4.7 Article

The Age-Sensitive Efficacy of Calorie Restriction on Mitochondrial Biogenesis and mtDNA Damage in Rat Liver

期刊

出版社

MDPI
DOI: 10.3390/ijms22041665

关键词

rat liver; aging; calorie restriction; mitochondrial biogenesis; mtDNA damage; age-sensitive efficacy of CR

资金

  1. MIUR-FFABR
  2. Istituto Banco di Napoli-Fondazione
  3. UniBa Fondi d'Ateneo

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The study indicates that calorie restriction has certain effects in delaying aging, reducing oxidative damage to mitochondrial DNA and increasing the expression of mitochondrial-related proteins in aged rats. However, it also suggests a potential age-related boundary for the efficacy of calorie restriction after 28 months.
Calorie restriction (CR) is the most efficacious treatment to delay the onset of age-related changes such as mitochondrial dysfunction. However, the sensitivity of mitochondrial markers to CR and the age-related boundaries of CR efficacy are not fully elucidated. We used liver samples from ad libitum-fed (AL) rats divided in: 18-month-old (AL-18), 28-month-old (AL-28), and 32-month-old (AL-32) groups, and from CR-treated (CR) 28-month-old (CR-28) and 32-month-old (CR-32) counterparts to assay the effect of CR on several mitochondrial markers. The age-related decreases in citrate synthase activity, in TFAM, MFN2, and DRP1 protein amounts and in the mtDNA content in the AL-28 group were prevented in CR-28 counterparts. Accordingly, CR reduced oxidative mtDNA damage assessed through the incidence of oxidized purines at specific mtDNA regions in CR-28 animals. These findings support the anti-aging effect of CR up to 28 months. Conversely, the protein amounts of LonP1, Cyt c, OGG1, and APE1 and the 4.8 Kb mtDNA deletion content were not affected in CR-28 rats. The absence of significant differences between the AL-32 values and the CR-32 counterparts suggests an age-related boundary of CR efficacy at this age. However, this only partially curtails the CR benefits in counteracting the generalized aging decline and the related mitochondrial involvement.

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