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      An Energy Metabolism Study on the Efficacy of Naoxintong Capsules against Myocardial Infarction in a Rat Model

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          Abstract

          Background

          In myocardial ischemia, optimizing the myocardial metabolic phenotype to improve cardiac function is critical. Naoxintong capsules (NXT) are widely prescribed in Chinese medicine for the treatment of cerebrovascular and cardiovascular diseases.

          Methods

          In this study, a rat model of myocardial infarction was established by ligation of the left anterior descending coronary artery. The structure and function of the heart were evaluated using echocardiography. The pathological changes of the rat myocardium and the myocardial volume collagen fraction (CVF) were examined using hematoxylin-eosin (HE) and Masson's trichrome staining (Masson). The expression of TNF- α and IL-6 were detected by immunohistochemistry. The level of cTnT was also measured to evaluate myocardial injury. In order to study the changes in energy metabolism in myocardial infarction and the effects of NXT, a targeted analysis method for detecting the 29 energy metabolites in cardiac muscle tissue was developed based on UPLC-QQQ-MS. Western blotting was used to detect the expression of proteins related to energy metabolism in myocardia.

          Results

          In the rat model of myocardial infarction, NXT showed obvious effects, such as improving heart function and increasing LVEF and LVFS. HE staining, Masson staining, and immunohistochemical results revealed that NXT decreased inflammatory infiltration, improved myocardial fibrosis, and reduced infarct size. In addition, NXT significantly reduced the level of serum cTnT. The levels of the 29 energy metabolites in cardiac muscle tissue were analyzed using a newly developed targeted analysis method. Compared to the sham group, the levels of 17 metabolites from different energy metabolic pathways, including four compounds in glycolysis metabolism, four compounds in TCA cycle, three compounds in oxidative phosphorylation, four compounds in purine metabolism, and two compounds in glutathione metabolism, displayed obvious changes induced by myocardial ischemia. Expressions of SIRT1, PGC-1 α, and ATP5D proteins related to energy metabolism were decreased after myocardial infarction. These perturbations could all be reversed by NXT intervention, suggesting that the therapeutic effects of NXT were partially due to interferences with energy metabolisms.

          Conclusion

          This study provides a useful approach for investigating the mechanism of myocardial infarction and evaluating the efficacy of NXT from energy metabolism.

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          Most cited references34

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          Myocardial reperfusion injury.

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            Metabolic control of mitochondrial biogenesis through the PGC-1 family regulatory network.

            The PGC-1 family of regulated coactivators, consisting of PGC-1α, PGC-1β and PRC, plays a central role in a regulatory network governing the transcriptional control of mitochondrial biogenesis and respiratory function. These coactivators target multiple transcription factors including NRF-1, NRF-2 and the orphan nuclear hormone receptor, ERRα, among others. In addition, they themselves are the targets of coactivator and co-repressor complexes that regulate gene expression through chromatin remodeling. The expression of PGC-1 family members is modulated by extracellular signals controlling metabolism, differentiation or cell growth and in some cases their activities are known to be regulated by post-translational modification by the energy sensors, AMPK and SIRT1. Recent gene knockout and silencing studies of many members of the PGC-1 network have revealed phenotypes of wide ranging severity suggestive of complex compensatory interactions or broadly integrative functions that are not exclusive to mitochondrial biogenesis. The results point to a central role for the PGC-1 family in integrating mitochondrial biogenesis and energy production with many diverse cellular functions. This article is part of a Special Issue entitled: Mitochondria and Cardioprotection. Copyright © 2010 Elsevier B.V. All rights reserved.
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              Universal definition of myocardial infarction.

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                Author and article information

                Contributors
                Journal
                Oxid Med Cell Longev
                Oxid Med Cell Longev
                OMCL
                Oxidative Medicine and Cellular Longevity
                Hindawi
                1942-0900
                1942-0994
                2022
                23 July 2022
                : 2022
                : 3712500
                Affiliations
                1Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, China 100700
                2Zunyi Medical University, Zunyi, China 563000
                3Medical Experimental Center of Chinese Academy of Traditional Chinese Medicine, Beijing, China 100700
                Author notes

                Academic Editor: Pablo Evelson

                Author information
                https://orcid.org/0000-0002-3515-5104
                https://orcid.org/0000-0002-7081-4718
                https://orcid.org/0000-0002-9268-511X
                https://orcid.org/0000-0001-6124-0524
                https://orcid.org/0000-0001-8369-7314
                https://orcid.org/0000-0002-0555-9191
                https://orcid.org/0000-0001-5501-3288
                https://orcid.org/0000-0002-3768-4608
                Article
                10.1155/2022/3712500
                9338863
                35915610
                716ae0cf-7ac2-4c77-8a6f-d784cc513400
                Copyright © 2022 Jie Zhao et al.

                This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 4 January 2022
                : 15 May 2022
                : 17 June 2022
                Funding
                Funded by: China Academy of Chinese Medical Sciences
                Award ID: CI2021A05208
                Award ID: CI2021B017-07
                Award ID: CI2021A04202
                Funded by: National Natural Science Foundation of China
                Award ID: 81973711
                Categories
                Research Article

                Molecular medicine
                Molecular medicine

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