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The indole-hydantoin derivative exhibits anti-inflammatory activity by preventing the transactivation of NF-κB through the inhibition of NF-κB p65 phosphorylation at Ser276.
- Source :
-
International immunopharmacology [Int Immunopharmacol] 2021 Nov; Vol. 100, pp. 108092. Date of Electronic Publication: 2021 Aug 30. - Publication Year :
- 2021
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Abstract
- Indole- and hydantoin-based derivatives both exhibit anti-inflammatory activity, suggesting that the structures of indole and hydantoin are functional for this activity. In the present study, we synthesized two types of indole-hydantoin derivatives, IH-1 (5-(1H-indole-3-ylmethylene) imidazolidine-2,4-dione) and IH-2 (5-(1H-indole-3-ylmethyl) imidazolidine-2,4-dione) and examined their effects on LPS-induced inflammatory responses in murine macrophage-like RAW264.7 cells. LPS-induced inflammatory responses were not affected by indole, hydantoin, or IH-2. In contrast, IH-1 significantly inhibited the LPS-induced production of nitric oxide (NO) and secretion of CCL2 and CXCL1 by suppressing the mRNA expression of inducible NO synthase (iNOS), CCL2, and CXCL1. IH-1 markedly inhibited the LPS-induced activation of NF-κB without affecting the degradation of IκBα or nuclear translocation of NF-κB. IH-1 markedly attenuated the transcriptional activity of NF-κB by suppressing the LPS-induced phosphorylation of the NF-κB p65 subunit at Ser276. Furthermore, IH-1 prevented the LPS-induced interaction of NF-κB p65 subunit with a transcriptional coactivator, cAMP response element-binding protein (CBP). Collectively, these results revealed the potential of the novel indole-hydantoin derivative, IH-1 as an anti-inflammatory drug.<br /> (Copyright © 2021. Published by Elsevier B.V.)
- Subjects :
- Animals
Anti-Inflammatory Agents chemical synthesis
Chemokine CCL2 genetics
Chemokine CCL2 metabolism
Chemokine CXCL1 genetics
Chemokine CXCL1 metabolism
Humans
Hydantoins chemical synthesis
Indoles chemical synthesis
Inflammation chemically induced
Inflammation genetics
Inflammation metabolism
Lipopolysaccharides toxicity
Macrophages metabolism
Mice
Nitric Oxide metabolism
Nitric Oxide Synthase Type II genetics
Nitric Oxide Synthase Type II metabolism
Phosphorylation
RAW 264.7 Cells
Signal Transduction
THP-1 Cells
Transcription Factor RelA genetics
U937 Cells
Anti-Inflammatory Agents pharmacology
Hydantoins pharmacology
Indoles pharmacology
Inflammation prevention & control
Macrophages drug effects
Transcription Factor RelA metabolism
Transcriptional Activation drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1878-1705
- Volume :
- 100
- Database :
- MEDLINE
- Journal :
- International immunopharmacology
- Publication Type :
- Academic Journal
- Accession number :
- 34474272
- Full Text :
- https://doi.org/10.1016/j.intimp.2021.108092