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Updated: Sep 13, 2025

Detection of MicroRNAs in Microglia by Real-time PCR in Normal CNS and During Neuroinflammation
Published on: July 23, 2012
Lipid nanoparticle-mediated delivery of microRNA-124 reduces neuroinflammation
Zhanjun Ma1, Hong Anh Dang2, Jingjing Yang3
1Louvain Drug Research Institute, Advanced Drug Delivery and Biomaterials, Université Catholique de Louvain, UCLouvain, 1200, Brussels, Belgium; Louvain Drug Research Institute, Bioanalysis and Pharmacology of Bioactive Lipids, Université Catholique de Louvain, UCLouvain, 1200, Brussels, Belgium.
Abstract:
MicroRNAs (miRNAs) regulate many physiological and pathological processes implicated in numerous diseases, including neuroinflammatory disorders. Chronic neuroinflammation is a key feature of neurodegenerative diseases, yet effective medications remain unavailable. Delivery of exogenous miRNAs, such as miRNA-124 (miR-124), shows promise as a therapeutic approach as it promotes microglial polarization towards an anti-inflammatory phenotype. However, the options for robust drug delivery systems to enhance miRNA mimic stability and ability to penetrate the central nervous system (CNS) are limited. Here, for the first time, we propose an LNP formulation optimized for miR-124 delivery to the CNS. We compared several ionizable lipids and selected the one that provided the highest efficiency (both regarding cell uptake, transfection efficiency and inflammation modulation) and the lowest microglia activation (S-Ac7-DOG). In cultured BV2 and primary mixed glial cells, miR-124-LNP treatment downregulated the expression of pro-inflammatory and upregulated anti-inflammatory genes. Furthermore, local delivery into the prefrontal cortex as well as intravenous injection of miR-124-LNP in lipopolysaccharides (LPS)-treated mice effectively reduced inflammation, as evidenced by the lower expression of pro-inflammatory and higher levels of anti-inflammatory cytokines. Thus, we provide a rational screening of clinically relevant LNP ionizable lipids for miRNA delivery, the demonstration of the therapeutic efficacy of miR-124-S-Ac7-DOG LNP in an LPS-induced neuroinflammation model, and finally, a non-viral, clinically translatable delivery system for miRNA therapy in the CNS. Overall, this study highlights LNP as an effective miRNA delivery vehicle for CNS applications and as a versatile platform for exploring gene therapies targeting neuroinflammation.
Insights
We developed a novel lipid nanoparticle (LNP) delivery system for microRNA-124 (miR-124) to treat neuroinflammation. This system effectively reduced inflammation in the brain, offering a promising new therapy for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Biotechnology
- Pharmacology
Background:
- MicroRNAs (miRNAs) are crucial regulators of cellular processes, with implications in neuroinflammatory disorders.
- Chronic neuroinflammation is a hallmark of neurodegenerative diseases, lacking effective therapeutic interventions.
- Exogenous miRNA delivery, like miRNA-124 (miR-124), shows potential for anti-inflammatory effects in microglia.
Purpose of the Study:
- To develop and optimize a lipid nanoparticle (LNP) formulation for efficient miR-124 delivery to the central nervous system (CNS).
- To evaluate the efficacy of miR-124-loaded LNPs in modulating neuroinflammation in vitro and in vivo.
Main Methods:
- Screening of various ionizable lipids to identify an optimal LNP formulation for miR-124.
- In vitro transfection of BV2 and primary glial cells with miR-124-LNPs to assess gene expression.
- In vivo administration of miR-124-LNPs via local and intravenous routes in a lipopolysaccharide (LPS)-induced neuroinflammation mouse model.
Main Results:
- An optimized LNP formulation (S-Ac7-DOG) demonstrated high efficiency in cell uptake, transfection, and inflammation modulation.
- miR-124-LNP treatment downregulated pro-inflammatory genes and upregulated anti-inflammatory genes in glial cells.
- In vivo studies showed reduced pro-inflammatory and increased anti-inflammatory cytokines in the CNS following miR-124-LNP administration.
Conclusions:
- Lipid nanoparticles (LNPs) represent a clinically translatable, non-viral delivery system for miRNA therapeutics in the CNS.
- The developed miR-124-S-Ac7-DOG LNP formulation effectively targets and reduces neuroinflammation.
- This study provides a versatile platform for gene therapy strategies aimed at neuroinflammatory conditions.
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