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The last 5 uploaded publications
An Activity-Based Sensing Approach to Monitor Nanomaterial-Promoted Changes in Labile Metal Pools in Living Systems
Javier Bonet‐Aleta, Aidan T. Pezacki, Miku Oi, José L. Hueso, Jesús Santamaría, Christopher J Chang (2025). An Activity-Based Sensing Approach to Monitor Nanomaterial-Promoted Changes in Labile Metal Pools in Living Systems. , DOI: https://doi.org/10.26434/chemrxiv-2023-0hzxw-v3.
Article8 days agoNanomedicine Targeting Cuproplasia in Cancer: Labile Copper Sequestration Using Polydopamine Particles Blocks Tumor Growth <i>In Vivo</i> through Altering Metabolism and Redox Homeostasis
Javier Bonet‐Aleta, Miguel Encinas‐Giménez, Miku Oi, Aidan T. Pezacki, Víctor Sebastián, Alba De Martino, Ana Martín-Pardillos, Pilar Martín‐Duque, José L. Hueso, Christopher J Chang, Jesús Santamarı́a (2024). Nanomedicine Targeting Cuproplasia in Cancer: Labile Copper Sequestration Using Polydopamine Particles Blocks Tumor Growth <i>In Vivo</i> through Altering Metabolism and Redox Homeostasis. , 16(23), DOI: https://doi.org/10.1021/acsami.4c04336.
Article8 days agoTherapeutic Copper-based Nanoparticles Release Labile Copper(II) and Trigger Cellular Responses in Glutathione and NRF2 Redox Pathways and Metal Homeostasis
Javier Bonet‐Aleta, Aidan T. Pezacki, Miku Oi, José L. Hueso, Jesús Santamaría, Christopher J Chang (2023). Therapeutic Copper-based Nanoparticles Release Labile Copper(II) and Trigger Cellular Responses in Glutathione and NRF2 Redox Pathways and Metal Homeostasis. , DOI: https://doi.org/10.26434/chemrxiv-2023-0hzxw.
Preprint8 days agoAn Activity-Based Sensing Approach to Monitor Nanomaterial-Promoted Changes in Labile Metal Pools in Living Systems
Javier Bonet‐Aleta, Aidan T. Pezacki, Miku Oi, José L. Hueso, Jesús Santamaría, Christopher J Chang (2023). An Activity-Based Sensing Approach to Monitor Nanomaterial-Promoted Changes in Labile Metal Pools in Living Systems. , DOI: https://doi.org/10.26434/chemrxiv-2023-0hzxw-v2.
Preprint8 days agoA nanomedicine approach to targeting cuproplasia in cancer: Labile copper sequestration using polydopamine nanoparticles blocks tumor growth in vivo through altering metabolism and redox homeostasis.
Javier Bonet‐Aleta, Miguel Encinas‐Giménez, Miku Oi, Aidan T. Pezacki, Víctor Sebastián, Alba De Martino, Ana Martín-Pardillos, Pilar Martín‐Duque, José L. Hueso, Christopher J Chang, Jesús Santamarı́a (2023). A nanomedicine approach to targeting cuproplasia in cancer: Labile copper sequestration using polydopamine nanoparticles blocks tumor growth in vivo through altering metabolism and redox homeostasis.. , DOI: https://doi.org/10.26434/chemrxiv-2023-3cvfd.
Preprint8 days ago