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June 1, 2018Physiological Reports172 citationsOpen Access

Empagliflozin normalizes the size and number of mitochondria and prevents reduction in mitochondrial size after myocardial infarction in diabetic hearts

MMMasashi MizunoAKAtsushi KunoTYToshiyuki Yano

Key Result

Empagliflozin normalized the size and number of mitochondria and prevented the diabetes-induced excessive reduction in mitochondrial size after myocardial infarction in diabetic rats.

Structured PICO

Does empagliflozin prevent adverse mitochondrial ultrastructural changes in the noninfarcted region of diabetic hearts after myocardial infarction?

P
Population
67 male LETO and OLETF rats (a model of type 2 diabetes), aged 25-30 weeks, subjected to sham operation or permanent coronary artery ligation and followed for 12 hours.
I
Intervention
Empagliflozin 10 mg/kg per day
C
Comparator
Untreated OLETF rats, LETO rats, and sham-operated controls
O
Outcome
Ultrastructure of cardiomyocytes (mitochondrial size and number) in the noninfarcted region 12 hours post-MIsurrogate

Empagliflozin prevents diabetes-induced excessive reduction in mitochondrial size and restores autophagy in the noninfarcted myocardium after MI in a rat model, providing mechanistic insight into its cardioprotective effects.

Limitations

  • Did not directly determine mitochondrial functions, leaving the relationship between morphological changes and function unclear.
  • Examined the effect of empagliflozin on cardiomyocyte ultrastructure only at a very early phase after MI (12 h).
  • Long-term effect of empagliflozin on mitochondria in the noninfarcted region after MI was not examined.

Abstract

To explore mechanisms by which SGLT2 inhibitors protect diabetic hearts from heart failure, we examined the effect of empagliflozin (Empa) on the ultrastructure of cardiomyocytes in the noninfarcted region of the diabetic heart after myocardial infarction (MI). OLETF, a rat model of type 2 diabetes, and its nondiabetic control, LETO, received a sham operation or left coronary artery ligation 12 h before tissue sampling. Tissues were sampled from the posterior ventricle (i.e., the remote noninfarcted region in rats with MI). The number of mitochondria was larger and small mitochondria were more prevalent in OLETF than in LETO. Fis1 expression level was higher in OLETF than in LETO, while phospho-Ser637-Drp1, total Drp1, Mfn1/2, and OPA1 levels were comparable. MI further reduced the size of mitochondria with increased Drp1-Ser616 phosphorylation in OLETF. The number of autophagic vacuoles was unchanged after MI in LETO but was decreased in OLETF. Lipid droplets in cardiomyocytes and tissue triglycerides were increased in OLETF. Empa administration (10 mg/kg per day) reduced blood glucose and triglycerides and paradoxically increased lipid droplets in cardiomyocytes in OLETF. Empa suppressed Fis1 upregulation, increased Bnip3 expression, and prevented reduction in both mitochondrial size and autophagic vacuole number after MI in OLETF. Together with the results of our parallel study showing upregulation of SOD2 and catalase by Empa, the results indicate that Empa normalizes the size and number of mitochondria in diabetic hearts and that diabetes-induced excessive reduction in mitochondrial size after MI was prevented by Empa via suppression of ROS and restoration of autophagy.

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Cite This Study

Mizuno et al. (2018) studied Type 2 diabetes mellitus and myocardial infarction (animal model) (n=67). Empagliflozin vs. Vehicle was evaluated on Mitochondrial size and number in the noninfarcted region of the heart after MI. Empagliflozin normalized the size and number of mitochondria and prevented the diabetes-induced excessive reduction in mitochondrial size after myocardial infarction in diabetic rats.

synapsesocial.com/papers/6a78478f98f24dbf64bdc1a4https://doi.org/10.14814/phy2.13741
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