Biochemical pharmacology

Exendin-4 protects the heart from high sugar damage to cell energy systems, possibly through GLP-1 receptors and mTOR signaling

Updated

Abstract

Treatment with either exendin-4 or rapamycin significantly inhibited high glucose-induced mitochondrial damage in cardiomyoblasts.

  • Mitochondrial dysfunction is linked to cellular damage and apoptosis in cardiomyocytes due to hyperglycemia.
  • High glucose conditions caused impaired ATP production and a decrease in oxidative defense markers like catalase and SOD2.
  • Pro-apoptotic markers such as Bax increased, while survival markers like Bcl-2 and p-Akt decreased under high glucose stress.
  • Autophagic markers were reduced, indicating disrupted autophagy regulators in a hyperglycemic environment.
  • Co-treatment with exendin-4 and rapamycin fully reversed mitochondrial abnormalities caused by high glucose.
  • The GLP-1 receptor is suggested to regulate mTOR, impacting mitochondrial health under hyperglycemic conditions.

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Full Text

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Funding

Competing interests

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
PubMed

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