Register      Login
Australian Journal of Biological Sciences Australian Journal of Biological Sciences Society
Biological Sciences

Articles citing this paper

The Metabolic Fate of Tris-1,10-Phenanthroline 106Ruthenium (II) Perchlorate, a Compound With Anticholinesterase and Curare-Like Activity

Judith H Koch, WP Rogers, FP Dwyer and Eleanora C Gyarfas
10(3) pp.342 - 350


35 articles found in Crossref database.

Bonding Structure (1976)
Craig David P., Mellor David P.
New [Ru(5,6-dmp/3,4,7,8-tmp)2(diimine)]2+ complexes: Non-covalent DNA and protein binding, anticancer activity and fluorescent probes for nuclear and protein components
Rajendiran Venugopal, Palaniandavar Mallayan, Periasamy Vaiyapuri Subbarayan, Akbarsha Mohammad Abdulkader
Journal of Inorganic Biochemistry. 2012 116 p.151
Action of 1,10-phenanthroline transition metal chelates on P388 mouse lymphocytic leukaemic cells
Shulman A., Laycock Glenda M., Bradley T.R.
Chemico-Biological Interactions. 1977 16(1). p.89
Fission products: Retention and elimination of the parent-daughter radionuclide pair Ruthenium-103-Rhodium-103m by rats
Sastry B.V.Rama
Toxicology and Applied Pharmacology. 1966 9(3). p.419
Anticancer activity of two novel ruthenium compounds in gastric cancer cells
Ramírez-Rivera S., Pizarro S., Gallardo M., Gajardo F., Delgadillo A., De La Fuente-Ortega E., MacDonnell F.M., Bernal G.
Life Sciences. 2018 213 p.57
Exploration of the Pharmacophore for Cytoskeletal Targeting Ruthenium Polypyridyl Complexes
Reardon Melissa M., Guerrero Matthew, Alatrash Nagham, MacDonnell Frederick M.
ChemMedChem. 2023 18(21).
Targeting proteins with metal complexes
Meggers Eric
Chemical Communications. 2009 (9). p.1001
A novel bonding of 6,7-dichloroquinoxlaine-2,3-dione, DCQX, to two molybdenum (0) metal centers: Synthesis, characterization, biological activity studies and semiempirical calculations of [(bpy)2Mo(μ2-κ2:η6-DCQX)Mo(CO)3] complex
Attia Attia S., Abdel Aziz Ayman A., Alfallous Khalifa A., El-Shahat M.F.
Polyhedron. 2012 44(1). p.238
Sixty Years Young: The Diverse Biological Activities of Metal Polypyridyl Complexes Pioneered by Francis P. Dwyer
Kilah Nathan L., Meggers Eric
Australian Journal of Chemistry. 2012 65(9). p.1325
Metallointercalators (2011)
Orkey Nikita, Wormell Paul, Aldrich-Wright Janice
The development of ruthenium(ii) polypyridyl complexes and conjugates forin vitrocellular andin vivoapplications
Poynton Fergus E., Bright Sandra A., Blasco Salvador, Williams D. Clive, Kelly John M., Gunnlaugsson Thorfinnur
Chemical Society Reviews. 2017 46(24). p.7706
A dual-fluorescent nano-carrier for delivering photoactive ruthenium polypyridyl complexes
Shi Hongdong, Fang Tiantian, Tian Yao, Huang Hai, Liu Yangzhong
Journal of Materials Chemistry B. 2016 4(27). p.4746
The effects of neuromuscular blocking agents on mitochondria—II
Koch J.H., Gallagher C.H.
Biochemical Pharmacology. 1965 14(3). p.237
Use of 103Ru-labelled tris (1,10-phenanthroline) ruthenium (II) chloride as a marker in digestion studies with sheep
Tan T.N., Weston R.H., Hogan J.P.
The International Journal of Applied Radiation and Isotopes. 1971 22(5). p.301
The action of selected metal complexes on receptor systems of isolated organs. Part I. The action of selected ruthenium (II) phenanthroline chelates on the cholinergic mechanism of the rat intestine and guinea-pig ileum
Shulman A., Laycock Glenda M., Ariëns E.J., Wigmans Antoinette R.H.
European Journal of Pharmacology. 1970 9(3). p.347
The effects of neuromuscular blocking agents on mitochondria—I
Koch J.H., Gallagher C.H.
Biochemical Pharmacology. 1960 3(3). p.231
Virostatic activity of 1,10-phenanthroline transition metal chelates: A structure-activity analysis
Shulman A., White D.O.
Chemico-Biological Interactions. 1973 6(6). p.407
Medicinal Organometallic Chemistry (2010)
Mulcahy Seann P., Meggers Eric
Synthesis, DNA Cleavage Activity, Cytotoxicity, Acetylcholinesterase Inhibition, and Acute Murine Toxicity of Redox‐Active Ruthenium(II) Polypyridyl Complexes
Alatrash Nagham, Narh Eugenia S., Yadav Abhishek, Kim Mahn‐Jong, Janaratne Thamara, Gabriel James, MacDonnell Frederick M.
ChemMedChem. 2017 12(13). p.1055
Visible Light‐Responsive Dynamic Biomaterials: Going Deeper and Triggering More
Rapp Teresa L., DeForest Cole A.
Advanced Healthcare Materials. 2020 9(7).
Exploring biologically relevant chemical space with metal complexes
Meggers Eric
Current Opinion in Chemical Biology. 2007 11(3). p.287
Structure‐based biological investigations on ruthenium complexes containing 2,2′‐bipyridine ligands and their applications in photodynamic therapy as a potential photosensitizer
Puttaswamy Naveen Y., Mahanta Pranami, Sarma Pranjit, Medhi Chitrani, Kaid Sanaa Mohammed Abdu, Kullaiah Byrappa, Basumatary Debajani, Manjasetty Babu A.
Chemical Biology & Drug Design. 2023 102(6). p.1506
Cellular and cell-free studies of catalytic DNA cleavage by ruthenium polypyridyl complexes containing redox-active intercalating ligands
Griffith Cynthia, Dayoub Adam S., Jaranatne Thamara, Alatrash Nagham, Mohamedi Ali, Abayan Kenneth, Breitbach Zachary S., Armstrong Daniel W., MacDonnell Frederick M.
Chemical Science. 2017 8(5). p.3726
Negligible interaction of [Ru(Phen)3]2+ with human serum albumin makes it promising for a reliable in vivo assessment of the tissue oxygenation
Belej Dominik, Jurasekova Zuzana, Nemergut Michal, Wagnieres Georges, Jancura Daniel, Huntosova Veronika
Journal of Inorganic Biochemistry. 2017 174 p.37
Photoresponsive ruthenium-containing polymers: potential polymeric metallodrugs for anticancer phototherapy
Sun Wen, Zeng Xiaolong, Wu Si
Dalton Transactions. 2018 47(2). p.283
Chelating Agents and Metal Chelates (1964)
SHULMAN A., DWYER F.P.
An Amphiphilic Ruthenium Polymetallodrug for Combined Photodynamic Therapy and Photochemotherapy In Vivo
Sun Wen, Li Shuyi, Häupler Bernhard, Liu Juan, Jin Shubin, Steffen Werner, Schubert Ulrich S., Butt Hans‐Jürgen, Liang Xing‐Jie, Wu Si
Advanced Materials. 2017 29(6).
Photoactivable Ruthenium-Based Coordination Polymer Nanoparticles for Light-Induced Chemotherapy
Zhang Junda, Ramu Vadde, Zhou Xue-Quan, Frias Carolina, Ruiz-Molina Daniel, Bonnet Sylvestre, Roscini Claudio, Novio Fernando
Nanomaterials. 2021 11(11). p.3089
Endosomes: guardians against [Ru(Phen)3]2+photo-action in endothelial cells during in vivo pO2detection?
Huntosova Veronika, Stroffekova Katarina, Wagnieres Georges, Novotova Marta, Nichtova Zuzana, Miskovsky Pavol
Metallomics. 2014 6(12). p.2279
Temperature and oxygen-concentration dependence of singlet oxygen production by RuPhen as induced by quasi-continuous excitation
Varchola Jaroslav, Huntosova Veronika, Jancura Daniel, Wagnières Georges, Miskovsky Pavol, Bánó Gregor
Photochemical & Photobiological Sciences. 2014 13(12). p.1781
Light-sensitive ruthenium complex-loaded cross-linked polymeric nanoassemblies for the treatment of cancer
Dickerson Matthew, Howerton Brock, Bae Younsoo, C. Glazer Edith
Journal of Materials Chemistry B. 2016 4(3). p.394
Biocompatible ruthenium polypyridyl complexes as efficient radiosensitizers
Xiong Zushuang, Zhong Jing-Xiang, Zhao Zhennan, Chen Tianfeng
Dalton Transactions. 2019 48(13). p.4114
Regression of Lung Cancer by Hypoxia-Sensitizing Ruthenium Polypyridyl Complexes
Yadav Abhishek, Janaratne Thamara, Krishnan Arthi, Singhal Sharad S., Yadav Sushma, Dayoub Adam S., Hawkins Doyle L., Awasthi Sanjay, MacDonnell Frederick M.
Molecular Cancer Therapeutics. 2013 12(5). p.643
Redesigning Nature: Ruthenium Flavonoid Complexes with Antitumour, Antimicrobial and Cardioprotective Activities
Santos Nádia E., Braga Susana Santos
Molecules. 2021 26(15). p.4544
President of the sixth international congress of parasitology: The life and work of William Percy Rogers, with an appreciation of his contribution to parasitology
Sommerville R.I., Bryant C.
International Journal for Parasitology. 1986 16(3). p.177
Abstract PDF (2.5 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email