Project description:Transcription profiles of BV2 microglial cell lines: unstimulated, stimulated with LPS or transfected with constitutively active Stat1 and Stat3.
Project description:To comprehensively study the intracellular signaling changes and explore the underlying mechanisms of baicalein-mediated microglial responses, we employed systemic proteomic approach, using target-free SWATH mass spectra (SWATH-MS), focusing on intracellular proteins. BV2 cells were treated with LPS followed by the addition of vehicle or baicalein and they were cultured for a total of 48 hours before being collected for proteomic analysis.
Project description:Mouse microglia (BV2 cells) were stimulated with a TLR4 ligand (E. coli LPS, 1 µg/ml) for 4h. The Agilent SurePrint G3 Mouse Gene Expression Microarray (G4852A) was used for the analysis, which provides full coverage of genes and transcripts with the most up-to-date content, including mRNAs and lincRNAs (http://www.chem.agilent.com/store/en_US/Prod-G4852A/G4852A). BV2 cells were grown to 80% confluence for four groups: the siRNA control (Group A, cells treated with a non-specific scrambied siRNA control), the LPS-stimulated (Group B, cells treated with the siRNA control plus LPS stimulation), lincRNA-Cox2 siRNA (Group C, cells treated with an siRNA to lincRNA-Cox2), and lincRNA-Cox2 siRNA/LPS stimulated (Group D, cells treated with the lincNRA-Cox2 siRNA plus LPS stimulation). Cells were treated with the siRNAs for 24h, followed by additional culture for 4h in the presence or absence of LPS (E. coli LPS, 1 µg/ml). Total RNAs were prepared with the RNeasy Mini kit (Qiagen) according to the manufacturer’s instruction (Ambion).
Project description:This dataset contains the RNA-seq data generated to investigate the mechanism of TOP1 inhibitor topotecan (TPT)'s role of anti-inflammation in microglial. RNA from mouse microgial cells, cells with LPS treatment to induce inflammation, and cells with LPS and TPT treatment were harvest and processed with polyA-tail enrichment RNA library preparation.
Project description:We conducted small RNA sequencing and bioinformatics analysis of GCH1-KD BV2 microglial cells treated with adenovirus. Their RNA was extracted and analyzed, and the results were verified by quantitative real-time polymerase chain reaction (qRT-PCR). This study explored the miRNAs and mRNAs regulated by GCH1 and revealed a possible mechanism of GCH1 in microglial activation.