The Role of Metallodrugs in Enhancing Neuroendocrine Neoplasm Therapies: The Promising Anticancer Potential of Ruthenium-Based Complexes. [PDF]
Stefàno E +4 more
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Molecular Constraints and Electronic Structure Direct Multi-Step PCET Mechanisms in the Electrochemical Oxidation of Ruthenium Complexes. [PDF]
Castaño Castañeda LC +4 more
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Reclaiming Ruthenium: A Comprehensive Review of Hydrometallurgical Strategies for Precious Metal Recovery. [PDF]
Rudnik E.
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1H-Imidazo[4,5-f][1,10]phenanthroline Derivatives as Promising Ligands for Ir and Ru Complex Compounds for Applications in LECs: Mini-Review. [PDF]
Krawiec A, Szłapa-Kula A, Kula S.
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FALCON-qPCR: a new method for the quantification of oxidative lesions in mitochondrial DNA. [PDF]
Bazzani V +11 more
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Organoruthenium Glycomimetics Exhibit High Selectivity and Nanomolar Affinity for Human Galectin-1. [PDF]
Hamala V +16 more
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The Role of Ruthenium Compounds in Neurologic Diseases: A Minireview
Ruthenium compounds, nitric oxide donors in biologic systems, have emerged as a promising therapeutic alternative to conventional drugs in anticancer chemotherapy and as a potential neuroprotective agent with fewer cytotoxic effects. This minireview summarizes promising studies with ruthenium complexes and their roles in cancer, neuroinflammation ...
Fátima Virgínia, Gama Justi +8 more
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AbstractChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 200 leading journals. To access a ChemInform Abstract, please click on HTML or PDF.
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Folates are potential ligands for ruthenium compounds in vivo
Dalton Trans., 2014A labile ruthenium(ii) complex has been observed to chelate to folates under physiologically relevant conditions. The diastereomeric complexes formed would interfere with the one-carbon carrying role of folatein vivo. This highlights the importance of considering small molecules alongside macromolecules when determining the chemical origins of ...
Tom G, Scrase +3 more
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