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Identification of Pharmacological Modulators of HMGB1-Induced Inflammatory Response by Cell-Based Screening
Authors
A Lahat
AJ Ghio
+39 more
AM Colangelo
B Cai
B Lu
C Lagathu
C Szabo
Csaba Szabo
D Ditsworth
D Gero
D Gero
Domokos Gerö
E Venereau
EA Park
GY Chen
H Schierbeck
H Selye
H Wang
H Yang
H Yang
H Yang
HE Harris
Huan Yang
J Evankovich
J Szelenyi
John P. Pribis
JR Klune
Katalin Módis
Kevin J. Tracey
KJ Tracey
L Ulloa
ME Bianchi
O Hori
Petra Szoleczky
PJ Barnes
R Bertini
Robert W. Sobol
Sangeeta Chevan
Timothy R. Billiar
U Andersson
Yousef Al-Abed
Publication date
14 June 2013
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
High mobility group box 1 (HMGB1), a highly conserved, ubiquitous protein, is released into the circulation during sterile inflammation (e.g. arthritis, trauma) and circulatory shock. It participates in the pathogenesis of delayed inflammatory responses and organ dysfunction. While several molecules have been identified that modulate the release of HMGB1, less attention has been paid to identify pharmacological inhibitors of the downstream inflammatory processes elicited by HMGB1 (C23-C45 disulfide C106 thiol form). In the current study, a cell-based medium-throughput screening of a 5000+ compound focused library of clinical drugs and drug-like compounds was performed in murine RAW264.7 macrophages, in order to identify modulators of HMGB1-induced tumor-necrosis factor alpha (TNFα) production. Clinically used drugs that suppressed HMGB1-induced TNFα production included glucocorticoids, beta agonists, and the anti-HIV compound indinavir. A re-screen of the NIH clinical compound library identified beta-agonists and various intracellular cAMP enhancers as compounds that potentiate the inhibitory effect of glucocorticoids on HMGB1-induced TNFα production. The molecular pathways involved in this synergistic anti-inflammatory effect are related, at least in part, to inhibition of TNFα mRNA synthesis via a synergistic suppression of ERK/IκB activation. Inhibition of TNFα production by prednisolone+salbutamol pretreatment was also confirmed in vivo in mice subjected to HMGB1 injection; this effect was more pronounced than the effect of either of the agents administered separately. The current study unveils several drug-like modulators of HMGB1-mediated inflammatory responses and offers pharmacological directions for the therapeutic suppression of inflammatory responses in HMGB1-dependent diseases. © 2013 Gerö et al
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