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Published on: March 23, 2011
Adrenomedullin Contributes to Age-Related Memory Loss in Mice and Is Elevated in Aging Human Brains
Ignacio M Larrayoz1, Hilda Ferrero2, Eva Martisova2
1Oncology Area, Center for Biomedical Research of La Rioja (CIBIR), Logroño, Spain.
Abstract:
Memory decline is common in elderly individuals and is the hallmark of Alzheimer's disease (AD). Memory failure follows the loss of synaptic contacts in the cerebral cortex and hippocampus, caused in part by cytoskeleton disruption. Adrenomedullin (AM) and its gene-related peptide, proadrenomedullin N-terminal 20 peptide (PAMP), are microtubule-associated proteins (MAP) whose expression has been identified as a potential biomarker for predicting progression from predementia to clinical AD. Here we analyze the connection between AM levels and memory preservation. Mice lacking neuronal AM and PAMP (knockout, KO) and their wild type (WT) littermates were subjected, at different ages, to the novel object recognition test and the contextual fear conditioned test. Aged KO mice have significantly better retention memory than their WT counterparts. This feature was more prominent in females than in males. Prefrontal cortex and hippocampus samples from these animals were subjected to Western blotting for phospho-Tau and acetylated tubulin. Aged female KO mice had significantly less accumulation of phospho-Tau than their WT littermates. In addition, protein extracts from the frontal cortex of non-demented mature (65.10 ± 3.86 years) and aged (77.14 ± 2.77 years) human donors were analyzed by Western blotting. Aged human brains had significantly higher levels of AM and lower levels of acetylated tubulin than younger donors. These observations suggest that drugs or interventions that reduce AM/PAMP expression may constitute a new avenue to prevent memory decline during normal aging and in patients suffering moderate AD in high risk of rapid cognitive decline.
Insights
Reducing adrenomedullin (AM) and proadrenomedullin N-terminal 20 peptide (PAMP) levels may prevent memory decline in aging and Alzheimer's disease (AD). Lower AM/PAMP improved memory and reduced tau pathology in mice.
Area of Science:
- Neuroscience
- Molecular Biology
- Gerontology
Background:
- Memory decline is a primary symptom of aging and Alzheimer's disease (AD).
- Synaptic loss in the brain's cortex and hippocampus, partly due to cytoskeleton disruption, underlies memory failure.
- Adrenomedullin (AM) and proadrenomedullin N-terminal 20 peptide (PAMP) are microtubule-associated proteins linked to AD progression.
Purpose of the Study:
- To investigate the relationship between AM/PAMP levels and memory preservation.
- To explore the potential of targeting AM/PAMP for preventing cognitive decline.
Main Methods:
- Utilized knockout (KO) mice lacking neuronal AM and PAMP, alongside wild-type (WT) littermates.
- Assessed memory function using novel object recognition and contextual fear conditioning tests.
- Analyzed brain tissue (prefrontal cortex, hippocampus) for phospho-Tau and acetylated tubulin via Western blotting.
Main Results:
- Aged KO mice exhibited significantly enhanced memory retention compared to WT mice, particularly females.
- Female KO mice showed reduced phospho-Tau accumulation in the brain.
- Aged human brains displayed higher AM levels and lower acetylated tubulin than younger brains.
Conclusions:
- Reduced AM/PAMP expression correlates with improved memory and reduced neurodegenerative markers.
- Targeting AM/PAMP may offer a novel therapeutic strategy for age-related memory loss and AD.
- Findings suggest AM/PAMP as potential biomarkers for cognitive decline risk.
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