Liguzinediol potentiates the metabolic remodeling by activating the AMPK/SIRT3 pathway and represses Caspase-3/GSDME-mediated pyroptosis to ameliorate cardiotoxicity
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Published:2024-06-14
Issue:1
Volume:19
Page:
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ISSN:1749-8546
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Container-title:Chinese Medicine
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language:en
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Short-container-title:Chin Med
Author:
Zhu Weijie,Lian Naqi,Wang Jia,Zhao Fengming,Liu Bowen,Sheng Jiaxing,Zhang Chenyan,Zhou Xuan,Gao Wenbai,Xie Chen,Gu Haoyu,Zhang Yuxin,Bian Mianli,Jiang Miao,Li Yu
Abstract
Abstract
Background
Liguzinediol (Lig) has emerged as a promising candidate for mitigating Doxorubicin (DOX)-induced cardiotoxicity, a significant limitation in the clinical application of this widely used antineoplastic drug known for its efficacy. This study aimed to explore the effects and potential mechanisms underlying Lig’s protective role against DOX-induced cardiotoxicity.
Methods
C57BL/6 mice were treated with DOX. Cardiac function changes were observed by echocardiography. Cardiac structure changes were observed by HE and Masson staining. Immunofluorescence was applied to visualize the cardiomyocyte apoptosis. Western blotting was used to detect the expression levels of AMP-activated protein kinase (AMPK), sirtuin 3 (SIRT3), Caspase-3 and gasdermin E N-terminal fragment (GSDME-N). These experiments confirmed that Lig had an ameliorative effect on DOX-induced cardiotoxicity in mice.
Results
The results demonstrated that Lig effectively countered myocardial oxidative stress by modulating intracellular levels of reactive oxygen species (ROS), malondialdehyde (MDA), and superoxide dismutase (SOD). Lig reduced levels of creatine kinase (CK) and lactate dehydrogenase (LDH), while ameliorating histopathological changes and improving electrocardiogram profiles in vivo. Furthermore, the study revealed that Lig activated the AMPK/SIRT3 pathway, thereby enhancing mitochondrial function and attenuating myocardial cell apoptosis. In experiments with H9C2 cells treated with DOX, co-administration of the AMPK inhibitor compound C (CC) led to a significant increase in intracellular ROS levels. Lig intervention reversed these effects, along with the downregulation of GSDME-N, interleukin-1β (IL-1β), and interleukin-6 (IL-6), suggesting a potential role of Lig in mitigating Caspase-3/GSDME-mediated pyroptosis.
Conclusion
The findings of this study suggest that Lig effectively alleviates DOX-induced cardiotoxicity through the activation of the AMPK/SIRT3 pathway, thereby presenting itself as a natural product with therapeutic potential for preventing DOX-associated cardiotoxicity. This novel approach may pave the way for the development of alternative strategies in the clinical management of DOX-induced cardiac complications.
Funder
the National Natural Science Foundation of China
the Natural Science Foundation of Jiangsu Province
General Project of Jiangsu Provincial Health Commission
Jiangsu province six one project
Six talent peaks high-level talents level B
333 High-level personnel Training Program of Jiangsu Province, General Projects of the Natural Science Research of Jiangsu Higher Education Institutions
Publisher
Springer Science and Business Media LLC
Reference44 articles.
1. Ghignatti P, Nogueira LJ, Lehnen AM, et al. Cardioprotective effects of exercise training on doxorubicin-induced cardiomyopathy: a systematic review with meta-analysis of preclinical studies. Sci Rep. 2021;11:6330.
2. Wu BB, Leung KT, Poon EN. Mitochondrial-targeted therapy for doxorubicin-induced cardiotoxicity. Int J Mol Sci. 2022;23:1912.
3. Zhang Y, Ni L, Lin B, et al. SNX17 protects the heart from doxorubicin-induced cardiotoxicity by modulating LMOD2 degradation. Pharmacol Res. 2021;169: 105642.
4. Rawat PS, Jaiswal A, Khurana A, et al. Doxorubicin-induced cardiotoxicity: an update on the molecular mechanism and novel therapeutic strategies for effective management. Biomed Pharmacother. 2021;139:14.
5. Steinberg GR, Hardie DG. New insights into activation and function of the AMPK. Nat Rev Mol Cell Biol. 2023;24:255–72.