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How corticosteroids control inflammation: Quintiles Prize Lecture 2005

British Journal of Pharmacology · 2006 · Vol. 148(3) · pp. 245–254
Peter J. Barnes

Abstract

Corticosteroids are the most effective anti-inflammatory therapy for many chronic inflammatory diseases, such as asthma but are relatively ineffective in other diseases such as chronic obstructive pulmonary disease (COPD). Chronic inflammation is characterised by the increased expression of multiple inflammatory genes that are regulated by proinflammatory transcription factors, such as nuclear factor-kappaB and activator protein-1, that bind to and activate coactivator molecules, which then acetylate core histones to switch on gene transcription. Corticosteroids suppress the multiple inflammatory genes that are activated in chronic inflammatory diseases, such as asthma, mainly by reversing histone acetylation of activated inflammatory genes through binding of liganded glucocorticoid receptors (GR) to coactivators and recruitment of histone deacetylase-2 (HDAC2) to the activated transcription complex. At higher concentrations of corticosteroids GR homodimers also interact with DNA recognition sites to active transcription of anti-inflammatory genes and to inhibit transcription of several genes linked to corticosteroid side effects. In patients with COPD and severe asthma and in asthmatic patients who smoke HDAC2 is markedly reduced in activity and expression as a result of oxidative/nitrative stress so that inflammation becomes resistant to the anti-inflammatory actions of corticosteroids. Theophylline, by activating HDAC, may reverse this corticosteroid resistance. This research may lead to the development of novel anti-inflammatory approaches to manage severe inflammatory diseases.

Estrogen and related hormone effectsHistone Deacetylase Inhibitors ResearchAsthma and respiratory diseasesHistone deacetylase 2InflammationTranscription factorGlucocorticoid receptorProinflammatory cytokineCoactivatorActivator (genetics)MedicineHistoneImmunology

MeSH terms

Adrenal Cortex HormonesDrug ResistanceHistonesHumansInflammationTranscription, Genetic
Citations
807
FWCI
21.14
field-weighted impact
References
97
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Citations per year
References
Histones and histone modifications
Current Biology · 2004 · 1,294 citations
Histone Acetyltransferases
Annual Review of Biochemistry · 2001 · 1,832 citations
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