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Targeting TRAF3IP2 alleviates high glucose-induced cardiomyocyte inflammation and apoptosis
Jing Wei1, Tao Yan1, Yuanhong Liang2,3
1Department of Endocrinology, People's Hospital Affiliated to Chongqing Three Gorges Medical College, Chongqing, China.
Abstract:
To clarify the role of TRAF3IP2 in high glucose (HG)-stimulated cardiomyocyte inflammation and apoptosis and its action mechanism. SiRNA plasmid of TRAF3IP2 was constructed and transfected into HG-stimulated cardiomyocytes to silence TRAF3IP2. The expression of TRAF3IP2 was determined by quantitative polymerase chain reaction (qPCR) and western blot. Cell viability and cytotoxicity were first observed using cell counting kit-8 and lactate dehydrogenase assays. The inflammatory injury of the cardiomyocytes was then examined by real time-qPCR (RT-qPCR) and western blot. The oxidative stress of the cardiomyocytes was evaluated using reactive oxygen species assay kit, RT-qPCR, western blot and enzyme activity assay kit. Next, cell apoptosis was detected employing TUNEL and western blot. Finally, RT-qPCR and western blot were performed to investigate the effects of inhibitors of dipeptidyl peptidase-4, including saxagliptin, empagliflozin and linagliptin, on TRAF3IP2. TRAF3IP2 expression was found to be increased in HG-stimulated cardiomyocytes. TRAF3IP2 interference inhibited HG-induced cell viability loss, cytotoxicity, inflammatory response, oxidative stress and apoptosis of the cardiomyocytes. Moreover, saxagliptin, empagliflozin and linagliptin inhibited the expression of TRAF3IP2. TRAF3IP2 interference alleviates HG-induced inflammation and apoptosis of cardiomyocytes. The result suggests that TRAF3IP2 may be a promising therapeutic target in treating diabetic cardiomyopathy.
Insights
Tumor necrosis factor receptor-associated factor 3-interacting protein 2 (TRAF3IP2) promotes inflammation and apoptosis in high glucose-exposed heart cells. Silencing TRAF3IP2 protects against these effects, suggesting it
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Diabetology
Background:
- High glucose (HG) exposure induces cardiomyocyte inflammation and apoptosis, contributing to diabetic cardiomyopathy.
- The precise molecular mechanisms underlying HG-induced cardiac damage require further elucidation.
Purpose of the Study:
- To investigate the role of TRAF3IP2 in high glucose-stimulated cardiomyocyte inflammation and apoptosis.
- To explore the therapeutic potential of targeting TRAF3IP2 in diabetic cardiomyopathy.
Main Methods:
- TRAF3IP2 was silenced in HG-exposed cardiomyocytes using siRNA.
- Cell viability, cytotoxicity, inflammation, oxidative stress, and apoptosis were assessed.
- Quantitative polymerase chain reaction (qPCR), western blot, and TUNEL assays were employed.
- Effects of dipeptidyl peptidase-4 inhibitors (saxagliptin, empagliflozin, linagliptin) on TRAF3IP2 were examined.
Main Results:
- HG significantly increased TRAF3IP2 expression in cardiomyocytes.
- TRAF3IP2 silencing attenuated HG-induced loss of cell viability, cytotoxicity, inflammation, oxidative stress, and apoptosis.
- Saxagliptin, empagliflozin, and linagliptin inhibited TRAF3IP2 expression.
Conclusions:
- TRAF3IP2 plays a critical role in mediating HG-induced cardiomyocyte inflammation and apoptosis.
- TRAF3IP2 interference demonstrates a protective effect against diabetic cardiomyopathy.
- TRAF3IP2 represents a potential therapeutic target for diabetic cardiomyopathy.
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