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Cytotoxic titanium(IV) complexes: Renaissance
Edit Y. Tshuva
, James A. Ashenhurst
Institute of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
92
Scopus citations
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Keyphrases
Titanium(IV) Complexes
100%
Renaissance
100%
Cytotoxic Activity
100%
Titanocene Dichloride
100%
Hydrolytic
66%
Biological Activity
33%
Amines
33%
Strong Correlation
33%
Ligand Binding
33%
Cytotoxicity
33%
Tetradentate Ligand
33%
Hydrolysis
33%
Mechanistic Aspects
33%
Structure-activity Relationship
33%
Pharmaceutical Expenditure
33%
Mechanistic Investigation
33%
Reduced Side Effects
33%
Control Process
33%
Hydro
33%
Cisplatin
33%
Mechanism Evaluation
33%
Hydrolytic Stability
33%
Mechanistic Studies
33%
Chelating Ligands
33%
Electron-donating
33%
Cytotoxic Agents
33%
Cell Penetration
33%
Chemistry
Titanium
100%
Titanocene
100%
hydrolytic
100%
Bioactivity
33%
Structure-Activity Relationship
33%
Cytotoxic Agent
33%
Cisplatin
33%
Mechanistic Study
33%
Cytotoxic
33%
Enzymatic Hydrolysis
33%
stability
33%
Pharmacology, Toxicology and Pharmaceutical Science
Cytotoxicity
100%
Titanocene Dichloride
75%
Budotitane
75%
Side Effect
25%
Structure Activity Relationship
25%
Cisplatin
25%
Biological Activity
25%
Cytotoxic Agent
25%
Biochemistry, Genetics and Molecular Biology
Cytotoxicity
100%
Ligand Binding
25%
Enzymatic Hydrolysis
25%
Biological Activity
25%
Structure Activity Relation
25%
Cisplatin
25%