Joaquim Ros Salvador
Grado: Doctor/a
973 702 275
joaquim.ros(ELIMINAR)@udl.cat
ResearcherID: http://www.researcherid.com/rid/ABG-7487-2020
Publicaciones
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Pazos-Gil, M; Medina-Carbonero, M; Sanz-Alcázar, A; Portillo-Carrasquer, M; Oliveira-Jorge, L; Hernández, G; Sánchez, M; Delaspre, F; Cabiscol, E; Ros, J; Tamarit, J
Pathological frataxin deficiency in mice causes tissue-specific alterations in iron homeostasis
iScience 29 -. .
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Mengual, R; Bobo-Jiménez, V; Rodríguez, C; Lapresa, R; García-Rodríguez, D; Jiménez-Blasco, D; Cabiscol, E; Ros, J; Delgado-Esteban, M; Bolaños, JP; Almeida, A
Endogenous mitochondrial hydrogen peroxide regulates neurogenesis during cortical development
Redox Biology 88 103940-103940. .
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Sanz-Alcázar A; Britti E; Delaspre F; Medina-Carbonero M; Pazos-Gil M; Tamarit J; Ros J; Cabiscol E
Correction: Mitochondrial impairment, decreased Sirtuin activity and protein acetylation in dorsal root ganglia in Friedreich ataxia models.
Cellular And Molecular Life Sciences 82 428-428. .
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Portillo-Carrasquer M; Sanz-Alcázar A; Delaspre F; Pazos-Gil M; Oliveira-Jorge L; Vergara C; Rodríguez-Pascau L; Pizcueta P; Tamarit J; Ros J; Cabiscol E
Leriglitazone improves iron homeostasis and ferroptotic markers in frataxin-deficient dorsal root ganglia neurons.
BIOMEDICINE & PHARMACOTHERAPY 192 118553-118553. .
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Sanz-Alcázar A; Portillo-Carrasquer M; Delaspre F; Pazos-Gil M; Tamarit J; Ros J; Cabiscol E
Corrigendum to "Deciphering the ferroptosis pathways in dorsal root ganglia of Friedreich ataxia models. The role of LKB1/AMPK, KEAP1, and GSK3ß in the impairment of the NRF2 response" [Redox Biol. 76 (2024) 103339].
Redox Biology 82 103583-103583. .
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Sanz-Alcázar, A; Portillo-Carrasquer, M; Delaspre, F; Pazos-Gil, M; Tamarit, J; Ros, J; Cabiscol, E
Deciphering the ferroptosis pathways in dorsal root ganglia of Friedreich ataxia models. The role of LKB1/AMPK, KEAP1, and GSK3ß in the impairment of the NRF2 response
Redox Biology 76 103339-103339. .
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Alemany-Perna B; Tamarit J; Cabiscol E; Ros J
Reply to: "Calcitriol in Friedreich Ataxia".
MOVEMENT DISORDERS 39 1654-1655. .
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Alemany-Perna, B; Tamarit, J; Cabiscol, E; Delaspre, F; Miguela, A; Huertas-Pons, JM; Quiroga-Varela, A; Ruiz, MM; Dominguez, DL; Torrenta, L; Genis, D; Ros, J
Calcitriol Treatment Is Safe and Increases Frataxin Levels in Friedreich Ataxia Patients
MOVEMENT DISORDERS 39 1099-1108. .
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Sanz-Alcázar A; Britti E; Delaspre F; Medina-Carbonero M; Pazos-Gil M; Tamarit J; Ros J; Cabiscol E
Mitochondrial impairment, decreased sirtuin activity and protein acetylation in dorsal root ganglia in Friedreich Ataxia models.
Cellular And Molecular Life Sciences 81 12-12. .
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Medina-Carbonero, M; Sanz-Alcázar, A; Britti, E; Delaspre, F; Cabiscol, E; Ros, J; Tamarit, J
Mice harboring the FXN I151F pathological point mutation present decreased frataxin levels, a Friedreich ataxia-like phenotype, and mitochondrial alterations.
Cellular And Molecular Life Sciences 79 74-74. .
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Tamarit J; Britti E; Delaspre F; Medina-Carbonero M; Sanz-Alcázar A; Cabiscol E; Ros J
Mitochondrial iron and calcium homeostasis in Friedreich ataxia.
IUBMB LIFE 73 543-553. .
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Britti E; Delaspre F; Sanz A; Medina-Carbonero M; Llovera M; Purroy R; Mincheva-Tasheva S; Tamarit J; Ros J
Calcitriol increases frataxin levels and restores mitochondrial function in cell models of Friedreich Ataxia.
BIOCHEMICAL JOURNAL 478 1-20. .
Proyectos
- Análisis proteómico y funcional de los efectos del estrés oxidativo y la desregulación de la homeostasis del hierro en modelos celulares de ataxia de Friedreich
- Papel funcional del estrés oxidativo y nitrosativo en grandes sistemas biológicos.
- Estrés oxidativo, envejecimiento celular, homeostasis del hierro y patologías relacionadas en S. cerevisae como modelo celular