| Literature DB >> 26961724 |
Yuanyuan Lu1,2, Yongbo Xue1, Shenjie Chen1, Hucheng Zhu1, Jinwen Zhang2, Xiao-Nian Li3, Jianping Wang1, JunJun Liu1, Changxing Qi1, Guang Du2, Yonghui Zhang1.
Abstract
Eleven new lignans and neolignans, named acortatarinowins G-N (1-8), including three pairs of enantiomers (1a/1b-3a/3b) and five optically pure lignans and neolignans (4-8), along with five known analogs (9-14), were isolated from the rhizomes of Acorus tatarinowii Schott. Compounds 1-3 were successfully separated by chiral HPLC to afford 1a/1b-3a/3b. The planar structures of 1-8 were elucidated by extensive spectroscopic analyses including HRESIMS and NMR. Their absolute configurations were determined by analyses of single-crystal X-ray diffraction and a modified Mosher's method, assisted by experimental and calculated electronic circular dichroism (ECD) data. Compounds 1a and 1b were rare 7,8'-epoxy-8,7'-oxyneolignane. Compounds 1-8 were evaluated for their antioxidant activities using 2,2-diphenyl-1-picrylhydrazyl (DPPH) reducing antioxidant power assay. Compound 6, exhibiting strong DPPH radical scavenging capacity with IC50 value of 16.4 ± 0.22 μg/mL, could interpret the herbal traditional usage.Entities:
Mesh:
Substances:
Year: 2016 PMID: 26961724 PMCID: PMC4785495 DOI: 10.1038/srep22909
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Structures of isolated compounds.
H NMR Data for Compounds 1−8 (400 MHz, J in Hz).
| No. | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
|---|---|---|---|---|---|---|---|---|
| 2 | 6.82 s | 6.62 s | 7.04 s | 6.63 s | 6.76 s | 6.77 s | ||
| 3 | 6.51 s | |||||||
| 4 | 6.93 s | |||||||
| 5 | 5.88 s | |||||||
| 6 | 7.07 s | 6.82 s | 6.62 s | 6.93 s | 6.63 s | 6.76 s | 6.77 s | |
| 7 | 5.02 d (9.3) | 6.45 s | 4.41 d (9.3) | 4.38 d (9.5) | 4.41 d (9.0) | 4.52 d (7.4) | 4.71 d (5.9) | 4.73 d (4.9) |
| 8 | 3.76 m | 1.77 m | 2.62 m | 2.45 m | 2.24 m | 4.42 m | 4.65 m | |
| 9 | 1.09 d (6.3) | 1.86 s | 1.08 d (6.6) | 1.07 d (6.6) | 1.03 d (6.8) | 1.12 d (7.0) | 1.13 d (6.3) | 1.31 d (6.1) |
| 2′ | 6.956 d (2.0) | 7.56 d (2.0) | 7.58 d (2.0) | 6.78 d (1.8) | 7.33 s | 7.53 d (2.0) | ||
| 3′ | 6.50 s | 6.53 s | ||||||
| 5′ | 6.97 d (8.2) | 6.92 d (8.8) | 7.08 d (8.5) | 6.72 d (8.0) | 6.97d (8.5) | |||
| 6′ | 7.08 s | 6.45 s | 6.97 dd (8.2, 2.0) | 7.55 dd (8.8, 2.0) | 7.71 dd (8.5, 2.0) | 6.64 dd (8.0, 1.8) | 7.33 s | 7.57 dd (8.5, 2.0) |
| 7′ | 5.25 d (3.2) | 4.44 s | 5.15 d (8.8) | 2.83 dd (13.4, 5.0), 2.45 dd (13.4, 11.1) | ||||
| 8′ | 4.34 m | 2.31 q (7.3) | 2.28 m | 3.83 m | 4.03 m | 2.61 m | ||
| 9′a | 1.12 d (6.8) | 1.11 d (7.2) | 0.66 d (7.0) | 4.30 dd (9.3, 8.8) | 4.28 dd (9.0, 8.5) | 4.02 dd (8.4, 6.3) | ||
| 9′b | 4.15 dd (9.3, 7.5) | 4.11 dd (9.0, 6.8) | 3.73 dd (8.4, 5.1) | |||||
| OMe-2 | 3.82 s | |||||||
| OMe-3 | 3.87 s | 3.87 s | 3.86 s | 3.83 s | 3.83 s | 3.82 s | ||
| OMe-4 | 3.89 s | 3.79 s | 3.78 s | 3.83 s | 3.75 s | 3.74 s | 3.70 s | |
| OMe-5 | 3.88 s | 3.87 s | 3.87 s | 3.86 s | 3.83 s | 3.83 s | 3.82 s | |
| OMe-2′ | 3.83 s | 3.90 s | ||||||
| OMe-3′ | 3.83 s | 3.94 s | 3.90 | 3.89 s | 3.85 s | |||
| OMe-4′ | 3.89 s | 3.84 s | 3.83 s | 3.95 s | 3.93 | 3.83 s | ||
| OMe-5′ | 3.90 s | 3.64 s | 3.89 s | |||||
| OMe-7′ | 3.90 s | 3.86 s |
ain methanol-d4.
bin CDCl3.
13C NMR Data for Compounds 1−8 (100 MHz).
| No. | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
|---|---|---|---|---|---|---|---|---|
| 1 | 119.8 | 137.3 | 138.7 | 136.0 | 134.3 | 140.0 | 138.4 | 138.7 |
| 2 | 151.8 | 132.5 | 104.9 | 103.7 | 111.4 | 104.2 | 105.5 | 105.6 |
| 3 | 97.7 | 181.5 | 154.6 | 153.4 | 150.7 | 154.5 | 154.2 | 154.1 |
| 4 | 149.4 | 159.6 | 138.1 | 137.8 | 112.7 | 138.4 | 138.4 | 138.3 |
| 5 | 143.3 | 106.2 | 154.6 | 153.4 | 150.7 | 154.5 | 154.2 | 154.1 |
| 6 | 111.7 | 186.6 | 104.9 | 103.7 | 120.8 | 104.2 | 105.5 | 105.6 |
| 7 | 67.9 | 113.3 | 88.9 | 89.2 | 90.2 | 88.6 | 78.5 | 77.1 |
| 8 | 78.8 | 153.3 | 49.8 | 45.9 | 47.7 | 46.6 | 84.9 | 80.0 |
| 9 | 17.1 | 23.4 | 15.1 | 15.4 | 15.1 | 12.8 | 17.1 | 15.6 |
| 1′ | 119.5 | 121.4 | 135.1 | 130.3 | 131.4 | 133.5 | 126.4 | 123.9 |
| 2′ | 150.0 | 151.1 | 112.4 | 110.2 | 111.8 | 113.5 | 107.9 | 114.0 |
| 3′ | 97.0 | 99.1 | 149.9 | 149.4 | 150.5 | 145.8 | 154.4 | 150.1 |
| 4′ | 148.8 | 148.9 | 150.2 | 153.9 | 155.6 | 149.0 | 142.2 | 153.1 |
| 5′ | 143.6 | 143.0 | 112.7 | 110.5 | 111.9 | 116.2 | 154.4 | 115.4 |
| 6′ | 111.2 | 112.2 | 120.9 | 123.2 | 124.9 | 122.2 | 107.9 | 124.6 |
| 7′ | 75.1 | 35.0 | 84.6 | 197.6 | 200.2 | 34.3 | 168.1 | 168.4 |
| 8′ | 70.8 | 41.5 | 47.1 | 54.4 | 55.1 | 45.4 | ||
| 9′ | 12.3 | 19.5 | 15.3 | 70.8 | 71.5 | 73.4 | ||
| OMe-2 | 56.8 | |||||||
| OMe-3 | 56.7 | 56.3 | 56.5 | 56.6 | 56.7 | 56.5 | ||
| OMe-4 | 56.3 | 56.3 | 61.1 | 60.9 | 61.1 | 61.1 | 61.1 | |
| OMe-5 | 56.3 | 56.7 | 56.3 | 56.5 | 56.6 | 56.7 | 56.5 | |
| OMe-2′ | 56.8 | 57.2 | ||||||
| OMe-3′ | 56.5 | 56.1 | 56.5 | 56.6 | 56.5 | |||
| OMe-4′ | 56.3 | 56.3 | 56.5 | 56.2 | 56.6 | 56.4 | ||
| OMe-5′ | 56.7 | 57.2 | 56.6 | |||||
| OMe-7′ | 52.8 | 52.5 |
ain methanol-d4.
bin CDCl3.
Figure 2ORTEP drawing of compounds 1 and 4.
Figure 3Chiral HPLC separation profiles of compounds 1a/1b−3a/3b.
Figure 4The experimental ECD spectra of 1a/1b−3a/3b, and the calculated ECD spectra for 1a/1b.
Figure 5ΔδH( values (in ppm) for the MTPA esters of 7.
DPPH Radical Scavenging Activity of New Compounds in vitro.
| Compounds | Concentrations ( | Scavenging ratio (%) | IC50 ( |
|---|---|---|---|
| 1a | 100 | −2.292 ± 0.263 | |
| 1b | 100 | −2.893 ± 0.278 | |
| 2a | 100 | −2.477 ± 0.351 | |
| 2b | 100 | −4.892 ± 0.088 | |
| 3a | 100 | −1.487 ± 0.351 | |
| 3b | 100 | −1.363 ± 0 | |
| 4 | 100 | −1.301 ± 0.263 | |
| 5 | 100 | −1.796 ± 0.088 | |
| 6 | 100 | 84.784 ± 0.756 | 16.437 ± 0.22 |
| 50 | 71.794 ± 0.611 | ||
| 25 | 59.629 ± 0.328 | ||
| 12.5 | 43.712 ± 0.435 | ||
| 6.25 | 29.609 ± 0.993 | ||
| 7 | 100 | −1.796 ± 0.088 | |
| 8 | 100 | −2.145 ± 0.078 | |
| Trolox | 50 | 95.629 ± 0.372 | 3.895 ± 0.38 |
| 25 | 94.805 ± 0.611 | ||
| 12.5 | 94.433 ± 0.682 | ||
| 6.25 | 69.238 ± 3.335 | ||
| 3.125 | 41.114 ± 4.279 |
The data are expressed as the means ± SEM. Three independent experiments were performed. Trolox (vitamin E) was used as the positive control.