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PMID: 21864022 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Differential antibacterial activity against Pseudomonas aeruginosa by carbon monoxide-releasing molecules.

Antioxidants & redox signaling ·Vol. 16 ·No. 2 ·2012-01-15 ·Pages 153-63

Desmard M, Foresti R, Morin D, Dagouassat M, Dagoussat M, Berdeaux A, Denamur E, Crook SH, Mann BE, Scapens D, Montravers P, Boczkowski J, Motterlini R

Abstract

Carbon monoxide (CO) delivered in a controlled manner to cells and organisms mediates a variety of pharmacological effects to the extent that CO-releasing molecules (CO-RMs) are being developed for therapeutic purposes. Recently, ruthenium-based CO-RMs have been shown to posses important bactericidal activity. Here we assessed the effect of fast CO releasers containing ruthenium (Ru(CO)(3)Cl(glycinate) [CORM-3] and tricarbonyldichlororuthenium(II) dimer [CORM-2]) and a novel slow manganese-based CO releaser ([Me(4)N][Mn(CO)(4)(thioacetate)(2)] [CORM-371]) on O(2) consumption and growth of Pseudomonas aeruginosa (PAO1). We then compared these effects with the action elicited by sodium boranocarbonate (CORM-A1), which lacks a transition metal but liberates CO with a rate similar to CORM-371. CORM-2, CORM-3, and, to a lesser extent, CORM-371 exerted a significant bactericidal effect and decreased O(2) consumption in PAO1 in vitro. The effect appeared to be independent of reactive oxygen species production, but in the case of metal-containing compounds it was prevented by the thiol donor N-acetylcysteine. In contrast, CORM-A1 was bacteriostatic rather than bactericidal in vitro eliciting only a moderate and transient decrease in O(2) consumption. None of the tested CO-RMs was toxic to murine macrophages or human fibroblasts at the concentration impairing PA01 growth but only ruthenium-containing CO-RMs showed potential therapeutic properties by increasing the survival of mice infected with PA01. CO carriers inhibit bacterial growth and O(2) consumption in vitro, but transition metal carbonyls appear more powerful than compounds spontaneously liberating CO. The nature of the metal in CO-RMs also modulates the anti-bacterial effect, with ruthenium-based CO-RMs being efficacious both in vitro and in vivo.

MeSH Terms
Acetylcysteine/pharmacology Animals Anti-Bacterial Agents/pharmacology Carbon Monoxide/metabolism Cells, Cultured Humans Mice Microbial Sensitivity Tests Oxygen/metabolism Pseudomonas aeruginosa/drug effects,growth & development,metabolism Reactive Oxygen Species/metabolism
Chemicals
Anti-Bacterial Agents Reactive Oxygen Species Carbon Monoxide Oxygen Acetylcysteine
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Desmard Mathieu
Université Paris Est, Creteil, France. [email protected]
Foresti Roberta
Morin Didier
Dagouassat Maylis
Dagoussat Maylis
Berdeaux Alain
Denamur Erick
Crook Sian H
Mann Brian E
Scapens David
Montravers Philippe
Boczkowski Jorge
Motterlini Roberto
Article Info
Journal
Antioxidants & redox signaling
Abbr.
Antioxid Redox Signal
ISSN
1557-7716
Published
2012-01-15
Epub
2011-00-15
Pages
153-63
Language
English
Region
United States
NLM ID
100888899
Subset
IM
Corrections
ErratumIn
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