Related Experiment Video
Updated: May 3, 2026

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglial cell activation increases saturated and decreases monounsaturated fatty acid content, but both lipid
Emily B Button1, Andrew S Mitchell, Marcia M Domingos
1Department of Kinesiology, University of Waterloo, Waterloo, ON, N2L 3G1, Canada.
Abstract:
Neuroinflammation is a component of age-related neurodegenerative diseases and cognitive decline. Saturated (SFA) and monounsaturated (MUFA) fatty acids are bioactive molecules that may play different extrinsic and intrinsic roles in neuroinflammation, serving as exogenous ligands for cellular receptors, or endogenous components of cell structural, energetic and signaling pathways. We determined the fatty acyl profile of BV2 microglial cells before and after acute activation with lipopolysaccharide (LPS). We also investigated the effect of SFA and MUFA pretreatment on the production of an invasive, neurotoxic phenotype in BV2 cells. Acute activation of BV2 microglia resulted in an increase in the relative content of SFA (12:0, 16:0, 18:0, 20:0, 22:0, and 24:0 increased significantly), and a relative decrease in the content of MUFA (16:1n7, 18:1n7, 18:1n9, 20:1n9, 24:1n9 decreased significantly). In agreement, the major stearoyl-CoA desaturase (SCD) isoform in BV2 cells, SCD2, was significantly down-regulated by LPS. We next treated cells with SFA (16:0 or 18:0) or MUFA (16:1n7 or 18:1n9), and found that levels of secreted IL6 were increased, as was secreted MMP9-mediated proteolytic activity. To test the functional significance, we treated SH-SY5Y neuronal cells with conditioned medium from BV2 cells pretreated with fatty acids, and found a small but significant induction of cell death. Our findings suggest differential intrinsic roles for SFA and MUFA in activated microglial cells, but similar extrinsic roles for these fatty acid species in inducing activation. Expansion of SFA is important during microglial cell activation, but either supplemental SFA or MUFA may contribute to chronic low-grade neuroinflammation.
Insights
Saturated and monounsaturated fatty acids influence neuroinflammation. Both fatty acid types can promote microglial activation and contribute to chronic neuroinflammation, impacting neuronal health.
Area of Science:
- Neuroscience
- Immunology
- Biochemistry
Background:
- Neuroinflammation is linked to neurodegenerative diseases and cognitive decline.
- Saturated fatty acids (SFA) and monounsaturated fatty acids (MUFA) are bioactive lipids with potential roles in neuroinflammation.
- Microglia, the immune cells of the brain, are central to neuroinflammatory processes.
Purpose of the Study:
- To determine the fatty acyl profile of BV2 microglial cells before and after lipopolysaccharide (LPS) activation.
- To investigate the impact of SFA and MUFA pretreatment on the neurotoxic phenotype of BV2 cells.
- To assess the functional consequences of fatty acid-modulated microglial activation on neuronal cells.
Main Methods:
- Analysis of fatty acyl composition in BV2 microglial cells.
- Treatment of BV2 cells with SFA or MUFA prior to LPS activation.
- Measurement of secreted IL6 and MMP9 activity.
- Treatment of SH-SY5Y neuronal cells with conditioned medium from treated BV2 cells.
Main Results:
- LPS activation increased SFA content and decreased MUFA content in BV2 cells.
- LPS significantly down-regulated stearoyl-CoA desaturase 2 (SCD2) expression.
- Pretreatment with SFA or MUFA increased IL6 secretion and MMP9 activity.
- Conditioned medium from pretreated BV2 cells induced neuronal cell death.
Conclusions:
- SFA and MUFA exhibit differential intrinsic roles in activated microglia but similar extrinsic roles in promoting activation.
- Microglial activation involves an expansion of SFA.
- Supplemental SFA or MUFA may contribute to chronic low-grade neuroinflammation.
Related Concept Videos
Inflammation
Chronic Inflammation: Introduction

