Title of article :
Reversal of a hallmark of brain ageing: lipofuscin accumulation
Author/Authors :
D. B. Fonseca، نويسنده , , M. R. J. Sheehy، نويسنده , , N. Blackman، نويسنده , , P. M. J. Shelton، نويسنده , , A. E. Prior، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
8
From page :
69
To page :
76
Abstract :
The prospect of removing cellular deposits of lipofuscin is of considerable interest because they may contribute to age related functional decline and disease. Here, we use a decapod crustacean model to circumvent a number of problems inherent in previous studies on lipofuscin loss. We employ (a) validated lipofuscin quantification methods, (b) an in vivo context, (c) essentially natural environmental conditions and (d) a situation without accelerated production of residual material or (e) application of pharmacological compounds. We use a novel CNS biopsy technique that produces both an anti-ageing effect and also permits longitudinal sampling of individuals, thus (f) avoiding conventional purely cross-sectional population data that may suffer from selective mortality biases. We quantitatively demonstrate that lipofuscin, accrued through normal ageing, can be lost from neural tissue. The mechanism of loss probably involves exocytosis and possibly blood transport. If non-disruptive ways to accelerate lipofuscin removal can be found, our results suggest that therapeutic reversal of this most universal manifestation of cellular ageing may be possible.
Keywords :
Advanced glycosylation end product , Longitudinal sampling , caloric restriction , CNS biopsy , degradability , antioxidant , Deleteriousness , free radical , Carbonyl , Glial uptake , Hormesis , Blood transport , Insulin receptor gene , In Vivo , Late-life mortality decline , Exocytosis , Anti-ageing
Journal title :
Neurobiology of Aging
Serial Year :
2005
Journal title :
Neurobiology of Aging
Record number :
820559
Link To Document :
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