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Sixty years old is the breakpoint of human frontal cortex aging.

Free radical biology & medicine (2016-12-17)
Rosanna Cabré, Alba Naudí, Mayelin Dominguez-Gonzalez, Victòria Ayala, Mariona Jové, Natalia Mota-Martorell, Gerard Piñol-Ripoll, Maria Pilar Gil-Villar, Montserrat Rué, Manuel Portero-Otín, Isidre Ferrer, Reinald Pamplona
RESUMEN

Human brain aging is the physiological process which underlies as cause of cognitive decline in the elderly and the main risk factor for neurodegenerative diseases such as Alzheimer's disease. Human neurons are functional throughout a healthy adult lifespan, yet the mechanisms that maintain function and protect against neurodegenerative processes during aging are unknown. Here we show that protein oxidative and glycoxidative damage significantly increases during human brain aging, with a breakpoint at 60 years old. This trajectory is coincident with a decrease in the content of the mitochondrial respiratory chain complex I-IV. We suggest that the deterioration in oxidative stress homeostasis during aging induces an adaptive response of stress resistance mechanisms based on the sustained expression of REST, and increased or decreased expression of Akt and mTOR, respectively, over the adult lifespan in order to preserve cell neural survival and function.

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Seroalbúmina bovina, cold ethanol fraction, pH 5.2, ≥96%
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Anti-Apoptosis-Inducing Factor antibody produced in rabbit, IgG fraction of antiserum, buffered aqueous solution