1. Synthesis and characterization of 5-amino-2-((3-hydroxy-4-((3-hydroxyphenyl) phenyl) diazenyl) phenol and its Cu(II) complex – a strategy toward developing azo complexes for reduction of cytotoxicity
- Author
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Durba Ganguly, Saurabh Das, Ramesh Chandra Santra, Tuhinadri Sen, Ratul Sarkar, and Tathagata Deb
- Subjects
Cyclic voltammetry ,Stereochemistry ,lcsh:Analytical chemistry ,Azo-bond cleavage ,medicine.disease_cause ,Bacterial cell structure ,chemistry.chemical_compound ,Mass spectroscopy ,medicine ,lcsh:QD901-999 ,Phenol ,Cytotoxicity ,Escherichia coli ,Carcinogen ,chemistry.chemical_classification ,lcsh:QD71-142 ,biology ,General Medicine ,Enzyme assay ,Enzyme ,chemistry ,biology.protein ,lcsh:Crystallography ,5-amino-2-((3-hydroxy-4-((3-hydroxyphenyl) phenyl) diazenyl) phenol - Abstract
A major drawback of azo compounds is their associated toxicity, often carcinogenic, which is related to the reduction of the azo bond. This study intends to re-investigate this behavior by studying 5-amino-2-((3-hydroxy-4-((3-hydroxyphenyl) phenyl) diazenyl) phenol (AHPD), a compound containing two azo bonds. Interaction of AHPD and its dimeric Cu(II) complex with bacterial strains Escherichia coli and Staphylococcus aureus revealed the complex was less toxic. Reductive cleavage of the azo bond in AHPD and the complex followed using cytochrome c reductase (a model azo-reductase) as well as azo-reductase enzymes obtained from bacterial cell extracts. Degradation of the azo bond was less in the complex allowing us to correlate the observed cytotoxicity. Cyclic voltammetry on AHPD and the complex support observations of enzyme assay experiments. These were particularly useful in realizing the formation of amines as an outcome of the reductive cleavage of azo bonds in AHPD that could not be identified through an enzyme assay. Results suggest that complex formation of azo compounds could be a means to control the formation of amines responsible for cytotoxicity. Studies carried out on bacterial cells for mere simplicity bear significance for multicellular organisms and could be important for human beings involved with the preparation and utilization of azo dyes.
- Published
- 2014