粒体自噬
线粒体
细胞生物学
氧化应激
神经科学
生物
自噬
遗传学
细胞凋亡
内分泌学
作者
Luan Pereira Diniz,Ana Paula Bérgamo Araújo,Clara Fernandes Carvalho,Isadora Matias,Lívia de Sá Hayashide,Maria Júlia Marques,Bruna Varanda Pessoa,Cherley Borba Vieira de Andrade,Gabriele Vargas,Daniela Dias Queiroz,Jorge José de Carvalho,Antônio Galina,Flávia Carvalho Alcântara Gomes
标识
DOI:10.1016/j.bbadis.2024.167470
摘要
Aging disrupts brain function, leading to cognitive decline and neurodegenerative diseases. Senescent astrocytes, a hallmark of aging, contribute to this process through unknown mechanisms. This study investigates how senescence impacts astrocytic mitochondrial dynamics, which are critical for brain health. Our research, conducted using aged mouse brains, represents the first evidence of morphologically damaged mitochondria in astrocytes, along with functional alterations in mitochondrial respiration. In vitro experiments revealed that senescent astrocytes exhibit an increase in mitochondrial fragmentation and impaired mitophagy. Concurrently, there was an upregulation of mitochondrial biogenesis, indicating a compensatory response to mitochondrial damage. Importantly, these senescent astrocytes were more susceptible to mitochondrial stress, a vulnerability reversed by rapamycin treatment. These findings suggest a potential link between senescence, impaired mitochondrial quality control, and increased susceptibility to mitochondrial stress in astrocytes. Overall, our study highlights the importance of addressing mitochondrial dysfunction and senescence-related changes in astrocytes as a promising approach for developing therapies to counter age-related neurodegeneration and improve brain health.
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