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Hydrogen therapy after resuscitation improves myocardial injury involving inhibition of autophagy in an asphyxial rat model of cardiac arrest. | LitMetric

Hydrogen (H) therapy is a therapeutic strategy using molecular H. Due to its ability to regulate cell homeostasis, H therapy has exhibited marked therapeutic effects on a number of oxidative stress-associated diseases. The present study investigated the effectiveness of H therapy in protecting against myocardial injury in a rat model of asphyxial cardiac arrest and cardiopulmonary resuscitation. Rats underwent 10-min asphyxia-induced cardiac arrest (CA) and cardiopulmonary resuscitation (CPR), and were randomly divided into control and H therapy groups. After resuscitation, the H therapy group was administered room air mixed with 2% H gas for respiration. During CA/CPR, the arterial pressure and heart rate were measured every minute. Survival rate, cardiac function, myocardial injury biomarkers creatine kinase-MB and cardiac troponin-T, and histopathological changes were evaluated to determine the protective effects of H therapy in CA/CPR. Immunohistochemistry and western blot analysis were used to determine the expression levels of autophagy-associated proteins. , H9C2 cells were subjected to hypoxia/reoxygenation and H-rich medium was used in H treatment groups. Western blotting and immunofluorescence were used to observe the expression levels of autophagy-associated proteins. Moreover, an adenovirus-monomeric red fluorescent protein-green fluorescent protein-LC3 construct was used to explore the dynamics of autophagy in the H9C2 cells. The results showed that H therapy significantly improved post-resuscitation survival and cardiac function. H therapy also improved mitochondrial mass and decreased autophagosome numbers in cardiomyocytes after resuscitation. The treatment inhibited autophagy activation, with lower expression levels of autophagy-associated proteins and decreased autophagosome formation and . In conclusion, H gas inhalation after return of spontaneous circulation improved cardiac function via the inhibition of autophagy.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9019777PMC
http://dx.doi.org/10.3892/etm.2022.11302DOI Listing

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