| Literature DB >> 21906282 |
Juliana Ivanova1, Ivayla N Pantcheva, Mariana Mitewa, Svetlana Simova, Makoto Tanabe, Kohtaro Osakada.
Abstract
BACKGROUND: The natural polyether ionophorous antibiotics are used for the treatment of coccidiosis in poultry and ruminants. They are effective agents against infections caused by Gram-positive microorganisms. On the other hand, it was found that some of these compounds selectively bind lead(II) ions in in vivo experiments, despite so far no Pb(II)-containing compounds of defined composition have been isolated and characterized. To assess the potential of polyether ionophores as possible antidotes in the agriculture, a detailed study on their in vitro complexation with toxic metal ions is required. In the present paper we report for the first time the preparation and the structure elucidation of salinomycin complexes with ions of cadmium(II) and lead(II).Entities:
Year: 2011 PMID: 21906282 PMCID: PMC3184049 DOI: 10.1186/1752-153X-5-52
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Scheme 1Structural formula and numbering sequence (carbon and oxygen atoms) of salinomycinic acid.
Figure 1.
Figure 2.
13C-NMR chemical shifts (150 MHz, acetonitrile-d3) of salinomycinic acid (SalH), sodium salinomycin (SalNa) and complexes 1-2
| C-atom | SalH | SalNa | 1 | 2 |
|---|---|---|---|---|
| 11C = O | 215.53 | 220.23 | 216.77 | 215.75 |
| 1COOH | 177.86 | 185.06 | 184.98 | 184.60 |
| 19CH = | 133.65 | 130.58 | 132.59 | 133.03 |
| 18CH = | 123.43 | 123.57 | 122.23 | 123.95 |
| *21C | 107.72 | 107.52 | 107.44 | 108.96 |
| *17C | 100.14 | 100.00 | 100.24 | 99.99 |
| *24C | 89.04 | 89.20 | 88.84 | 89.33 |
| 29CH | 77.83 | 77.88 | 78.14 | 78.11 |
| 13CH | 78.60 | 76.87 | 78.76 | 77.41 |
| 3CH | 75.51 | 76.99 | 76.84 | 75.24 |
| 25CH | 75.05 | 75.11 | 74.67 | 76.05 |
| 7CH | 72.73 | 72.12 | 72.13 | 72.30 |
| *28C | 71.47 | 70.8 | 71.87 | 73.74 |
| 9CH | 69.89 | 69.24 | 69.63 | 70.60 |
| 20CH | 68.10 | 67.46 | 67.70 | 67.22 |
| 12CH | 56.80 | 56.55 | 57.28 | 54.58 |
| 2CH | 49.25 | 51.62 | 49.24 | 55.08 |
| 10CH | 49.09 | 49.91 | 48.69 | 49.59 |
| 16CH | 41.42 | 41.48 | 41.73 | 41.74 |
| 15CH2 | 39.09 | 39.16 | 39.39 | 38.90 |
| 22CH2 | 37.49 | 38.10 | 36.57 | 36.64 |
| 8CH | 37.06 | 36.76 | 36.92 | 36.43 |
| 14CH | 33.66 | 33.44 | 33.89 | 33.55 |
| 23CH2 | 31.53 | 33.15 | 32.37 | 33.91 |
| 31CH2 | 31.92 | 32.86 | 32.09 | 31.92 |
| 27CH2 | 30.19 | 29.57 | 30.24 | 30.47 |
| 6CH | 29.06 | 28.94 | 29.15 | 28.97 |
| 33CH3 | 26.03 | 27.76 | 26.07 | 28.97 |
| 5CH2 | 26.94 | 27.43 | 27.13 | 27.02 |
| 41CH2 | 23.47 | 24.17 | 23.56 | 24.85 |
| 26CH2 | 22.72 | 20.42 | 22.41 | 20.47 |
| 4CH2 | 20.77 | 20.72 | 21.16 | 21.50 |
| 35CH3 | 17.86 | 17.87 | 18.19 | 17.95 |
| 36CH2 | 18.68 | 16.20 | 19.39 | 17.02 |
| 34CH3 | 15.99 | 16.29 | 16.07 | 16.06 |
| 30CH3 | 15.31 | 15.12 | 15.24 | 14.8 |
| 38CH3 | 13.47 | 12.94 | 13.70 | 13.34 |
| 37CH3 | 14.15 | 13.31 | 14.09 | 13.81 |
| 42CH3 | 12.20 | 12.94 | 12.71 | 13.01 |
| 40CH3 | 11.65 | 11.27 | 12.09 | 11.59 |
| 39CH3 | 7.83 | 7.18 | 7.97 | 7.48 |
| 32CH3 | 6.79 | 6.87 | 6.94 | 6.83 |
Figure 3FAB-MS spectra of complexes .
Scheme 2Proposed structures of a) [Cd(Sal).