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Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries
Published on: January 22, 2019
Prednisolone suppresses the immunostimulatory effects of 27-hydroxycholesterol
Bo-Young Kim1, Yonghae Son1, Min Su Kim2
1Department of Pharmacology, Pusan National University School of Medicine, Yangsan, Gyeongnam 50612, Republic of Korea.
Abstract:
In cholesterol-fed rabbits, site-specific targeting of prednisolone nanoparticles results in significantly reduced neo-intimal inflammation with a decreased infiltration of monocytes/macrophages. To understand the molecular mechanisms underlying this, the current study investigated whether prednisolone affects the immune attributes of 27-hydroxycholesterol (27OHChol), the major oxidized cholesterol molecule in circulation and tissue, in human (THP-1) monocyte/macrophage cells. THP-1 cells were exposed to 27OHChol in the presence of prednisolone followed by evaluation of inflammatory molecules at mRNA and protein levels by quantitative PCR, western blotting, ELISA and flow cytometry. The results revealed that prednisolone suppressed the 27OHChol-mediated expression of various macrophage (M)1 markers, including chemokine ligand 2, C-X-C chemokine motif 10, tumor necrosis factor-α and CD80. Treatment also impaired the 27OHCHol-enhanced migration of monocytic cells, downregulated the 27OHChol-induced cell surface expression of CD14 and inhibited the release of soluble CD14 comparable with a weakened lipopolysaccharide response. Furthermore, prednisolone suppressed the 27OHChol-induced expression of matrix metalloproteinase 9 at the transcriptional and protein level, as well as the phosphorylation of the p65 subunit. Prednisolone increased the transcription of CD163 and CD206 genes, and augmented the 27OHChol-induced transcription of CD163 without upregulating the 27OHChol-induced surface protein level of the gene. The results indicated that prednisolone inhibited the polarization of monocytes/macrophages towards the M1 phenotype, which that the immunostimulatory effects of 27OHCHol were being regulated and the immune responses in conditions that were rich in oxygenated cholesterol molecules were being modulated.
Insights
Prednisolone nanoparticles reduce inflammation by modulating immune cell responses. This study shows prednisolone inhibits 27-hydroxycholesterol
Area of Science:
- Immunology
- Cardiovascular Research
- Pharmacology
Background:
- Oxidized cholesterol, such as 27-hydroxycholesterol (27OHChol), contributes to vascular inflammation.
- Prednisolone nanoparticles have shown efficacy in reducing neo-intimal inflammation in vivo.
- Understanding the molecular mechanisms of prednisolone's anti-inflammatory effects is crucial.
Purpose of the Study:
- To investigate the molecular mechanisms by which prednisolone modulates the immune effects of 27-hydroxycholesterol (27OHChol) in human monocyte/macrophage cells.
- To determine if prednisolone inhibits 27OHChol-induced pro-inflammatory responses and M1 polarization.
Main Methods:
- Human THP-1 monocyte/macrophage cells were treated with 27OHChol and prednisolone.
- Quantitative PCR, western blotting, ELISA, and flow cytometry were used to assess inflammatory markers at mRNA and protein levels.
- Cell migration assays were performed to evaluate monocyte/macrophage movement.
Main Results:
- Prednisolone suppressed 27OHChol-induced expression of M1 macrophage markers (e.g., TNF-α, CXCL10, CD80).
- Prednisolone impaired 27OHChol-enhanced cell migration and downregulated CD14 expression and release.
- Prednisolone inhibited 27OHChol-induced matrix metalloproteinase 9 expression and p65 phosphorylation, while upregulating CD163 transcription.
Conclusions:
- Prednisolone inhibits the immunostimulatory effects of 27OHChol by suppressing M1 polarization of monocytes/macrophages.
- These findings elucidate the molecular mechanisms underlying prednisolone's anti-inflammatory action in the context of oxidized cholesterol.
- Prednisolone effectively modulates immune responses in environments rich in oxidized cholesterol molecules.
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