Dapagliflozin Improves Angiogenesis after Hindlimb Ischemia through the PI3K-Akt-eNOS Pathway

Li Han1, Guoxin Ye1, Wenjing Su1

  • 1Department of Geriatrics, Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Kongjiang Road 1665, Shanghai 200092, China.

Biomolecules
|May 24, 2024
PubMed

Insights

Dapagliflozin promotes angiogenesis in peripheral arterial disease by activating the PI3K-Akt-eNOS pathway. This enhances blood flow and capillary density, offering a new therapeutic approach for ischemic conditions.

Area of Science:

  • Vascular biology
  • Pharmacology
  • Regenerative medicine

Background:

  • Sodium glucose cotransporter 2 (SGLT2) inhibitors show vascular benefits, but their effect on angiogenesis in peripheral arterial disease (PAD) is unclear.
  • Peripheral arterial disease impairs blood flow, leading to critical limb ischemia and increased cardiovascular risk.

Purpose of the Study:

  • To investigate the effect of dapagliflozin on angiogenesis following hindlimb ischemia.
  • To elucidate the underlying molecular mechanisms of dapagliflozin's action on post-ischemic angiogenesis.

Main Methods:

  • A rat model of hindlimb ischemia was established, with treatment groups receiving dapagliflozin or a control solution.
  • Blood perfusion and capillary density were assessed using laser Doppler imaging and immunohistochemistry.
  • Phosphoproteomic analysis identified key signaling pathways, which were further validated in human umbilical vein endothelial cells (HUVECs).

Main Results:

  • Dapagliflozin treatment significantly improved hindlimb blood perfusion and increased capillary density compared to controls.
  • Phosphoproteomic analysis revealed the PI3K-Akt-eNOS signaling pathway as crucial for dapagliflozin's pro-angiogenic effects.
  • In vitro studies confirmed that dapagliflozin enhances HUVEC function and upregulates key angiogenic factors (p-Akt, p-eNOS, VEGFA).

Conclusions:

  • Dapagliflozin promotes angiogenesis after hindlimb ischemia, potentially by activating the PI3K-Akt-eNOS signaling pathway.
  • These findings suggest dapagliflozin as a potential therapeutic agent for peripheral arterial disease.
  • The study provides a theoretical basis for using dapagliflozin to treat ischemic vascular conditions.

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