Related Experiment Video
Updated: Jun 13, 2026

Characterization and Isolation of Mouse Primary Microglia by Density Gradient Centrifugation
Published on: February 16, 2018
A Proinflammatory Stimulus Disrupts Hippocampal Plasticity and Learning via Microglial Activation and
Yukitoshi Izumi1, Anil G Cashikar2,1, Kathiresan Krishnan3
1Taylor Family Institute for Innovative Psychiatric Research, Washington University School of Medicine in St. Louis, St. Louis, Missouri 63110-1093.
Abstract:
Inflammatory cells, including macrophages and microglia, synthesize and release the oxysterol 25-hydroxycholesterol (25HC), which has antiviral and immunomodulatory properties. Here, we examined the effects of lipopolysaccharide (LPS), an activator of innate immunity, on 25HC production in microglia, and the effects of LPS and 25HC on CA1 hippocampal synaptic plasticity and learning. In primary microglia, LPS markedly increases the expression of cholesterol 25-hydroxylase (Ch25h), the key enzyme involved in 25HC synthesis, and increases the levels of secreted 25HC. Wild-type microglia produced higher levels of 25HC than Ch25h knock-out (KO) microglia with or without LPS. LPS treatment also disrupts long-term potentiation (LTP) in hippocampal slices via induction of a form of NMDA receptor-dependent metaplasticity. The inhibitory effects of LPS on LTP were mimicked by exogenous 25HC, and were not observed in slices from Ch25h KO mice. In vivo, LPS treatment also disrupts LTP and inhibits one-trial learning in wild-type mice, but not Ch25h KO mice. These results demonstrate that the oxysterol 25HC is a key modulator of synaptic plasticity and memory under proinflammatory stimuli.SIGNIFICANCE STATEMENT Neuroinflammation is thought to contribute to cognitive impairment in multiple neuropsychiatric illnesses. In this study, we found that a proinflammatory stimulus, LPS, disrupts hippocampal LTP via a metaplastic mechanism. The effects of LPS on LTP are mimicked by the oxysterol 25-hydroxycholesterol (25HC), an immune mediator synthesized in brain microglia. Effects of LPS on both synaptic plasticity and one-trial inhibitory avoidance learning are eliminated in mice deficient in Ch25h (cholesterol 25-hydroxylase), the primary enzyme responsible for endogenous 25HC synthesis. Thus, these results indicate that 25HC is a key mediator of the effects of an inflammatory stimulus on hippocampal function and open new potential avenues to overcome the effects of neuroinflammation on brain function.
Insights
Neuroinflammation disrupts memory by increasing 25-hydroxycholesterol (25HC). This immune mediator impairs synaptic plasticity and learning, but its effects are blocked in mice lacking cholesterol 25-hydroxylase (Ch25h).
Area of Science:
- Neuroimmunology
- Synaptic Plasticity
- Cognitive Neuroscience
Background:
- Neuroinflammation is linked to cognitive deficits in neuropsychiatric disorders.
- Microglia produce 25-hydroxycholesterol (25HC), an oxysterol with immunomodulatory roles.
- Lipopolysaccharide (LPS) activates innate immunity and can impact brain function.
Purpose of the Study:
- To investigate the impact of LPS on 25HC production in microglia.
- To determine the effects of LPS and 25HC on hippocampal synaptic plasticity and learning.
- To elucidate the role of 25HC in mediating LPS-induced cognitive impairment.
Main Methods:
- Primary microglia cultures treated with LPS to measure cholesterol 25-hydroxylase (Ch25h) expression and 25HC secretion.
- Electrophysiological recordings of long-term potentiation (LTP) in hippocampal slices from wild-type and Ch25h knock-out (KO) mice.
- Behavioral studies assessing one-trial learning in wild-type and Ch25h KO mice following LPS administration.
Main Results:
- LPS significantly increased Ch25h expression and 25HC production in wild-type microglia.
- LPS disrupted hippocampal LTP via NMDA receptor-dependent metaplasticity, an effect mimicked by exogenous 25HC.
- LPS-induced deficits in LTP and one-trial learning were abolished in Ch25h KO mice.
Conclusions:
- The oxysterol 25HC is a critical mediator of LPS-induced disruption of synaptic plasticity and memory.
- Ch25h-derived 25HC plays a key role in how inflammatory stimuli affect hippocampal function.
- Targeting 25HC synthesis presents a potential therapeutic strategy against neuroinflammation-driven cognitive impairment.
Related Concept Videos
Inflammation
Chronic Inflammation: Introduction
Inflammatory Bowel Disease III: Crohn's Disease

