Dicobalt Edetate - 36499-65-7
Dicobalt Edetate
Catalog Number: BT-264458
CAS Number: 36499-65-7
Molecular Formula: C10H12Co2N2O8
Molecular Weight: 406.08 g/mol
The product is for non-human research only. Not for therapeutic or veterinary use.
Product Introduction
Description
Dicobalt edetate, also known as cobaltous edetate, is a coordination compound of cobalt and ethylenediaminetetraacetic acid (EDTA). It has been used in medical, environmental, and industrial research due to its unique chemical structure and biological activity.
Properties
CAS Number
36499-65-7
Product Name
Dicobalt Edetate
IUPAC Name
2-[2-[bis(carboxylatomethyl)amino]ethyl-(carboxylatomethyl)amino]acetate;cobalt(2+)
Molecular Formula
C10H12Co2N2O8
Molecular Weight
406.08 g/mol
InChI
InChI=1S/C10H16N2O8.2Co/c13-7(14)3-11(4-8(15)16)1-2-12(5-9(17)18)6-10(19)20;;/h1-6H2,(H,13,14)(H,15,16)(H,17,18)(H,19,20);;/q;2*+2/p-4
InChI Key
TWAWHTJKASJPEK-UHFFFAOYSA-J
SMILES
C(CN(CC(=O)[O-])CC(=O)[O-])N(CC(=O)[O-])CC(=O)[O-].[Co+2].[Co+2]
Solubility
Soluble in DMSO
Synonyms
cobalt tetracemate
cobalt(2+)((ethylenedinitrilo)tetraacetato)cobaltate(2-)-
cobalt-EDTA complex
cobalt-ethylenediamine tetraacetic acid chelate
cobalt-ethylenediamine tetraacetic acid chelate, disodium salt
dicobalt edetate
EDTA cobalt salt
EDTA-cobalt chelate
Kelocyano
Canonical SMILES
C(CN(CC(=O)[O-])CC(=O)[O-])N(CC(=O)[O-])CC(=O)[O-].[Co+2].[Co+2]
Method of Synthesis or Extraction
Dicobalt edetate can be synthesized by reacting cobalt chloride with EDTA in an aqueous solution. The reaction yields a blue-green crystalline solid that is soluble in water. Another method of synthesis involves the reaction of cobalt carbonate with EDTA in an aqueous solution. The efficiency and yield of each method depend on the purity of the starting materials and the reaction conditions. The environmental and safety considerations of dicobalt edetate include its potential toxicity to aquatic organisms and its potential to bioaccumulate in the environment.
Chemical Structure and Biological Activity
Dicobalt edetate has a unique chemical structure that consists of two cobalt ions coordinated to four EDTA ligands. The cobalt ions are in a high-spin state, which makes them paramagnetic. The biological activity of dicobalt edetate is due to its ability to bind to metalloproteins and enzymes, which can affect their function. It has been shown to inhibit the activity of certain enzymes, such as carbonic anhydrase and acetylcholinesterase, which are involved in various physiological processes.
Biological Effects
Dicobalt edetate has been shown to have potential therapeutic effects in the treatment of certain diseases, such as Alzheimer's disease and cancer. It has also been shown to have toxic effects on cells, particularly on mitochondrial function and signal transduction pathways. The potential therapeutic and toxic effects of dicobalt edetate depend on the dose and duration of exposure.
Applications
In medical research, dicobalt edetate has been used in drug development and clinical trials. It has been shown to have potential benefits in the treatment of Alzheimer's disease and cancer, but its potential side effects need to be further studied. In environmental research, dicobalt edetate has been used to study its effects on ecosystems and its role in pollution management. It has been shown to have potential sustainability and environmental impact, but its potential toxicity to aquatic organisms needs to be further studied. In industrial research, dicobalt edetate has been used in manufacturing processes to improve product quality and efficiency. Health and safety considerations need to be taken into account when using dicobalt edetate in industrial applications.
Future Perspectives and Challenges
The current limitations in the use and study of dicobalt edetate include its potential toxicity and limited understanding of its biological effects. Possible solutions and improvements include further studies on its toxicity and biological effects, as well as the development of safer and more effective derivatives. Future trends and prospects in the application of dicobalt edetate in scientific research include its potential use in the development of new drugs and its role in environmental sustainability.
Conclusion:
Dicobalt edetate is a coordination compound of cobalt and EDTA that has been used in medical, environmental, and industrial research. Its unique chemical structure and biological activity make it a promising compound for further study and application. However, its potential toxicity and limited understanding of its biological effects need to be further studied and addressed.
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