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http://hdl.handle.net/10362/119581| Título: | The Activation of Endothelial Cells Relies on a Ferroptosis-Like Mechanism |
| Autor: | Lopes-Coelho, Filipa Martins, Filipa Hipólito, Ana Mendes, Cindy Sequeira, Catarina O. Pires, Rita F. Almeida, António M. Bonifácio, Vasco D.B. SA, Pereira Serpa, Jacinta |
| Palavras-chave: | angiogenesis endothelial cell hyperactivation ferroptosis lipid peroxidation oxidative stress polyurea dendrimers propranolol tumor vasculature stabilizers Oncology Cancer Research SDG 3 - Good Health and Well-being |
| Data: | 10-Mai-2021 |
| Resumo: | The activation of endothelial cells (ECs) is a crucial step on the road map of tumor angiogenesis and expanding evidence indicates that a pro-oxidant tumor microenvironment, conditioned by cancer metabolic rewiring, is a relevant controller of this process. Herein, we investigated the contribution of oxidative stress-induced ferroptosis to ECs activation. Moreover, we also addressed the anti-angiogenic effect of Propranolol. We observed that a ferroptosis-like mechanism, induced by xCT inhibition with Erastin, at a non-lethal level, promoted features of ECs activation, such as proliferation, migration and vessel-like structures formation, concomitantly with the depletion of reduced glutathione (GSH) and increased levels of oxidative stress and lipid peroxides. Additionally, this ferroptosis-like mechanism promoted vascular endothelial cadherin (VE-cadherin) junctional gaps and potentiated cancer cell adhesion to ECs and transendothelial migration. Propranolol was able to revert Erastin-dependent activation of ECs and increased levels of hydrogen sulfide (H2S) underlie the mechanism of action of Propranolol. Furthermore, we tested a dual-effect therapy by promoting ECs stability with Propranolol and boosting oxidative stress to induce cancer cell death with a nanoformulation comprising selenium-containing chrysin (SeChry) encapsulated in a fourth generation polyurea dendrimer (SeChry@PUREG4). Our data showed that novel developments in cancer treatment may rely on multi-targeting strategies focusing on nanoformulations for a safer induction of cancer cell death, taking advantage of tumor vasculature stabilization. |
| Descrição: | Funding: The project was funded by IPOLFG EPE and by iNOVA4Health (UID/Multi/04462/2019) a program financially supported by Fundação para a Ciência e Tecnologia (FCT)/Ministério da Educação e Ciência, through national funds. We also acknowledge funding from FCT-MCTES through the project DREAM—PTDC/MEC-ONC/29327/2017. FL-C PhD fellowship was funded by FCT (PD/BD/128337/2017). |
| Peer review: | yes |
| URI: | http://hdl.handle.net/10362/119581 |
| DOI: | https://doi.org/10.3389/fonc.2021.656229 |
| ISSN: | 2234-943X |
| Aparece nas colecções: | NMS: CEDOC - Artigos em revista internacional com arbitragem científica |
Ficheiros deste registo:
| Ficheiro | Descrição | Tamanho | Formato | |
|---|---|---|---|---|
| fonc_11_656229.pdf | 14,08 MB | Adobe PDF | Ver/Abrir |
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