Exploring the Role of Neuroplasticity in Development, Aging, and Neurodegeneration

Изучение роли нейропластичности в развитии, старении и нейродегенерации
Patrícia Emanuella Ramos Marzola, Thayza Martins Melzer, Eloísa Pavesi, Joana Gil‐Mohapel, Patrícia S. Brocardo
2023-11-21

brain aginglifestyle interventionsneurodegenerative processesneuroplasticitysynaptic plasticity
Neuroplasticity refers to the ability of the brain to reorganize and modify its neural connections in response to environmental stimuli, experience, learning, injury, and disease processes. It encompasses a range of mechanisms, including changes in synaptic strength and connectivity, the formation of new synapses, alterations in the structure and function of neurons, and the generation of new neurons. Neuroplasticity plays a crucial role in developing and maintaining brain function, including learning and memory, as well as in recovery from brain injury and adaptation to environmental changes. In this review, we explore the vast potential of neuroplasticity in various aspects of brain function across the lifespan and in the context of disease. Changes in the aging brain and the significance of neuroplasticity in maintaining cognitive function later in life will also be reviewed. Finally, we will discuss common mechanisms associated with age-related neurodegenerative processes (including protein aggregation and accumulation, mitochondrial dysfunction, oxidative stress, and neuroinflammation) and how these processes can be mitigated, at least partially, by non-invasive and non-pharmacologic lifestyle interventions aimed at promoting and harnessing neuroplasticity.
1
Age-related neuroplasticity contributes to preserving cognitive function later in life.
2
Neurodegenerative processes involve protein aggregation, mitochondrial dysfunction, oxidative stress, and neuroinflammation, which may impair brain function.
3
Neuroplasticity enables brain reorganization through changes in synaptic strength, connectivity, neuronal structure, and neurogenesis.
4
Neuroplasticity supports learning, memory, brain development, maintenance of function, adaptation to environmental changes, and recovery after injury.
5
Non-invasive, non-pharmacologic lifestyle interventions may partially mitigate age-related neurodegenerative mechanisms by promoting neuroplasticity.

brain neuroplasticity across the lifespan and in age-related neurodegeneration

the mechanisms and functional significance of neuroplastic reorganization in development, aging, brain-injury recovery, and neurodegenerative disease, including modulation by lifestyle interventions

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2023-11-21
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Patrícia Emanuella Ramos Marzola
Thayza Martins Melzer
Eloísa Pavesi
Joana Gil‐Mohapel
Patrícia S. Brocardo
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