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In Vivo Imaging and Quantitation of the Host Angiogenic Response in Zebrafish Tumor Xenografts
Published on: August 14, 2019
Distinctive effects of SGLT2 inhibitors on angiogenesis in zebrafish embryos
Roope Huttunen1, Annele Sainio1, Anja Hjelt1
1Institute of Biomedicine, University of Turku, Kiinamyllynkatu 10, 20520 Turku, Finland.
Abstract:
Sodium glucose cotransporter 2 (SGLT2) inhibitor canagliflozin has been found to increase the risk for lower-limb amputations in type 2 diabetics about two-fold. Conversely, empagliflozin and dapagliflozin do not display a similar effect. A question arises whether the increased risk for minor amputations is associated only with canagliflozin or whether it is a class effect of SGLT2 inhibitors. Defective angiogenesis has a role in amputations. We compared the effects of empagliflozin, dapagliflozin and canagliflozin on angiogenesis in vivo using zebrafish model, and in vitro using human umbilical vein endothelial cells (HUVECs). The effects of SGLT2 inhibitors on the formation of intersegmental blood vessels (ISVs) of the zebrafish embryos were clarified. Additionally, transcriptome analysis was performed to explore whether putative angiogenesis-associated genes are differentially regulated by SGLT2 inhibitors. The effects of SGLT2 inhibitors on the viability of HUVECs were examined. We noticed that especially empagliflozin and also dapagliflozin significantly accelerated the formation of ISVs of zebrafish embryos. In contrast, canagliflozin was not able to stimulate ISV formation, and at high concentration, it was lethal to the embryos. Transcriptome analysis demonstrated that in empagliflozin-treated embryos compared to canagliflozin-treated embryos seven genes previously shown to contribute to angiogenesis were upregulated, and four downregulated. Canagliflozin at high concentrations, but not empagliflozin or dapagliflozin, decreased the viability of HUVECs and disrupted their capability to sprout. SGLT2 inhibitors differed in their effects on angiogenic processes in zebrafish embryos and on the viability of HUVECs suggesting that the risk of SGLT2 inhibitors for peripheral amputations likely differs.
Insights
Sodium glucose cotransporter 2 (SGLT2) inhibitors like canagliflozin may increase amputation risk. However, empagliflozin and dapagliflozin show different effects on blood vessel formation, suggesting varied risks for peripheral amputations among SGLT2 inhibitors.
Area of Science:
- Cardiovascular Research
- Endocrinology
- Angiogenesis Studies
Background:
- Sodium glucose cotransporter 2 (SGLT2) inhibitors are used for type 2 diabetes.
- Canagliflozin, an SGLT2 inhibitor, is linked to a two-fold increase in lower-limb amputation risk.
- Empagliflozin and dapagliflozin do not show a similar amputation risk, raising questions about class effects.
Purpose of the Study:
- To investigate whether the increased risk for amputations associated with canagliflozin is a class effect of SGLT2 inhibitors.
- To compare the effects of empagliflozin, dapagliflozin, and canagliflozin on angiogenesis.
- To explore the impact of SGLT2 inhibitors on endothelial cell viability and blood vessel formation.
Main Methods:
- In vivo studies using zebrafish embryos to assess intersegmental blood vessel (ISV) formation.
- In vitro studies using human umbilical vein endothelial cells (HUVECs) to examine cell viability and sprouting.
- Transcriptome analysis to identify differentially regulated angiogenesis-associated genes.
Main Results:
- Empagliflozin and dapagliflozin significantly accelerated ISV formation in zebrafish embryos.
- Canagliflozin did not stimulate ISV formation and was lethal at high concentrations.
- Canagliflozin decreased HUVEC viability and sprouting, unlike empagliflozin and dapagliflozin.
Conclusions:
- SGLT2 inhibitors exhibit differential effects on angiogenesis and endothelial cell function.
- Canagliflozin's negative impact on angiogenesis and HUVEC viability may explain its association with increased amputation risk.
- The risk for peripheral amputations likely varies among SGLT2 inhibitors.
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