The aging mouse brain: cognition, connectivity and calcium
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Published version
Author(s)
Radulescu, Carola I
Cerar, Veronika
Haslehurst, Peter
Kopanitsa, Maksym
Barnes, Samuel J
Type
Journal Article
Abstract
Aging is a complex process that differentially impacts multiple cognitive, sensory, neuronal and molecular processes. Technological innovations now allow for parallel investigation of neuronal circuit function, structure and molecular composition in the brain of awake behaving adult mice. Thus, mice have become a critical tool to better understand how aging impacts the brain. However, a more granular systems-based approach, which considers the impact of age on key features relating to neural processing, is required. Here, we review evidence probing the impact of age on the mouse brain. We focus on a range of processes relating to neuronal function, including cognitive abilities, sensory systems, synaptic plasticity and calcium regulation. Across many systems, we find evidence for prominent age-related dysregulation even before 12 months of age, suggesting that emerging age-related alterations can manifest by late adulthood. However, we also find reports suggesting that some processes are remarkably resilient to aging. The evidence suggests that aging does not drive a parallel, linear dysregulation of all systems, but instead impacts some processes earlier, and more severely, than others. We propose that capturing the more fine-scale emerging features of age-related vulnerability and resilience may provide better opportunities for the rejuvenation of the aged brain.
Date Issued
2021-03
Date Acceptance
2021-01-18
Citation
Cell Calcium, 2021, 94, pp.1-19
ISSN
0143-4160
Publisher
Elsevier
Start Page
1
End Page
19
Journal / Book Title
Cell Calcium
Volume
94
Copyright Statement
© 2021 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Sponsor
UK DRI Ltd
UK DRI Ltd
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/33517250
PII: S0143-4160(21)00012-9
Grant Number
4050641385
WBID
Subjects
Aging
Axonal bouton
Calcium
Cognition
Cortex
Dendritic spine
Hebbian plasticity
Hippocampus
Homeostatic plasticity
In vivo imaging
LTD
LTP
Neural-circuit
Plasticity
Publication Status
Published
Coverage Spatial
Netherlands
Article Number
102358
Date Publish Online
2021-01-23