coronary syndrome. Myocardial injuries driven by inflammatory mechanisms may in part account for the dismal prognosis of SCM. Currently, no inflammation-targeted therapies are available to mitigate SCM-associated myocardial injuries. In this study, acute catecholamine surge-induced SCM was modeled by stimulating the ovariectomized (OVX) mice with isoproterenol (ISO). The effects of ginsenoside Rb1 (Rb1) on SCM-associated myocardial injuries were assessed in the OVX-ISO compound mice. RAW 264.7 macrophages stimulated with calf thymus DNA (ctDNA) or STING agonist DMXAA were adopted to further understand the anti-inflammatory mechanisms of Rb1. The results show that estrogen deprivation increases the susceptibility to ISO-induced myocardial injuries. Rb1 mitigates myocardial injuries and attenuates cardiomyocyte necrosis as well as myocardial inflammation in the OVX-ISO mice. Bioinformatics analysis suggests that cytosolic DNA-sensing pathway is closely linked with ISO-triggered inflammatory responses and cell death in the heart. In macrophages, Rb1 lowers ctDNA-stimulated production of TNF-α, IL-6, CCL2 and IFN-β. RNA-seq analyses uncover that Rb1 offsets DNA-stimulated upregulation in multiple inflammatory response pathways and cytosolic DNA-sensing pathway. Furthermore, Rb1 directly mitigates DMXAA-stimulated STING activation and inflammatory responses in macrophages. In conclusion, the work here demonstrates for the first time that Rb1 protects against SCM-associated myocardial injuries in part by counteracting acute ISO stress-triggered cardiomyocyte necrosis and myocardial inflammation. Moreover, by evidencing that Rb1 downregulates cytosolic DNA-sensing machineries in macrophages, our findings warrant further investigation of therapeutic implications of the anti-inflammatory Rb1 in the treatment of SCM.
El texto completo de este artículo está disponible en PDF.Graphical Abstract |
Highlights |
• | Ovariectomized mice are susceptible to isoproterenol-induced myocardial injuries. |
• | Rb1 mitigates acute catecholamine surge-triggered cardiomyocyte necrosis. |
• | Rb1 attenuates stress cardiomyopathy-associated inflammatory responses in the heart. |
• | Rb1 suppresses DNA-stimulated STING-mediated macrophage activation. |
Abbreviations : CtDNA, CTnl, DAMPs, DEGs, DMEM, DMXAA, EBD, ELISA, FBS, FDR, FPKM, GO, GSEA, HE, IHC, IL6, IQR, ISGs, ISO, KEGG, LPS, NES, OVX, PCA, Rb1, Real-time qPCR, RNA-seq, SCM, STING, WGA, WP
Keywords : Ginsenoside Rb1, Stress cardiomyopathy, Inflammation, Macrophage activation, STING
Esquema
Vol 175
Artículo 116794- juin 2024 Regresar al númeroBienvenido a EM-consulte, la referencia de los profesionales de la salud.
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