Title of article :
Increased susceptibility to amyloid toxicity in familial Alzheimerʹs fibroblasts
Author/Authors :
Cristina Cecchi، نويسنده , , Claudia Fiorillo، نويسنده , , Serena Baglioni، نويسنده , , Anna Pensalfini، نويسنده , , Silvia Bagnoli، نويسنده , , Benedetta Nacmias، نويسنده , , Sandro Sorbi، نويسنده , , Daniele Nosi، نويسنده , , Annalisa Relini، نويسنده , , Gianfranco Liguri، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Much experimental evidence suggests that an imbalance in cellular redox status is a major factor in the pathogenesis of Alzheimerʹs disease (AD). Our previous data showed a marked increase in membrane lipoperoxidation in primary fibroblasts from familial AD (FAD) patients. In the present study, we demonstrate that when oligomeric structures of Aβ 1-40 and Aβ 1-42 are added to the culture media, they accumulate quicker near the plasma membrane, and are internalized faster and mostly in APPV717I fibroblasts than in age-matched healthy cells; this results in an earlier and sharper increase in the production of reactive oxygen species (ROS). Higher ROS production leads in turn to an increase in membrane oxidative-injury and significant impairment of cellular antioxidant capacity, giving rise to apoptotic cascade activation and finally to a necrotic outcome. In contrast, healthy fibroblasts appear more resistant to amyloid oxidative-attack, possibly as a result of their plasma membrane integrity and powerful antioxidant capacity. Our data are consistent with increasing evidence that prefibrillar aggregates, compared to mature fibrils, are likely the more toxic species of the peptides. These findings provide compelling evidence that cells bearing increased membrane lipoperoxidation are more susceptible to aggregate toxicity as a result of their reduced ability to counteract amyloid oligomeric attack.
Keywords :
Lipid peroxidation , Amyloid aggregate toxicity , Familial Alzheimer’s disease , APP and PS-1 genes , Amyloid -peptide , fibroblasts , oxidative stress , antioxidant capacity
Journal title :
Neurobiology of Aging
Journal title :
Neurobiology of Aging