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Endothelial Cell Tube Formation Assay for the In Vitro Study of Angiogenesis
Published on: September 1, 2014
Canagliflozin Inhibits Human Endothelial Cell Proliferation and Tube Formation
Ghazaleh Behnammanesh1, Zane E Durante1, Kelly J Peyton1
1Department of Medical Pharmacology and Physiology, School of Medicine, University of Missouri, Columbia, MO, United States.
Abstract:
Recent clinical trials revealed that sodium-glucose co-transporter 2 (SGLT2) inhibitors significantly reduce cardiovascular events in type 2 diabetic patients, however, canagliflozin increased limb amputations, an effect not seen with other SGLT2 inhibitors. Since endothelial cell (EC) dysfunction promotes diabetes-associated vascular disease and limb ischemia, we hypothesized that canagliflozin, but not other SGLT2 inhibitors, impairs EC proliferation, migration, and angiogenesis. Treatment of human umbilical vein ECs (HUVECs) with clinically relevant concentrations of canagliflozin, but not empagliflozin or dapagliflozin, inhibited cell proliferation. In particular, 10 μM canagliflozin reduced EC proliferation by approximately 45%. The inhibition of EC growth by canagliflozin occurred in the absence of cell death and was associated with diminished DNA synthesis, cell cycle arrest, and a striking decrease in cyclin A expression. Restoration of cyclin A expression via adenoviral-mediated gene transfer partially rescued the proliferative response of HUVECs treated with canagliflozin. A high concentration of canagliflozin (50 μM) modestly inhibited HUVEC migration by 20%, but markedly attenuated their tube formation by 65% and EC sprouting from mouse aortas by 80%. A moderate 20% reduction in HUVEC migration was also observed with a high concentration of empagliflozin (50 μM), while neither empagliflozin nor dapagliflozin affected tube formation by HUVECs. The present study identified canagliflozin as a robust inhibitor of human EC proliferation and tube formation. The anti-proliferative action of canagliflozin occurs in the absence of cell death and is due, in part, to the blockade of cyclin A expression. Notably, these actions are not seen with empagliflozin or dapagliflozin. The ability of canagliflozin to exert these pleiotropic effects on ECs may contribute to the clinical actions of this drug.
Insights
Canagliflozin, a type 2 diabetes drug, inhibits endothelial cell proliferation and tube formation, unlike other SGLT2 inhibitors. This effect, linked to cyclin A, may explain its unique clinical actions.
Area of Science:
- Cardiovascular Research
- Endocrinology
- Pharmacology
Background:
- Sodium-glucose co-transporter 2 (SGLT2) inhibitors reduce cardiovascular events in type 2 diabetes.
- Canagliflozin, an SGLT2 inhibitor, is associated with increased limb amputations, unlike other SGLT2 inhibitors.
- Endothelial cell (EC) dysfunction is implicated in diabetes-associated vascular disease and limb ischemia.
Purpose of the Study:
- To investigate whether canagliflozin, but not other SGLT2 inhibitors, impairs EC proliferation, migration, and angiogenesis.
- To elucidate the cellular mechanisms underlying canagliflozin's effects on ECs.
Main Methods:
- Treatment of human umbilical vein ECs (HUVECs) with canagliflozin, empagliflozin, and dapagliflozin.
- Assessment of EC proliferation, DNA synthesis, cell cycle, and cyclin A expression.
- Evaluation of HUVEC migration, tube formation, and EC sprouting from mouse aortas.
Main Results:
- Canagliflozin, but not empagliflozin or dapagliflozin, inhibited HUVEC proliferation in a dose-dependent manner, without causing cell death.
- Canagliflozin treatment led to cell cycle arrest and decreased cyclin A expression, partially rescued by cyclin A gene transfer.
- Canagliflozin significantly attenuated EC tube formation and aortic sprouting, with a modest effect on migration; empagliflozin showed a minor effect on migration only.
Conclusions:
- Canagliflozin is a potent inhibitor of human EC proliferation and tube formation, acting partly by reducing cyclin A expression.
- These inhibitory effects on ECs are specific to canagliflozin and not observed with empagliflozin or dapagliflozin.
- The distinct pleiotropic effects of canagliflozin on ECs may contribute to its unique clinical profile, including limb amputation risk.
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