6533b7d0fe1ef96bd125b02d

RESEARCH PRODUCT

Significant in vivo anti-inflammatory activity of Pytren4Q-Mn a superoxide dismutase 2 (SOD2) mimetic scorpiand-like Mn (II) complex.

Ramón FontovaAntonio Garcia-españaEnrique García-españaCarolina SerenaRaúl Beltrán-debónMari Paz ClaresJavier U. ChicoteEnrique CalvoAlejandro RodríguezMaria Luisa Díaz

subject

MaleMAP Kinase Signaling Systemmedicine.drug_classAnti-Inflammatory AgentsSOD2lcsh:MedicineBiologymedicine.disease_causeAnti-inflammatoryCell LineSuperoxide dismutaseMicechemistry.chemical_compoundIn vivoChlorocebus aethiopsmedicineAnimalsHumanslcsh:ScienceVero Cellschemistry.chemical_classificationManganeseMultidisciplinarySuperoxide DismutaseSuperoxideImmunogenicityMolecular Mimicrylcsh:RMolecular mimicryEnzymechemistryBiochemistrybiology.proteinlcsh:QResearch Article

description

Background The clinical use of purified SOD enzymes has strong limitations due to their large molecular size, high production cost and immunogenicity. These limitations could be compensated by using instead synthetic SOD mimetic compounds of low molecular weight. Background/Methodology We have recently reported that two SOD mimetic compounds, the MnII complexes of the polyamines Pytren2Q and Pytren4Q, displayed high antioxidant activity in bacteria and yeast. Since frequently molecules with antioxidant properties or free-radical scavengers also have anti-inflammatory properties we have assessed the anti-inflammatory potential of Pytren2Q and Pytren4Q MnII complexes, in cultured macrophages and in a murine model of inflammation, by measuring the degree of protection they could provide against the cellular injury produced by lipopolisacharide, a bacterial endotoxin. Principal Findings In this report we show that the MnII complex of Pytren4Q but not that of Pytren2Q effectively protected human cultured THP-1 macrophages and whole mice from the inflammatory effects produced by LPS. These results obtained with two molecules that are isomers highlight the importance of gathering experimental data from animal models of disease in assessing the potential of candidate molecules. Conclusion/Significance The effective anti-inflammatory activity of the MnII complex of Pytren4Q in addition to its low toxicity, water solubility and ease of production would suggest it is worth taking into consideration for future pharmacological studies.

10.1371/journal.pone.0119102http://europepmc.org/articles/PMC4351122?pdf=render