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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Fractalkine Attenuates Microglial Cell Activation Induced by Prenatal Stress
Joanna Ślusarczyk1, Ewa Trojan1, Katarzyna Głombik1
1Department of Experimental Neuroendocrinology, Institute of Pharmacology, Polish Academy of Sciences, 12 Smętna Street, 31-343 Krakow, Poland.
Abstract:
The potential contribution of inflammation to the development of neuropsychiatric diseases has recently received substantial attention. In the brain, the main immune cells are the microglia. As they are the main source of inflammatory factors, it is plausible that the regulation of their activation may be a potential therapeutic target. Fractalkine (CX3CL1) and its receptor CX3CR1 play a crucial role in the control of the biological activity of the microglia. In the present study, using microglial cultures we investigated whether fractalkine is able to reverse changes in microglia caused by a prenatal stress procedure. Our study found that the microglia do not express fractalkine. Prenatal stress decreases the expression of the fractalkine receptor, which in turn is enhanced by the administration of exogenous fractalkine. Moreover, treatment with fractalkine diminishes the prenatal stress-induced overproduction of proinflammatory factors such as IL-1β, IL-18, IL-6, TNF-α, CCL2, or NO in the microglial cells derived from prenatally stressed newborns. In conclusion, the present results revealed that the pathological activation of microglia in prenatally stressed newborns may be attenuated by fractalkine administration. Therefore, understanding of the role of the CX3CL1-CX3CR1 system may help to elucidate the mechanisms underlying the neuron-microglia interaction and its role in pathological conditions in the brain.
Insights
Fractalkine (CX3CL1) administration can reverse prenatal stress-induced changes in microglia, reducing inflammatory factors. This suggests fractalkine therapy may help treat brain inflammation associated with neuropsychiatric conditions.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Inflammation's role in neuropsychiatric diseases is gaining attention.
- Microglia are key brain immune cells and sources of inflammatory factors.
- The fractalkine (CX3CL1) and CX3CR1 system regulates microglial activity.
Purpose of the Study:
- To investigate if fractalkine can reverse microglial changes induced by prenatal stress.
- To explore the therapeutic potential of fractalkine in mitigating prenatal stress-related neuroinflammation.
Main Methods:
- Utilized primary microglial cultures from newborns exposed to prenatal stress.
- Assessed fractalkine receptor (CX3CR1) expression levels.
- Administered exogenous fractalkine and measured its effect on microglial inflammatory factor production.
Main Results:
- Microglia did not express fractalkine (CX3CL1).
- Prenatal stress decreased CX3CR1 expression, which was restored by exogenous fractalkine.
- Fractalkine treatment reduced the overproduction of pro-inflammatory factors (IL-1β, IL-18, IL-6, TNF-α, CCL2, NO) in stressed microglia.
Conclusions:
- Fractalkine administration can attenuate pathological microglial activation in prenatally stressed newborns.
- The CX3CL1-CX3CR1 system is a potential therapeutic target for brain inflammation and related neuropsychiatric disorders.
- Understanding neuron-microglia interactions via this system is crucial for brain pathology.

