Reactivity of CORM [RuII(CO)3Cl2{N-(N1-methylbenzimidazole)}] with aminoacids. Synthesis, and analytical and structural study for the new binuclear cis-[RuI(CO)2(N-MBI)(μ2-O,O-BAL)]2 sawhorse complex at solid state and in solution
Author:
Publisher
Elsevier BV
Subject
Inorganic Chemistry,Organic Chemistry,Spectroscopy,Analytical Chemistry
Reference39 articles.
1. Carbon monoxide released by CORM-401 uncouples mitochondrial respiration and inhibits glycolysis in endothelial cells: a role for mitoBKCa channels;Kaczara;Biochim. Biophys. Acta,2015
2. Analysis of the bacterial response to Ru(CO)3Cl(Glycinate) (CORM-3) and the inactivated compound identifies the role played by the Ruthenium compound and reveals Sulfur-containing species as a major target of CORM-3 action;McLean;Antioxidants Redox Signal.,2013
3. New insights into the chemistry of fac-[Ru(CO)3]2+ fragments in biologically relevant conditions: the CO releasing activity of [Ru(CO)3Cl2(1,3-thiazole)], and the X-ray crystal structure of its adduct with lysozyme;Santos;J. Inorg. Biochem.,2012
4. An N-acetyl cysteine ruthenium tricarbonyl conjugate enables simultaneous release of CO and ablation of reactive oxygen species;Seixas;Chem. Eur. J.,2015
5. Photo-activated CO-releasing molecules (Photo CORMs) of robust sawhorse scaffolds [μ2-OOCR1, η1-NH2CHR2(C=O)]OCH3, Ru(I)2(CO)4];Yang;Dalton Trans.,2016
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