Bonelli Blasco, Joaquin DanielOrtega Forte, EnriqueRovira, AnnaBosch Marimon, ManelTorres, OriolCuscó Marigó, CristinaRocas Sorolla, JosepRuiz, JoséMarchán Sancho, Vicente2022-10-252022-10-252022-06-131525-7797https://hdl.handle.net/2445/190222Integration of photosensitizers (PSs) within nanoscale delivery systems offers great potential for overcoming some of the 'Achiles' heels' of photodynamic therapy (PDT). Herein, we have encapsulated a mitochondria-targeted coumarin PS into amphoteric polyurethane-polyurea hybrid nanocapsules (NCs) with the aim of developing novel nanoPDT agents. The synthesis of coumarin-loaded NCs involved the nanoemulsification of a suitable prepolymer in the presence of a PS without needing external surfactants, and the resulting small nanoparticles showed improved photostability compared with the free compound. Nanoencapsulation reduced dark cytotoxicity of the coumarin PS and significantly improved in vitro photoactivity with red light toward cancer cells, which resulted in higher phototherapeutic indexes compared to free PS. Importantly, this nanoformulation impaired tumoral growth of clinically relevant three-dimensional multicellular tumor spheroids. Mitochondrial photodamage along with reactive oxygen species (ROS) photogeneration was found to trigger autophagy and apoptotic cell death of cancer cells.14 p.application/pdfengcc-by (c) Bonelli, Joaquín et al., 2022http://creativecommons.org/licenses/by/3.0/es/CumarinesPolímersTumorsCoumarinsPolymersTumorsImproving Photodynamic Therapy Anticancer Activity of a Mitochondria-Targeted Coumarin Photosensitizer Using a Polyurethane−Polyurea Hybrid Nanocarrierinfo:eu-repo/semantics/article7246942022-10-25info:eu-repo/semantics/openAccess