RRC ID 71647
Author Saputra WD, Shono H, Ohsaki Y, Sultana H, Komai M, Shirakawa H.
Title Geranylgeraniol Inhibits Lipopolysaccharide-Induced Inflammation in Mouse-Derived MG6 Microglial Cells via NF-κB Signaling Modulation.
Journal Int J Mol Sci
Abstract Persistent inflammatory reactions in microglial cells are strongly associated with neurodegenerative pathogenesis. Additionally, geranylgeraniol (GGOH), a plant-derived isoprenoid, has been found to improve inflammatory conditions in several animal models. It has also been observed that its chemical structure is similar to that of the side chain of menaquinone-4, which is a vitamin K2 sub-type that suppresses inflammation in mouse-derived microglial cells. In this study, we investigated whether GGOH has a similar anti-inflammatory effect in activated microglial cells. Particularly, mouse-derived MG6 cells pre-treated with GGOH were exposed to lipopolysaccharide (LPS). Thereafter, the mRNA levels of pro-inflammatory cytokines were determined via qRT-PCR, while protein expression levels, especially the expression of NF-κB signaling cascade-related proteins, were determined via Western blot analysis. The distribution of NF-κB p65 protein was also analyzed via fluorescence microscopy. Thus, it was observed that GGOH dose-dependently suppressed the LPS-induced increase in the mRNA levels of Il-1β, Tnf-α, Il-6, and Cox-2. Furthermore, GGOH inhibited the phosphorylation of TAK1, IKKα/β, and NF-κB p65 proteins as well as NF-κB nuclear translocation induced by LPS while maintaining IκBα expression. We showed that GGOH, similar to menaquinone-4, could alleviate LPS-induced microglial inflammation by targeting the NF-kB signaling pathway.
Volume 22(19)
Published 2021-9-29
DOI 10.3390/ijms221910543
PII ijms221910543
PMID 34638882
PMC PMC8508820
MeSH Active Transport, Cell Nucleus / drug effects Animals Blotting, Western Cell Line Cytokines / genetics Cytokines / metabolism Diterpenes / pharmacology* Gene Expression / drug effects Inflammation / chemically induced Inflammation / prevention & control* Lipopolysaccharides Mice Microglia / cytology Microglia / drug effects* Microglia / metabolism NF-kappa B / metabolism* Reverse Transcriptase Polymerase Chain Reaction Signal Transduction / drug effects* Transcription Factor RelA / metabolism
IF 4.556
Resource
Human and Animal Cells MG6(RCB2403)