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Role of Autophagy in Granulocyte-Colony Stimulating Factor Induced Anti-Apoptotic Effects in Diabetic Cardiomyopathy
Guang-Yin Shen1,2, Jeong-Hun Shin1, Yi-Sun Song3
1Division of Cardiology, Department of Internal Medicine, Hanyang University College of Medicine, Seoul, Korea.
Insights
Granulocyte-colony stimulating factor (G-CSF) reduces heart cell death in diabetic cardiomyopathy by enhancing autophagy. This study investigated the role of autophagy in G-CSF's protective effects, revealing a significant association.
Area of Science:
- Cardiovascular Biology
- Cellular Mechanisms
- Metabolic Disease Research
Background:
- Diabetic cardiomyopathy is a significant complication of diabetes.
- Granulocyte-colony stimulating factor (G-CSF) has shown potential in reducing cardiomyocyte apoptosis.
- The precise mechanisms by which G-CSF exerts its anti-apoptotic effects in this context remain unclear.
Purpose of the Study:
- To investigate the role of autophagy in the cardioprotective mechanisms of G-CSF in diabetic cardiomyopathy.
- To determine if G-CSF-mediated reduction in cardiomyocyte apoptosis is linked to the modulation of autophagy pathways.
Main Methods:
- A rat model of diabetic cardiomyopathy was established using a high-fat diet and streptozotocin.
- In vitro studies utilized H9c2 cardiac cells cultured under high glucose conditions.
- Apoptosis and key autophagy-related proteins (Beclin-1, LC3-II/LC3-I, P62) were assessed.
- Autophagic flux was measured using an Autophagy Detection kit.
Main Results:
- G-CSF treatment significantly reduced cardiomyocyte apoptosis in both in vivo and in vitro models.
- G-CSF increased the levels of Beclin-1 and the LC3-II/LC3-I ratio, while decreasing P62.
- These effects were reversed by 3-methyladenine, an autophagy inhibitor, and G-CSF enhanced autophagic flux in vitro.
Conclusions:
- The anti-apoptotic effects of G-CSF in diabetic cardiomyopathy are significantly associated with the upregulation of autophagy.
- G-CSF may represent a therapeutic strategy for diabetic cardiomyopathy by modulating autophagic pathways.
Background:
We previously, reported that granulocyte-colony stimulating factor (G-CSF) reduces cardiomyocyte apoptosis in diabetic cardiomyopathy. However, the underlying mechanisms are not yet fully understood. Therefore, we investigated whether the mechanisms underlying of the anti-apoptotic effects of G-CSF were associated with autophagy using a rat model of diabetic cardiomyopathy.
Methods:
Diabetic cardiomyopathy was induced in rats through a high-fat diet combined with low-dose streptozotocin and the rats were then treated with G-CSF for 5 days. Rat H9c2 cardiac cells were cultured under high glucose conditions as an in vitro model of diabetic cardiomyopathy. The extent of apoptosis and protein levels related to autophagy (Beclin-1, microtubule-binding protein light chain 3 [LC3]-II/LC3-I ratio, and P62) were determined for both models. Autophagy determination was performed using an Autophagy Detection kit.
Results:
G-CSF significantly reduced cardiomyocyte apoptosis in the diabetic myocardium in vivo and led to an increase in Beclin-1 level and the LC3-II/LC3-I ratio, and decreased P62 level. Similarly, G-CSF suppressed apoptosis, increased Beclin-1 level and LC3-II/LC3-I ratio, and decreased P62 level in high glucose-induced H9c2 cardiac cells in vitro. These effects of G-CSF were abrogated by 3-methyladenine, an autophagy inhibitor. In addition, G-CSF significantly increased autophagic flux in vitro.
Conclusion:
Our results suggest that the anti-apoptotic effect of G-CSF might be significantly associated with the up-regulation of autophagy in diabetic cardiomyopathy.
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