Attenuation of LPS-induced inflammation by ICT, a derivate of icariin, via inhibition of the CD14/TLR4 signaling pathway in human monocytes.

Abstract:

OBJECTIVE:To evaluate the anti-inflammatory potential of ICT in LPS stimulated human innate immune cells. BACKGROUND:3, 5, 7-Trihydroxy-4'-methoxy-8-(3-hydroxy-3- methylbutyl)-flavone (ICT) is a novel derivative of icariin, the major active ingredient of Herba Epimedii, an herb used in traditional Chinese medicine. We previously demonstrated its anti-inflammatory potential in a murine macrophage cell line as well as in mouse models. METHODS:We measured TNF-α production by ELISA, TLR4/CD14 expression by flow cytometry, and NF-κB and MAPK activation by western blot all in LPS-stimulated PBMC, human monocytes, or THP-1 cells after treatment with ICT. RESULTS:ICT inhibited LPS-induced TNF-α production in THP-1 cells, PBMCs and human monocytes in a dose-dependent manner. ICT treatment resulted in down-regulation of the expression of CD14/TLR4 and attenuated NF-κB and MAPK activation induced by LPS. CONCLUSION:We illustrate the anti-inflammatory property of ICT in human immune cells, especially in monocytes. These effects were mediated, at least partially, via inhibition of the CD14/TLR4 signaling pathway.

journal_name

Int Immunopharmacol

authors

Wu J,Zhou J,Chen X,Fortenbery N,Eksioglu EA,Wei S,Dong J

doi

10.1016/j.intimp.2011.10.015

subject

Has Abstract

pub_date

2012-01-01 00:00:00

pages

74-9

issue

1

eissn

1567-5769

issn

1878-1705

pii

S1567-5769(11)00413-9

journal_volume

12

pub_type

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