Brain Aging Models

Brain aging models are experimental systems used to reproduce and study the structural, cellular, and molecular changes that occur in the aging nervous system. These models may involve naturally aged organisms, engineered tissues, or cultured cells, allowing researchers to examine processes such as neuronal dysfunction, synaptic loss, inflammation, and impaired protein maintenance under controlled conditions. In neuroscience, they help distinguish normal aging from mechanisms that contribute to neurodegenerative disease and cognitive decline. By enabling comparisons across ages, interventions, and biological conditions, brain aging models support studies of disease mechanisms, therapeutic targets, and strategies for preserving brain function.

Brain Aging Models - Related Videos

Research

JoVE Journal - Biology

Frailty Assessment in an Aging Mouse Model

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2025

The goal of the present protocol is to provide instructions and guidelines for assessing physical frailty in C57Bl/6x129J laboratory mice. Specific details regarding each measure used in the physical frailty index are explained. Several methods for reporting frailty results are also presented.

Research

JoVE Journal - Neuroscience
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Abbiategrasso Brain Bank Protocol for Collecting, Processing and Characterizing Aging Brains

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Cited by 25 •

2020

This protocol describes a method to track individual brain-aging trajectories through a brain donation program and proper characterization of brains. Brain donors are involved in a long-term longitudinal study including serial multi-dimensional assessments. The protocol contains a detailed description of brain processing and an accurate diagnostic methodology.

Education

JoVE Science Education - Advanced Biology

An Introduction to Aging and Regeneration

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2023

Tissues are maintained through a balance of cellular aging and regeneration. Aging refers to the gradual loss of cellular function, and regeneration is the repair of damaged tissue generally mediated by preexisting adult or somatic stem cells. Scientists are interested in understanding the biological mechanisms behind these two complex processes. By doing so, researchers may be able to use somatic stem cells to treat degenerative diseases and develop therapies that could delay the effects of...

Obtaining Specimens with Slowed, Accelerated and Reversed Aging in the Honey Bee Model

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Cited by 19 •

2013

In honey bee workers, aging depends on social behaviors rather than on chronological age. Here we show how worker-types with very different aging patterns can be obtained and analyzed for cellular senescence.

Neurobehavioral Assessments in a Mouse Model of Neonatal Hypoxic-ischemic Brain Injury

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Cited by 12 •

2017

We performed unilateral carotid artery occlusion on postnatal day 7-10 CD-1 mouse pups to create a neonatal hypoxic-ischemic (HI) model and investigated the effects of HI brain injury. We studied neurobehavioral functions in these mice compared to non-operated normal mice.

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