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NSC228155 alleviates septic cardiomyopathy via protecting mitochondria and inhibiting inflammation
Yuteng Jiang1, Yanwei Li1, Yiyuan Zhang2
1School of Medicine, Southeast University, Nanjing, China; Nanjing Key Laboratory of Pediatrics, Children's Hospital of Nanjing Medical University, Nanjing, China; Jiangsu Key Laboratory of Pediatrics, Nanjing Medical University, Nanjing, China.
Abstract:
Septic cardiomyopathy is a lethal symptom of sepsis. Discovery of effective therapy that prevents cardiac injury in sepsis is critical in the clinical management of sepsis. NSC228155 is a novel compound with therapeutic potential on acute kidney injury by preventing apoptosis and protecting mitochondria. Whether NSC228155 protects against septic cardiomyopathy is unclear. In the present study, adult C57BL/6J mice were i.p injected with 5 mg/kg/day NSC228155 for 2 days before 10 mg/kg lipopolysaccharide (LPS) injection. Cardiac functional testing and sampling for serum and tissue were performed 12 and 24 h post LPS injection, respectively. NSC228155 significantly improved cardiac function examined by echocardiography, decreased the serum lactate dehydrogenase (LDH) and creatine kinase-MB, and pathologically alleviated cardiac injury in LPS mice. Accordingly, NSC228155 attenuated cardiomyocytes' mitochondrial damage as shown by decreased damaged mitochondrial ratio and activated signals for mitochondrial biogenesis, dynamics and mitophagy in LPS mice model. Metabolomics analysis demonstrated that NSC228155 corrected the metabolic disturbance involved in oxidative stress and energy metabolism, and decreased tissue injury metabolites in LPS-stimulated cardiac tissue. In the LPS-stimulated cardiac cell culture derived from human induced pluripotent stem cells, NSC228155 effectively restored the beating frequency, decreased LDH release, and protected mitochondria. NSC228155 also inhibited inflammation shown by decreased pro-inflammatory mediators in both serum and cardiac tissue in LPS model. Taken together, NSC228155 significantly improved cardiac function by directly preventing against cardiac cell injury and inhibiting inflammation in LPS model, hence may be a potential novel therapy against septic cardiomyopathy.
Insights
The novel compound NSC228155 significantly improved cardiac function and reduced injury in a septic cardiomyopathy mouse model. This therapy protected mitochondria, corrected metabolic disturbances, and inhibited inflammation, showing potential for treating septic cardiomyopathy.
Area of Science:
- Cardiovascular Medicine
- Sepsis Research
- Pharmacology
Background:
- Septic cardiomyopathy is a life-threatening sepsis complication requiring effective therapies.
- NSC228155 shows promise for acute kidney injury by preventing apoptosis and protecting mitochondria.
- The efficacy of NSC228155 against septic cardiomyopathy remains unexplored.
Purpose of the Study:
- To investigate the protective effects of NSC228155 on cardiac function and injury in a mouse model of septic cardiomyopathy.
- To elucidate the underlying mechanisms, including mitochondrial protection, metabolic regulation, and anti-inflammatory actions of NSC228155.
Main Methods:
- Adult C57BL/6J mice were treated with NSC228155 prior to lipopolysaccharide (LPS) injection to induce sepsis.
- Cardiac function was assessed using echocardiography, and serum/tissue biomarkers of injury were measured.
- Mitochondrial function, metabolomics, and inflammatory markers were analyzed in cardiac tissues and cell cultures.
Main Results:
- NSC228155 treatment significantly improved cardiac function and reduced serum markers of cardiac injury (LDH, CK-MB).
- The compound attenuated mitochondrial damage, promoted mitochondrial biogenesis and dynamics, and activated mitophagy.
- Metabolomics revealed correction of oxidative stress and energy metabolism disturbances; NSC228155 also reduced pro-inflammatory mediators.
Conclusions:
- NSC228155 demonstrates significant cardioprotective effects in a septic cardiomyopathy model.
- The compound acts by directly preventing cardiomyocyte injury, preserving mitochondrial function, and suppressing inflammation.
- NSC228155 represents a potential novel therapeutic agent for treating septic cardiomyopathy.
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