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Glabridin Prevents Doxorubicin-Induced Cardiotoxicity Through Gut Microbiota Modulation and Colonic Macrophage
Keqing Huang1, Yanzhuo Liu2,3, Honglin Tang2
1Department of Cardiology, Renmin Hospital, Wuhan University, Wuhan, China.
Abstract:
The chemotherapeutic drug doxorubicin (DOX) provokes a dose-related cardiotoxicity. Thus, there is an urgent need to identify the underlying mechanisms and develop strategies to overcome them. Here we demonstrated that glabridin (GLA), an isoflavone from licorice root, prevents DOX-induced cardiotoxicity through gut microbiota modulation and colonic macrophage polarization in mice. GLA reduced DOX-induced leakage of myocardial enzymes including aminotransferase, creatine kinase, lactate dehydrogenase, and creatine kinase-MB. GLA downregulated pro-apoptotic proteins (Bax, cleaved-caspase 9 and cleaved-caspase 3) and upregulated anti-apoptotic proteins (HAX-1 and Bcl-2) in the cardiac tissues. In addition, GLA modulated DOX-induced dysbiosis of gut microbiota and thereby decreased the ratio of M1/M2 colonic macrophage, accompanied by the downregulated lipopolysaccharide (LPS) and upregulated butyrate in the feces and peripheral blood. The leakage of myocardial enzymes induced by the DOX was decreased by antibiotics treatment, but not altered by co-treatment with the GLA and antibiotics. The ratio of M1/M2 colonic macrophage and leakage of myocardial enzymes reduced by the GLA were greatly increased by the Desulfovibrio vulgaris or LPS but decreased by the butyrate. Depletion of the macrophage attenuated DOX-induced cardiotoxicity but failed to further affect the effects of GLA. Importantly, GLA decreased production of M1 cytokines (IL-1β and TNF-α) but increased production of M2 cytokines (IL-10 and TGF-β) in the colonic macrophage with the downregulation of NF-κB and the upregulation of STAT6. In summary, GLA prevents DOX-induced cardiotoxicity through gut microbiota modulation and colonic macrophage polarization, and may serve as a potential therapeutic strategy for the DOX-induced cardiotoxicity.
Insights
Glabridin (GLA) prevents doxorubicin (DOX)-induced heart damage by altering gut bacteria and colonic macrophages. This natural compound may offer a new strategy against chemotherapy-related cardiotoxicity.
Area of Science:
- Pharmacology
- Toxicology
- Immunology
Background:
- Doxorubicin (DOX) chemotherapy causes dose-related cardiotoxicity, necessitating protective strategies.
- Understanding the mechanisms of DOX-induced cardiotoxicity is crucial for developing effective interventions.
Purpose of the Study:
- To investigate the protective effects of glabridin (GLA) against DOX-induced cardiotoxicity.
- To elucidate the role of gut microbiota modulation and colonic macrophage polarization in GLA's protective mechanism.
Main Methods:
- Mice were treated with DOX, with or without GLA, antibiotics, or specific bacteria/LPS/butyrate.
- Cardiac enzyme leakage, apoptosis markers, gut microbiota composition, and colonic macrophage polarization were assessed.
- Cytokine production and signaling pathways (NF-κB, STAT6) in colonic macrophages were analyzed.
Main Results:
- GLA significantly reduced DOX-induced myocardial enzyme leakage and cardiac apoptosis.
- GLA modulated gut microbiota dysbiosis, decreased lipopolysaccharide (LPS), and increased butyrate levels.
- GLA promoted a shift from M1 to M2 colonic macrophage polarization, reducing pro-inflammatory cytokines and activating anti-inflammatory pathways.
Conclusions:
- Glabridin effectively prevents doxorubicin-induced cardiotoxicity by modulating gut microbiota and colonic macrophage polarization.
- GLA's mechanism involves reducing LPS, increasing butyrate, and shifting macrophage phenotype towards an anti-inflammatory M2 state.
- Glabridin shows potential as a therapeutic agent to mitigate chemotherapy-induced heart damage.
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