| Literature DB >> 35280953 |
Meifang Wu1, Xiangdong Su1, Yichuang Wu1, Yuanjing Luo1, Ying Guo1, Yongbo Xue1.
Abstract
Wikstroemia nutans Champ. ex Benth., a traditional herbal medicine collected at the Lingnan region of China, was chemically investigated. A new biscoumarin glucoside, wikstronutin (1), along with three known bis- and tricoumarin glucosides (2-4), two flavonoid glycosides (5-6), and eleven lignan glucosides (7-17) were isolated from the stems and roots of W. nutans. The new structure including its absolute configuration was elucidated based on a combination of 1D and 2D NMR, UV, IR, HRESIMS spectroscopic data, as well as chemical transformation. Compounds 1-17 were first isolated from the plant species W. nutans, while compounds 1-3, 8, and 11 were reported from the genus Wikstroemia for the first time. All co-isolates were evaluated for their in vitro inhibitory effects on nitric oxide (NO) production induced by lipopolysaccharide (LPS) in murine RAW264.7 macrophage cells. The antibacterial activity of the selected compounds was also tested. Our work enriches the structure diversity of the secondary metabolites from the genus Wikstroemia.Entities:
Keywords: Wikstroemia nutans; coumarin glucosides; flavonoids; lignans; structure elucidation
Year: 2022 PMID: 35280953 PMCID: PMC8895025 DOI: 10.3762/bjoc.18.23
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Chemical structures of compounds 1–17 from W. nutans.
1H and 13C NMR Spectroscopic Data for 1 (δ in ppm, J in Hz).
| position | δCa | δHa | δCb | δHb |
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| 2 | 161.3 | 160.1 | ||
| 3 | 115.4 | 6.40 (1H, d, 9.5) | 114.11 c | 6.40 (1H, d, 9.5) |
| 4 | 143.7 | 7.70 (1H, d, 9.5) | 143.7 | 7.96 (1H, d, 9.5) |
| 4a | 114.3 | 113.3 | ||
| 5 | 121.4 | 7.40 (1H, s) | 120.7 | 7.58 (1H, s) |
| 6 | 153.5 | 152.04 c | ||
| 7 | 154.0 | 152.06 c | ||
| 8 | 106.5 | 7.81 (1H, s) | 104.5 | 7.41 (s, 1H) |
| 8a | 141.5 | 140.4 | ||
| 2' | 161.1 | 160.0 | ||
| 3' | 115.0 | 6.34 (1H, d, 9.5) | 113.7 | 6.36 (1H, d, 9.5) |
| 4' | 144.2 | 7.67 (1H, d, 9.5) | 141.2 | 8.03 (1H, d, 9.5) |
| 4'a | 114.7 | 114.13 c | ||
| 5' | 130.3 | 7.46 (1H, d, 8.5) | 129.9 | 7.68 (1H, d, 8.4) |
| 6' | 114.2 | 7.01 (1H, dd, 8.5, 2.4) | 113.6 | 6.94–6.96 (1H, m) |
| 7' | 162.2 | 160.6 | ||
| 8' | 105.3 | 7.02 (1H, d, 2.4) | 104.2 | 6.94–6.96 (1H, m) |
| 8'a | 156.4 | 155.0 | ||
| Glc-C-1'' | 103.0 | 5.71 (1H, d, 7.7) | 100.1 | 5.11 (1H, d, 7.8) |
| Glc-C-2'' | 74.8 c | 4.10–4.15 (1H, m) | 72.9 | 3.04–3.09 (1H, m) |
| Glc-C-3'' | 77.9 c | 4.35–4.42 (1H, m) | 76.5 | 3.25 (1H, t, 9.0) |
| Glc-C-4'' | 71.4 | 4.35–4.42 (1H, m) | 69.2 | 3.15–3.18 (1H, m) |
| Glc-C-5'' | 79.0 | 4.10–4.15 (1H, m) | 75.5 | 3.59–3.63 (1H, m) |
| Glc-C-6'' | 70.6 | 4.35–4.42 (1H, m) |
68.3 | 3.90 (1H, d, 9.7) |
| Xyl-C-1''' | 106.8 | 4.94 (1H, d, 7.1) | 104.1 | 4.13 (1H, d, 7.5) |
| Xyl-C-2''' | 75.4 c | 4.10–4.15 (1H, m) | 73.3 | 2.95–2.97 (1H, m) |
| Xyl-C-3''' | 78.9 | 4.30 (1H, t, 9.0) | 76.6 | 3.04–3.09 (1H, m) |
| Xyl-C-4''' | 71.5 | 4.20 (1H, t, 9.0) | 69.4 | 3.29–3.31 (1H, m) |
| Xyl-C-5''' | 67.7 | 3.65–3.68 (1H, m) |
65.7 | 3.69 (1H, dd, 5.3, 11.2) |
aSpectra were recorded in pyridine-d5 (600 MHz for 1H and 150 MHz for 13C); bspectra were recorded in DMSO-d6 (800 MHz for 1H and 200 MHz for 13C); assignments were confirmed by 1H-1H COSY, HSQC, HMBC and ROESY experiments; coverlapped.
Figure 2The key correlations observed in the 1H-1H COSY (bold bonds), HMBC (blue) correlations of 1 (recorded in pyridine-d5, 600 MHz).
Figure 3The key correlations observed in the 1H-1H COSY (bold bonds), HMBC (blue), ROESY (red) of 1 (recorded in DMSO-d6, 800 MHz).
Inhibitory activities of compounds 1−17 on LPS-stimulated NO production.a
| compound | inhibition (%) | compound | inhibition (%) |
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16.15 ± 1.10 |
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13.85 ± 1.54 |
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10.73 ± 1.17 |
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18.26 ± 0.59 |
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15.21 ± 1.51 |
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15.90 ± 1.24 |
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16.88 ± 1.33 |
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19.58 ± 0.83 |
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15.43 ± 1.22 |
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15.42 ± 0.38 |
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13.68 ± 1.77 |
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15.73 ± 1.41 |
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20.42 ± 1.06 |
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8.16 ± 1.52 |
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18.45 ± 1.65 |
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7.85 ± 0.74 |
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19.51 ± 1.11 | L-NMMAb | 52.45 ± 1.13 |
aAll compounds were tested at a concentration of 50 μM.and examined in a set of triplicated experiments. bPositive control.