| Literature DB >> 35516244 |
Isaraporn Polbuppha1,2, Virayu Suthiphasilp1, Tharakorn Maneerat1,3, Rawiwan Charoensup3,4, Thunwadee Limtharakul5, Sarot Cheenpracha6, Stephen G Pyne2, Surat Laphookhieo1,3.
Abstract
Two rare flavones having a hybrid benzyl benzoate ester-flavone structural framework, desmoschinensisflavones A and B (1 and 2), together with 12 known compounds (3-14) were isolated from the fruit, leaf, and twig extracts of Desmos chinensis (red flower). The new structures were characterized by UV, IR, NMR, and HRESITOFMS data. Desmoschinensisflavones A and B have a distinctive skeleton of benzoate ester-flavones with a C-4'' and C-6 and C-8 connection via a methylene group, respectively. Plausible biosynthesis pathways to compounds 1 and 2 are proposed based on an intermolecular nucleophilic 1,4-addition to ortho-quinone intermediates. Compounds 6-8 and 12 showed weakly antioxidant inhibition with IC50 values in the range of 65.4-74.6 μM. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35516244 PMCID: PMC9058655 DOI: 10.1039/d0ra09985f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1Isolated compounds (1–14) from the fruit, leaf, and twig extracts of D. chinensis.
NMR Spectroscopic data of compounds 1 and 2 (400 MHz in CDCl3)
| Position | 1 | 2 | ||||
|---|---|---|---|---|---|---|
|
|
| HMBC (1H → 13C) |
|
| HMBC (1H → 13C) | |
|
| ||||||
| 2 | 163.4 | 163.3 | ||||
| 3 | 105.1 | 6.65 (s) | 2, 4, 4a, 1′ | 104.1 | 6.70 (s) | 2, 4, 4a |
| 4 | 182.9 | 182.7 | ||||
| 4a | 105.0 | 105.0 | ||||
| 5 | 157.1 | 157.7 | ||||
| 6 | 110.4 | 106.0 | ||||
| 7 | 158.9 | 159.2 | ||||
| 8 | 103.1 | 104.7 | ||||
| 8a | 153.7 | 152.8 | ||||
| α | 21.1 | 3.93 (s) | 5, 6, 7, 4′′, 5′′ | 29.7 | 4.13 (s) | 7, 8, 8a, 3′′, 4′′, 5′′ |
| 1′ | 131.6 | 131.7 | ||||
| 2′ | 126.2 | 7.90 (dd, 7.5, 1.9) | 2, 1′ | 126.2 | 7.91 (dd, 7.4, 2.0) | 2 |
| 3′ | 129.2 | 7.48–7.56 (m) | 2′, 4′ | 129.1 | 7.58–7.59 (m) | 4′ |
| 4′ | 131.8 | 7.48–7.56 (m) | 2′, 3′, 5′ | 131.8 | 7.58–7.59 (m) | |
| 5′ | 129.2 | 7.48–7.56 (m) | 2′, 4′ | 129.1 | 7.58–7.59 (m) | 4′ |
| 6′ | 126.2 | 7.90 (dd, 7.5, 1.9) | 2, 1′ | 126.2 | 7.91 (dd, 7.4, 2.0) | 2 |
|
| ||||||
| 1′′ | 169.7 | 169.6 | ||||
| 2′′ | 99.5 | 99.8 | ||||
| 3′′ | 156.1 | 154.5 | ||||
| 4′′ | 118.8 | 118.2 | ||||
| 5′′ | 139.5 | 7.77 (d, 8.6) | α, 3′′, 7′′ | 138.0 | 7.43–7.45 (m) | |
| 6′′ | 109.7 | 6.51 (d, 8.6) | 2′′, 7′′ | 109.7 | 6.39 (d, 8.6) | 2′′, 4′′ |
| 7′′ | 159.0 | 158.1 | ||||
| 1′′′ | 68.6 | 5.52 (s) | 1′′, 2′′′, 3′′′ | 68.8 | 5.54 (s) | 1′′, 2′′′, 3′′′ |
| 2′′′ | 133.6 | 133.3 | ||||
| 3′′′ | 128.8 | 7.40–7.48 (m) | 2′′′ | 128.9 | 7.43–7.45 (m) | |
| 4′′′ | 129.1 | 7.40–7.48 (m) | 129.3 | 7.43–7.45 (m) | ||
| 5′′′ | 129.4 | 7.40–7.48 (m) | 3′′′, 7′′′ | 129.5 | 7.43–7.45 (m) | |
| 6′′′ | 129.1 | 7.40–7.48 (m) | 129.3 | 7.43–7.45 (m) | ||
| 7′′′ | 128.8 | 7.40–7.48 (m) | 2′′′ | 128.9 | 7.43–7.45 (m) | |
| OH-5 | 13.10 (s) | 4a, 5, 6 | 12.94 (s) | |||
| CH3-6 | 7.7 | 2.15 (s) | 5, 6, 7 | |||
| OH-7 | 8.39 (s) | 7, 8 | 8.19 (s) | 8 | ||
| CH3-8 | 8.1 | 2.32 (s) | 7, 8, 8a | |||
Fig. 2COSY, selected HMBC (1H → 13C), and NOESY (1H → 1H) correlations of compounds 1 and 2.
Scheme 1Plausible biosynthetic pathway for 1 and 2.