| Literature DB >> 22654578 |
Edyta Kostrzewa-Susłow1, Tomasz Janeczko.
Abstract
Microbial transformations of racemic 7-hydroxyflavanone using strains of genus Aspergillus (A. niger KB, A. niger 13/5, A. ochraceus 456) and the species Penicillium chermesinum 113 were studied. The products of O-methylation, O-methylation along with hydroxylation at C-3' and C-4', reduction of the carbonyl group, reduction of the carbonyl group along with hydroxylation at C-5, and dehydrogenation of C-2 and C-3 were obtained. Most of the products (with the exception of the O-methylation one) have stronger antioxidant properties than the initial substrate.Entities:
Mesh:
Substances:
Year: 2012 PMID: 22654578 PMCID: PMC3361144 DOI: 10.1100/2012/254929
Source DB: PubMed Journal: ScientificWorldJournal ISSN: 1537-744X
1H NMR chemical shifts (δ) of compounds 1 ÷ 6.
|
|
aSolvent CD3OD.
bSolvent CDCl3.
cSolvent DMSO-d6.
13C NMR chemical shifts (δ) of compounds 1 ÷ 6.
| Carbon | Compounds | |||||
|---|---|---|---|---|---|---|
| 1a | 2b | 3b | 4b | 5b | 6c | |
| C-2 | 81.1 | 80.2 | 80.0 | 77.0 | 73.8 | 162.8 |
| C-3 | 45.2 | 44.3 | 44.2 | 40.3 | 37.8 | 106.6 |
| C-4 | 193.1 | 192.2 | 190.8 | 65.6 | 59.5 | 176.4 |
| C-5 | 129.9 | 129.7 | 128.8 | 128.3 | 159.7 | 126.5 |
| C-6 | 111.9 | 110.1 | 110.3 | 108.8 | 92.0 | 115.1 |
| C-7 | 166.9 | 168.0 | 166.2 | 156.3 | 161.5 | 161.9 |
| C-8 | 103.9 | 100.9 | 100.9 | 103.0 | 93.5 | 102.6 |
| C-9 | 165.4 | 162.2 | 163.6 | 155.4 | 156.5 | 157.5 |
| C-10 | 115.1 | 126.2 | 114.7 | 118.7 | 106.3 | 116.1 |
| C-1′ | 140.7 | 130.3 | 138.7 | 140.4 | 141.0 | 131.3 |
| C-2′ | 127.4 | 127.9 | 115.5 | 126.0 | 126.3 | 126.2 |
| C-3′ | 129.7 | 130.1 | 135.2 | 128.7 | 128.8 | 129.1 |
| C-4′ | 129.6 | 128.8 | 135.4 | 128.3 | 128.1 | 131.6 |
| C-5′ | 129.7 | 130.1 | 115.4 | 128.7 | 128.8 | 129.1 |
| C-6′ | 127.4 | 127.9 | 115.9 | 126.0 | 126.3 | 126.2 |
| OCH3 | 55.7 | 55.6 | ||||
aSolvent CD3OD.
bSolvent CDCl3.
cSolvent DMSO-d6.
Scheme 1
Scheme 2Selected 1H NMR data for 2,4-cis-7-hydroxyflavan-4-ol (4), 2,4-trans-5,7-dihydroxyflavan-4-ol (5), and 2,4-cis-flavan-4-ol.
|
|
|
|
|
|
|
|
|
| |
|---|---|---|---|---|---|---|---|---|---|
| 2,4- | 5.17 | 5.08 | 2.13 | 2.51 | 13.06 | 11.62 | 1.83 | 10.59 | 6.27 |
| 2,4- | 5.15 | 5.03 | 2.09 | 2.49 | 13.20 | 11.30 | 1.80 | 9.90 | 6.20 |
| 2,4- | 5.22 | 5.52 | 3.05 | 2.89 | 16.90 | 8.40 | 16.70 | 13.30 | 2.90 |
UV absorption of 7-hydroxyflavanone (1) and its biotransformation products (2 ÷ 6).
| Compound | 1st band | 2nd band | 3rd band | |||
|---|---|---|---|---|---|---|
|
| log |
| log |
| log | |
| 7-Hydroxyflavanone ( | 237 | 4.15 | 275 | 4.18 | 310 | 3.95 |
| 7-Methoxyflavanone ( | 235 | 4.18 | 273 | 4.19 | 310 | 3.89 |
| 3′,4′-Dihydroxy-7-methoxyflavanone ( | 238 | 4.25 | 272 | 4.39 | 335 | 4.01 |
| 2,4- | 220 | 3.95 | 282 | 4.20 | — | — |
| 2,4- | 237 | 4.08 | 284 | 4.46 | — | — |
| 7-Hydroxyflavone ( | 254 | 4.32 | 302 | 4.34 | — | — |
The IC50 values of the 7-hydroxyflavanone (1) and the biotransformation products.
| Substrate | Product | IC50* (±SD) [ |
|---|---|---|
| 7-Hydroxyflavanone ( | 9.44 (±0.06) | |
| 3′,4′-Dihydroxy-7-methoxyflavanone ( | 6.70 (±0.07) | |
| 2,4- | 7.07 (±0.05) | |
| 7-Hydroxyflavone ( | 8.80 (±0.05) | |
| 2,4- | 9.17 (±0.03) | |
| 7-Methoxyflavanone ( | 9.50 (±0.07) |
*Mean values of IC50 calculated as an average of at least three measurements.