| Literature DB >> 35511335 |
Alfarius Eko Nugroho1, Masaki Tange1, Sumi Kusakabe1, Yusuke Hirasawa1, Osamu Shirota2, Michiyo Matsuno3, Hajime Mizukami3, Takahiro Tougan4, Toshihiro Horii5, Hiroshi Morita6.
Abstract
Bioactivity guided separation of Chukrasia velutina root methanolic extract led to the isolation of nine new isopimarane diterpenoids, chukranoids A-I (1-9). The absolute configuration was then assigned by comparing the experimental CD spectra and the calculated CD spectra. Chukranoids A-I (1-9) showed moderate antimalarial activity against Plasmodium falciparum 3D7 strain. It seems that conjugate system in the isopimarane skeleton may influence their antimalarial activity.Entities:
Keywords: Antimalarial activity; Chukranoids A–I; Chukrasia velutina; Isopimarane diterpenoid; Meliaceae
Mesh:
Substances:
Year: 2022 PMID: 35511335 PMCID: PMC9069220 DOI: 10.1007/s11418-022-01623-4
Source DB: PubMed Journal: J Nat Med ISSN: 1340-3443 Impact factor: 3.192
Fig. 1Structures of 1–9
1H and 13C NMR data of 1–5 in CDCl3
| No | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| δH | δC | δH | δC | δH | δC | δH | δC | δH | δC | |
| 1a | 1.10 (m) | 38.6 | 1.91 (m) | 31.4 | 6.96 (d, 10.4) | 153.3 | 1.54 (ddd, 14.6, 14.0, 3.5) | 37.7 | 1.11 (m) | 38.9 |
| 1b | 1.80 (m) | 2.14 (ddd, 13.8, 7.6, 1.7) | 2.16 (ddd, 14.0, 5.5, 3.5) | 1.75 (m) | ||||||
| 2a | 1.52 (m) | 18.6 | 2.54 (m) | 33.3 | 5.96 (d, 10.4) | 126.3 | 2.31 (ddd, 14.8, 3.5, 3.5) | 34.5 | 1.50 (m) | 18.7 |
| 2b | 1.59 (m) | 2.67 (ddd, 19.2, 7.2, 1.7) | 2.76 (ddd, 14.8, 14.6, 5.5) | 1.56 (m) | ||||||
| 3a | 1.19 (m) | 41.7 | 214.0 | 203.8 | 215.7 | 1.24 (m) | 43.3 | |||
| 3b | 1.47 (m) | 1.43 (m) | ||||||||
| 4 | 33.6 | 48.1 | 43.8 | 47.3 | 33.2 | |||||
| 5 | 1.29 (dd, 14.0, 3.4) | 54.0 | 143.1 | 1.93 (m) | 46.7 | 1.64 (m) | 50.2 | 1.20 (d, 10.3) | 56.7 | |
| 6a | 2.41 (dd, 14.5, 3.4) | 39.7 | 6.75 (brs) | 130.9 | 2.28 (2H, m) | 24.1 | 2.25 (2H, m) | 24.9 | 4.37 (brd, 10.3) | 69.1 |
| 6b | 2.31 (dd, 14.0, 14.5) | |||||||||
| 7 | 214.7 | 183.4 | 7.00 (m) | 137.7 | 6.96 (m) | 137.4 | 6.68 (brs) | 138.3 | ||
| 8 | 2.42 (d, 12.9) | 50.0 | 142.2 | 109.3 | 108.5 | 108.2 | ||||
| 9 | 1.68 (m) | 48.4 | 2.53 (m) | 44.5 | 2.40 (m) | 48.5 | 2.21 (m) | 51.7 | 2.23 (brd, 11.7) | 52.0 |
| 10 | 36.5 | 38.0 | 37.5 | 35.1 | 39.2 | |||||
| 11a | 1.38 (m) | 20.3 | 1.69 (m) | 19.4 | 1.17 (m) | 18.7 | 1.62 (m) | 18.6 | 1.50 (m) | 18.2 |
| 11b | 1.67 (m) | 1.87 (m) | 1.97 (m) | 1.80 (m) | 1.77 (m) | |||||
| 12a | 1.35 (m) | 28.8 | 1.56 (m) | 33.3 | 1.86 (2H, m) | 33.7 | 1.80 (m) | 33.8 | 1.78 (m) | 33.9 |
| 12b | 1.80 (m) | 1.65 (m) | 1.87 (m) | 1.86 (m) | ||||||
| 13 | 39.9 | 38.6 | 48.8 | 48.7 | 48.9 | |||||
| 14 | 3.98 (s) | 71.6 | 6.99 (m) | 145.7 | 202.6 | 202.8 | 203.3 | |||
| 15 | 5.99 (dd, 17.5, 11.0) | 147.1 | 5.83 (dd, 17.5, 10.7) | 145.6 | 6.16 (dd, 17.5, 10.8) | 143.2 | 6.17 (dd, 17.5, 11.1) | 143.4 | 6.16 (dd, 17.7, 10.7) | 143.2 |
| 16a | 5.02 (d, 17.5) | 111.7 | 5.02 (dd, 17.5, 1.1) | 112.6 | 5.05 (d, 17.5) | 113.0 | 5.05 (d, 17.5) | 112.7 | 5.05 (d, 17.7) | 112.8 |
| 16b | 5.06 (d, 11.0) | 5.04 (dd, 10.7, 1.1) | 5.11 (d, 10.8) | 5.11 (d, 11.1) | 5.15 (d, 10.7) | |||||
| 17 | 0.95 (3H, s) | 21.7 | 1.17 (3H, s) | 25.6 | 1.21 (3H, s) | 24.0 | 1.20 (3H, s) | 23.9 | 1.17 (3H, s) | 23.6 |
| 18 | 0.88 (3H, s) | 21.2 | 1.52 (3H, s) | 21.8 | 1.14 (3H, s) | 24.5 | 1.07 (3H, s) | 24.9 | 1.07 (3H, s) | 22.2 |
| 19 | 0.84 (3H, s) | 32.8 | 1.48 (3H, s) | 24.5 | 1.12 (3H, s) | 21.6 | 1.14 (3H, s) | 22.0 | 1.14 (3H, s) | 36.3 |
| 20 | 1.08 (3H, s) | 13.5 | 0.97 (3H, s) | 19.2 | 1.08 (3H, s) | 13.9 | 1.08 (3H, s) | 13.6 | 0.90 (3H, s) | 14.9 |
Fig. 2Selected 2D-NMR correlations of 1
Fig. 3Selected 2D-NMR correlations of 2
Fig. 4Selected 2D-NMR correlations of 3 and 5
1H and 13C NMR data of 6–9 in CDCl3
| No | ||||||||
|---|---|---|---|---|---|---|---|---|
| δH | δC | δH | δC | δH | δC | δH | δC | |
| 1a | 7.08 (d, 10.3) | 154.1 | 6.81 (d, 10.3) | 152.1 | 7.18 (d, 10.3) | 151.9 | 1.86 (m) | 38.9 |
| 1b | 1.07 (m) | |||||||
| 2a | 5.98 (d, 10.3) | 126.7 | 5.93 (d, 10.3) | 126.4 | 6.00 (d, 10.3) | 127.3 | 1.50 (2H, m) | 18.7 |
| 2b | ||||||||
| 3a | 203.4 | 203.6 | 202.9 | 1.90 (m) | 35.4 | |||
| 3b | 0.94 (m) | |||||||
| 4 | 44.5 | 44.0 | 44.0 | 37.8 | ||||
| 5 | 2.04 (dd, 14.4, 3.0) | 51.1 | 1.91 (m) | 41.7 | 2.47 (dd, 12.7, 5.2) | 46.6 | 1.40 (dd, 12.2, 5.1) | 50.1 |
| 6a | 2.44 (dd, 14.4, 3.0) | 38.9 | 1.94 (m) | 21.9 | 2.58 (m) | 35.0 | 2.35 (m) | 24.4 |
| 6b | 2.53 (dd, 14.4, 14.4) | 2.18 (brd, 11.7) | 2.59 (m) | 2.15 (m) | ||||
| 7 | 210.0 | 3.84 (brs) | 59.3 | 198.1 | 6.89 (m) | 137.9 | ||
| 8 | 2.40 (ddd, 12.4,12.4, 3.3) | 45.4 | 57.8 | 130.5 | 109.1 | |||
| 9 | 1.32 (m) | 51.6 | 2.07 (m) | 47.6 | 160.5 | 2.18 (m) | 52.7 | |
| 10 | 38.8 | 37.0 | 41.9 | 35.2 | ||||
| 11a | 1.55 (m) | 21.4 | 1.78 (m) | 18.7 | 2.33 (m) | 24.5 | 1.75 (m) | 18.4 |
| 11b | 1.86 (m) | 2.09 (m) | 2.42 (m) | 2.53 (m) | ||||
| 12a | 1.56 (m) | 36.2 | 1.91 (m) | 32.5 | 1.43 (m) | 33.6 | 1.83 (m) | 34.0 |
| 12b | 2.23 (m) | 2.07 (m) | 1.69 (m) | 1.77 (m) | ||||
| 13 | 35.7 | 50.3 | 34.4 | 48.6 | ||||
| 14a | 1.30 (m) | 36.1 | 208.7 | 2.08 (d, 17.9) | 33.3 | 203.2 | ||
| 14b | 1.90 (m) | 2.39 (d, 17.9) | ||||||
| 15 | 5.81 (dd, 17.5, 10.7) | 149.7 | 5.98 (dd, 17.5, 10.7) | 142.0 | 5.66 (dd, 17.6, 10.8) | 144.5 | 6.17 (dd, 17.7, 10.9) | 143.7 |
| 16a | 4.99 (d, 17.5) | 109.8 | 5.07 (d, 17.5) | 113.8 | 4.83 (d, 17.6) | 112.1 | 5.04 (d, 17.7) | 112.5 |
| 16b | 4.91 (d, 10.7) | 5.12 (d, 10.7) | 4.93 (d, 10.8) | 5.09 (d, 10.9) | ||||
| 17 | 1.00 (3H, s) | 21.9 | 1.24 (3H, s) | 23.6 | 1.05 (3H, s) | 28.1 | 1.16 (3H, s) | 23.9 |
| 18 | 1.12 (3H, s) | 21.5 | 1.13 (3H, s) | 24.2 | 1.09 (3H, s) | 25.3 | 0.98 (3H, s) | 26.5 |
| 19a | 1.14 (3H, s) | 26.3 | 1.08 (3H, s) | 22.4 | 1.13 (3H, s) | 21.4 | 3.85 (d, 10.9) | 64.9 |
| 19b | 3.55 (d, 10.9) | |||||||
| 20 | 1.33 (3H, s) | 15.5 | 1.10 (3H, s) | 15.8 | 1.35 (3H, s) | 22.2 | 0.82 (3H, s) | 14.8 |
Fig. 5Selected 2D-NMR correlations of 6
Fig. 6Selected 2D-NMR correlations of 7
Fig. 7Selected 2D-NMR correlations of 9
Fig. 8Calculated and experimental CD spectra of chukranoid E (3)
Antimalarial activity of 1–9 against P. falciparum 3D7 strain
| IC50 (µM) | |
|---|---|
| > 50 (GI = 12.8% at 50 μM) | |
| 26.3 | |
| 22.7 | |
| 28.4 | |
| 32.0 | |
| 33.7 | |
| 32.1 | |
| 21.4 | |
| 31.8 |
IC50: half-maximal (50%) inhibitory concentration, GI : growth inhibition