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Coordinated Transcriptional Waves Define the Inflammatory Response of Primary Microglial Culture
Keren Zohar1, Elyad Lezmi2, Fanny Reichert3
1Department of Biological Chemistry, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Abstract:
The primary role of microglia is to maintain homeostasis by effectively responding to various disturbances. Activation of transcriptional programs determines the microglia's response to external stimuli. In this study, we stimulated murine neonatal microglial cells with benzoyl ATP (bzATP) and lipopolysaccharide (LPS), and monitored their ability to release pro-inflammatory cytokines. When cells are exposed to bzATP, a purinergic receptor agonist, a short-lived wave of transcriptional changes, occurs. However, only combining bzATP and LPS led to a sustainable and robust response. The transcriptional profile is dominated by induced cytokines (e.g., IL-1α and IL-1β), chemokines, and their membrane receptors. Several abundant long noncoding RNAs (lncRNAs) are induced by bzATP/LPS, including Ptgs2os2, Bc1, and Morrbid, that function in inflammation and cytokine production. Analyzing the observed changes through TNF (Tumor necrosis factor) and NF-κB (nuclear factor kappa light chain enhancer of activated B cells) pathways confirmed that neonatal glial cells exhibit a distinctive expression program in which inflammatory-related genes are upregulated by orders of magnitude. The observed capacity of the microglial culture to activate a robust inflammatory response is useful for studying neurons under stress, brain injury, and aging. We propose the use of a primary neonatal microglia culture as a responsive in vitro model for testing drugs that may interact with inflammatory signaling and the lncRNA regulatory network.
Insights
Neonatal microglia stimulated with benzoyl ATP (bzATP) and lipopolysaccharide (LPS) show a robust inflammatory response. This primary microglia culture is a valuable in vitro model for studying neuroinflammation and drug discovery.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- Microglia are crucial for brain homeostasis, responding to disturbances via transcriptional programs.
- Understanding microglial inflammatory responses is key to neuroinflammation research.
Purpose of the Study:
- To investigate the inflammatory response of neonatal microglia to combined stimuli.
- To establish a responsive in vitro model for studying neuroinflammation and drug interactions.
Main Methods:
- Murine neonatal microglial cells were stimulated with benzoyl ATP (bzATP) and lipopolysaccharide (LPS).
- Transcriptional changes, cytokine release, and pathway activation (TNF, NF-κB) were monitored.
- Long noncoding RNA (lncRNA) induction was analyzed.
Main Results:
- Combined bzATP and LPS induced a sustained and robust pro-inflammatory cytokine release.
- Key inflammatory genes, including IL-1α, IL-1β, and chemokines, were significantly upregulated.
- Induced lncRNAs (Ptgs2os2, Bc1, Morrbid) were identified, and TNF/NF-κB pathways confirmed a distinct neonatal glial expression program.
Conclusions:
- Primary neonatal microglia cultures provide a powerful in vitro model for neuroinflammation research.
- This model is suitable for testing drugs targeting inflammatory signaling and lncRNA networks in neurological conditions.
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