Artículo
Ferrostatin-1 mitigates cellular damage in a ferroptosis-like environment in Caenorhabditis elegans
Ferreyra, Melisa Rut; Romero, Verónica Leonor
; Fernandez Hubeid, Lucia Eugenia
; Gonzales Moreno, Candelaria
; Aschner, Michael; Virgolini, Miriam Beatriz




Fecha de publicación:
08/2024
Editorial:
Oxford University Press
Revista:
Toxicological Sciences
ISSN:
1096-6080
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Although iron (Fe) is the most biologically abundant transition metal, it is highly toxic when it accumulates as Fe2+, forming a labile Fe pool and favoring the Fenton reaction. This oxidative scenario leads to a type of caspase-independent programmed cell death, referred to as ferroptosis, where following processes take place: (i) Fe2+ overload, (ii) glutathione peroxidase 4 inactivation, (iii) lipid peroxidation, and (iv) glutathione depletion. The present study sought to evaluate the consequences of Fe2+ administration on ferroptosis induction in Caenorhabditis elegans. We demonstrated higher mortality, increased lipid peroxidation, reduced glutathione peroxidase activity, and morphological damage in dopaminergic neurons upon Fe2+ overload. Pharmacological intervention at the level of lipid peroxidation with ferrostatin-1 (250 μM) mitigated the damage and returned the biochemical parameters to basal levels, revealing the potential of this therapeutical approach. Finally, to assess the relationship between ferroptosis and dopamine in a Parkinsonian background, we evaluated the UA44 worm strain which overexpresses the alpha-synuclein protein in cherry-labeled dopaminergic neurons. We demonstrated that Fe2+ administration reduced lethality associated with similar alterations in biochemical and dopaminergic morphological parameters in wild-type animals. These experiments provide mechanistic-based evidence on the efficacy of a pharmacological approach to mitigate the physiological, biochemical, and morphological consequences of Fe2+ overload. At the same time, they encourage further research on the impact of the combined effects resulting from the genetic background and dopamine signaling in a Parkinsonian phenotype.
Palabras clave:
IRON
,
FERROSTATIN
,
C. ELEGANS
,
FERROPTOSIS
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Licencia
Identificadores
Colecciones
Articulos(IFEC)
Articulos de INST. DE FARMACOLOGIA EXPERIMENTAL DE CORDOBA
Articulos de INST. DE FARMACOLOGIA EXPERIMENTAL DE CORDOBA
Citación
Ferreyra, Melisa Rut; Romero, Verónica Leonor; Fernandez Hubeid, Lucia Eugenia; Gonzales Moreno, Candelaria; Aschner, Michael; et al.; Ferrostatin-1 mitigates cellular damage in a ferroptosis-like environment in Caenorhabditis elegans; Oxford University Press; Toxicological Sciences; 200; 2; 8-2024; 357-368
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