Evento
Wired cholesterol metabolism is related with ferroptosis leading to parkisnonisms-like disorders
Maniscalchi Velásquez, Athina del Valle; Benzi Juncos, Oriana Nicole
; Conde, Melisa Ailén
; Fermento, María Eugenia
; Funk, Melania Iara
; Curino, Alejandro Carlos
; Facchinetti, N. P.; Alza, Natalia Paola
; Salvador, Gabriela Alejandra
Tipo del evento:
Reunión
Nombre del evento:
LXVII Reunión Anual de la Sociedad Argentina de Investigación Clínica; LXX Reunión Anual de La Sociedad Argentina de Inmunología; 3ER Congreso Franco-Argentino De Inmunología y Reunión Anual 2022 de La Sociedad Argentina De Fisiología
Fecha del evento:
16/11/2022
Institución Organizadora:
Sociedad Argentina de Investigación Clínica;
Sociedad Argentina de Inmunología;
Sociedad Argentina De Fisiología;
Título de la revista:
Medicina (Buenos Aires)
Editorial:
Fundación Revista Medicina
ISSN:
0025-7680
e-ISSN:
1669-9106
Idioma:
Inglés
Clasificación temática:
Resumen
Ferroptosis is a novel type of oxidative and non-apoptotic cell death associated with neurodegenerative disorders. Previously, we have established an in vivo model of iron overload (C57BL/6 mice treated with iron-sucrose) that triggers ferroptosis in the nervous system related with markers of neurodegeneration. Our aim was to characterize lipid metabolism alterations in mice midbrain of this experimental model. We found that midbrain lipid content was altered by iron overload. Cholesterol and diacylglycerol levels were increased (p<0.001), while their acylated forms diminished (p<0.001). Neutral lipid changes were associated with elevated hydrolysis catalyzed by mono- di- and triacylglycerol lipases (p<0.001). A reduced activity of acylation enzymes, such as acyl-CoA, lysophospholipid and monoacylglycerol acyltransferases was also observed (p<0.001). Furthermore, SREBP-1 and filipin staining was increased by iron treatment (p<0.05). Besides motor skill impairment (p<0.001), iron-treated mice presented a decreased recognition memory (p<0.001). To ascertain the role of neuronal-glia communication in cholesterol metabolism, we exposed N27 dopaminergic neurons and C6 astrocytes to iron -overload. Astrocytes showed the highest levels of cholesterol accumulation upon treatment (p<0.05). Our findings indicate that impaired cholesterol and triacylglycerol metabolism are biomarkers of midbrain neurodegeneration triggered by ferroptosis.
Palabras clave:
ferroptosis
,
neurodegeneration
,
parkinsonism
,
cholesterol
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Identificadores
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Eventos(INIBIBB)
Eventos de INST.DE INVEST.BIOQUIMICAS BAHIA BLANCA (I)
Eventos de INST.DE INVEST.BIOQUIMICAS BAHIA BLANCA (I)
Citación
Wired cholesterol metabolism is related with ferroptosis leading to parkisnonisms-like disorders; LXVII Reunión Anual de la Sociedad Argentina de Investigación Clínica; LXX Reunión Anual de La Sociedad Argentina de Inmunología; 3ER Congreso Franco-Argentino De Inmunología y Reunión Anual 2022 de La Sociedad Argentina De Fisiología; Mar del Plata; Argentina; 2022; 226-227
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