Publication: Transition metal complexes of 8-aminoquinoline-5-substituted uracils with antioxidative and cytotoxic activities
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Issued Date
2013
Resource Type
File Type
application/pdf
ISSN
15701808
Other identifier(s)
2-s2.0-84887864374
Rights Holder(s)
Scopus
Bibliographic Citation
Letters in Drug Design and Discovery. Vol 10, No.9 (2013), p.859-864
Suggested Citation
Pingaew R., Worachartcheewan A., Prachayasittikul V., Prachayasittikul S., Ruchirawat S., Prachayasittikul V. Transition metal complexes of 8-aminoquinoline-5-substituted uracils with antioxidative and cytotoxic activities. Letters in Drug Design and Discovery. Vol 10, No.9 (2013), p.859-864. doi:10.2174/15701808113109990004 Retrieved from: https://hdl.handle.net/20.500.14740/6523
Abstract
Metal complexes of 8-aminoquinoline (8AQ) derivatives were reported. This study presents a series of synthesized transition metal complexes of mixed ligands 8AQ-5-iodouracils (1-3) and 8AQ-5-nitrouracil (4-6) which have been investigated for their antioxidative and cytotoxic activities, as well as, powder X-ray diffraction patterns. Ni complex of 8AQ-5-nitrouracil (6) exerted significant cytotoxicity against MOLT-3 cell and superoxide scavenging activity. The results demonstrate an application of 8AQ molecule as a potential ligand for new bioactive compounds. ©2013 Bentham Science Publishers.
Subject(s)
8 aminoquinoline derivative
Copper complex
Doxorubicin
Etoposide
Ligand
Manganese derivative
Metal complex
Nickel complex
Reactive nitrogen species
Reactive oxygen metabolite
Superoxide
Superoxide dismutase
Transition element
Uracil derivative
Antioxidant activity
Article
Cancer cell culture
Complex formation
Controlled study
Drug cytotoxicity
Drug synthesis
Human
Human cell
IC 50
Infrared spectroscopy
Priority journal
Structure activity relation
X ray powder diffraction
Copper complex
Doxorubicin
Etoposide
Ligand
Manganese derivative
Metal complex
Nickel complex
Reactive nitrogen species
Reactive oxygen metabolite
Superoxide
Superoxide dismutase
Transition element
Uracil derivative
Antioxidant activity
Article
Cancer cell culture
Complex formation
Controlled study
Drug cytotoxicity
Drug synthesis
Human
Human cell
IC 50
Infrared spectroscopy
Priority journal
Structure activity relation
X ray powder diffraction
