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Updated: Apr 20, 2026

Culturing Microglia from the Neonatal and Adult Central Nervous System
Published on: August 9, 2013
Feeding the beast: can microglia in the senescent brain be regulated by diet?
1Laboratory of Integrative Immunology and Behavior, Department of Animal Sciences, Division of Nutritional Sciences, and Neuroscience Program, University of Illinois, 1201 W. Gregory Dr., Urbana, IL 61801, United States.
Abstract:
Microglial cells, resident macrophages in the central nervous system (CNS), are relatively quiescent but can respond to signals from the peripheral immune system and induce neuroinflammation. In aging, microglia tend to transition to the M1 pro-inflammatory state and become hypersensitive to messages emerging from immune-to-brain signaling pathways. Thus, whereas in younger individuals where microglia respond to signals from the peripheral immune system and induce a well-controlled neuroinflammatory response that is adaptive (e.g., when well controlled, fever and sickness behavior facilitate recovery from infection), in older individuals with an infection, microglia overreact and produce excessive levels of inflammatory cytokines causing behavioral pathology including cognitive dysfunction. Importantly, recent studies indicate a number of naturally occurring bioactive compounds present in certain foods have anti-inflammatory properties and are capable of mitigating brain microglial cells. These include, e.g., flavonoid and non-flavonoid compounds in fruits and vegetables, and n-3 polyunsaturated fatty acids (PUFA) in oily fish. Thus, dietary bioactives have potential to restore the population of microglial cells in the senescent brain to a more quiescent state. The pragmatic concept to constrain microglia through dietary intervention is significant because neuroinflammation and cognitive deficits are co-morbid factors in many chronic inflammatory diseases. Controlling microglial cell reactivity has important consequences for preserving adult neurogenesis, neuronal structure and function, and cognition.
Insights
Dietary bioactive compounds can help manage aging-related neuroinflammation by calming overactive microglial cells. This approach may preserve cognitive function and brain health in older adults.
Area of Science:
- Neuroscience
- Immunology
- Nutrition Science
Background:
- Microglial cells, the brain's immune cells, become pro-inflammatory and hypersensitive with aging.
- This heightened reactivity contributes to cognitive decline and behavioral pathology during infections in older adults.
- Dietary bioactive compounds show potential for mitigating age-related microglial dysfunction.
Purpose of the Study:
- To explore the role of dietary bioactives in modulating microglial cell activity.
- To investigate the potential of these compounds in addressing age-related neuroinflammation and cognitive deficits.
- To highlight the significance of dietary interventions for brain health.
Main Methods:
- Review of recent studies on microglial cell responses in aging.
- Analysis of the anti-inflammatory properties of dietary compounds like flavonoids and n-3 PUFAs.
- Examination of the impact of these bioactives on immune-to-brain signaling pathways.
Main Results:
- Aging shifts microglia towards a pro-inflammatory M1 state, leading to excessive cytokine production.
- Dietary compounds (flavonoids, non-flavonoids, n-3 PUFAs) possess anti-inflammatory properties.
- These bioactives can potentially restore microglial cells to a quiescent state in the aging brain.
Conclusions:
- Dietary interventions offer a promising strategy to control microglial reactivity and neuroinflammation.
- Modulating microglial function through diet may preserve neurogenesis, neuronal integrity, and cognitive function.
- Controlling neuroinflammation via dietary bioactives is crucial for managing age-related cognitive decline and chronic inflammatory diseases.

