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Canagliflozin mitigates carfilzomib-induced endothelial apoptosis via an AMPK-dependent pathway
Mohamed S Dabour1, Ibrahim Y Abdelgawad2, Marianne K O Grant2
1Department of Experimental and Clinical Pharmacology, College of Pharmacy, University of Minnesota, Minneapolis, MN 55455, USA; Department of Clinical Pharmacy, Faculty of Pharmacy, Tanta University, 31111 Tanta, Egypt.
Abstract:
Carfilzomib (CFZ) is a proteasome inhibitor approved for relapsed/refractory multiple myeloma (MM) but its clinical use is limited by cardiovascular toxicity. The mechanisms of CFZ-induced cardiovascular toxicity are not fully understood but endothelial dysfunction may be a common denominator. Here, we first characterized the direct toxic effects of CFZ on endothelial cells (HUVECs and EA.hy926 cells) and tested whether SGLT2 inhibitors, known to have cardioprotective effects, can protect against CFZ-induced toxicity. To determine the chemotherapeutic effect of CFZ in the presence of SGLT2 inhibitors, MM and lymphoma cells were treated with CFZ with or without canagliflozin. CFZ decreased cell viability and induced apoptotic cell death in endothelial cells in a concentration-dependent manner. CFZ also upregulated ICAM-1 and VCAM-1 and downregulated VEGFR-2. These effects were associated with the activation of Akt and MAPK pathways, inhibition of p70s6k, and downregulation of AMPK. Canagliflozin, but not empagliflozin or dapagliflozin, protected endothelial cells from CFZ-induced apoptosis. Mechanistically, canagliflozin abrogated CFZ-induced JNK activation and AMPK inhibition. AICAR (an AMPK activator) protected from CFZ-induced apoptosis, and compound C (an AMPK inhibitor) abrogated the protective effect of canagliflozin, strongly suggesting that AMPK mediates these effects. Canagliflozin did not interfere with the anticancer effect of CFZ in cancer cells. In conclusion, our findings demonstrate for the first time the direct toxic effects of CFZ in endothelial cells and the associated signaling changes. Canagliflozin abrogated the apoptotic effects of CFZ in endothelial cells in an AMPK-dependent mechanism, without interfering with its cytotoxicity in cancer cells.
Insights
Carfilzomib causes endothelial cell damage, but canagliflozin protects these cells via AMPK activation. This protection occurs without reducing carfilzomib
Area of Science:
- Cardiovascular Pharmacology
- Oncology
- Cell Biology
Background:
- Carfilzomib (CFZ) is a proteasome inhibitor for multiple myeloma (MM), but its use is limited by cardiovascular toxicity.
- Endothelial dysfunction is a potential mechanism underlying CFZ-induced cardiotoxicity.
Purpose of the Study:
- To investigate the direct toxic effects of CFZ on endothelial cells.
- To evaluate the protective potential of SGLT2 inhibitors against CFZ-induced endothelial toxicity.
- To determine if SGLT2 inhibitors interfere with the chemotherapeutic efficacy of CFZ.
Main Methods:
- Assessed CFZ effects on endothelial cell viability, apoptosis, and marker expression (ICAM-1, VCAM-1, VEGFR-2).
- Examined signaling pathways (Akt, MAPK, p70s6k, AMPK, JNK) in response to CFZ and SGLT2 inhibitors.
- Tested the impact of canagliflozin on CFZ cytotoxicity in MM and lymphoma cells.
Main Results:
- CFZ induced concentration-dependent apoptosis and altered marker expression in endothelial cells, linked to Akt/MAPK pathway activation and AMPK inhibition.
- Canagliflozin, but not empagliflozin or dapagliflozin, protected endothelial cells from CFZ-induced apoptosis.
- Canagliflozin's protective effect was mediated by abrogating JNK activation and restoring AMPK activity, confirmed using AICAR and compound C.
- Canagliflozin did not impair CFZ's anticancer effects on MM and lymphoma cells.
Conclusions:
- CFZ exhibits direct toxicity to endothelial cells, involving specific signaling pathway alterations.
- Canagliflozin offers endothelial protection against CFZ toxicity through an AMPK-dependent mechanism.
- Canagliflozin provides a potential strategy to mitigate CFZ-induced cardiotoxicity without compromising its efficacy in hematological malignancies.
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