| Literature DB >> 26343618 |
Yuanyuan Zhou1, Bingyou Yang2, Yanqiu Jiang3, Zhaoxi Liu4, Yuxin Liu5, Xiaoli Wang6, Haixue Kuang7.
Abstract
Twenty-seven naphthoquinones and their derivatives, including four new naphthalenyl glucosides and twenty-three known compounds, were isolated from green walnut husks, which came from Juglans mandshurica Maxim. The structures of four new naphthalenyl glucosides were elucidated based on extensive spectroscopic analyses. All of these compounds were evaluated for their cytotoxic activities against the growth of human cancer cells lines HepG-2 by MTT [3-(4,5-dimethylthiazo l-2-yl)-2,5 diphenyl tetrazolium bromide] assay. The results were shown that most naphthoquinones in an aglycone form exhibited better cytotoxicity in vitro than naphthalenyl glucosides with IC50 values in the range of 7.33-88.23 μM. Meanwhile, preliminary structure-activity relationships for these compounds were discussed.Entities:
Keywords: Juglans mandshurica Maxim; cytotoxic activity; green walnut husks; naphthoquinones; structure-activity relationships
Mesh:
Substances:
Year: 2015 PMID: 26343618 PMCID: PMC6331885 DOI: 10.3390/molecules200915572
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1The chemical structures of compounds 1–27.
Figure 2Key HMBC correlations of compounds 18, 25–27.
1H-(400 MHz) and 13C-(100 MHz) NMR data of 18, 25–27 in CD3OD.
| No. | 18 | 25 | 26 | 27 | ||||
|---|---|---|---|---|---|---|---|---|
| δH ( | δC | δH ( | δC | δH ( | δC | δH ( | δC | |
|
| — | 148.0 | — | 200.0 | — | 200.9 | — | 206.4 |
|
| 7.72, s | 109.9 | Hax: 2.87, ddd (4.5, 8.9, 17.5) | 35.5 | Hax: 3.03, ddd (5.0, 13.4, 17.0) | 33.9 | Hax: 3.01, ddd (5.9,12.9, 17.6) | 33.5 |
| Heq: 2.41, ddd (4.5, 6.5, 17.5) | Heq: 2.37, dt (3.6, 17.0) | Heq: 2.44, dt (3.6, 17.6) | ||||||
|
| — | 105.8 | Hax: 2.34, dddd (2.2, 4.5, 8.9, 13.4) | 31.5 | Hax: 2.48, dddd (1.3, 3.2, 4.7, 12.6) | 30.0 | 2.16, m | 30.3 |
| Heq: 2.28, dddd (3.8, 4.5, 6.5, 13.4) | Heq: 2.10, tt (4.2, 12.6) | |||||||
|
| — | 155.1 | 4.97, dd (3.6, 6.5) | 75.9 | 5.37, t (2.9) | 69.9 | 5.32, t (3.1) | 61.3 |
|
| 6.99, dd (1.0, 7.8) | 116.0 | 7.65, brd (7.6) | 130.0 | — | 157.0 | — | 148.3 |
|
| 7.40, t (7.8) | 128.6 | 7.52, dt (1.2, 7.6) | 134.8 | 7.08, dd (0.8, 8.0) | 122.3 | 7.40, d (9.1) | 128.9 |
|
| 7.86, dd (1.0, 7.8) | 116.1 | 7.43, dt (1.2, 7.6) | 129.4 | 7.27, t (8.0) | 130.6 | 6.67, d (9.1) | 118.9 |
|
| — | 158.0 | 7.93, dd (1.2, 7.6) | 127.9 | 7.46, dd (0.8, 8.0) | 118.9 | — | 159.3 |
|
| — | 120.2 | — | 132.9 | — | 134.4 | — | 116.2 |
|
| — | 131.1 | — | 143.9 | — | 129.6 | — | 135.5 |
|
| 4.99, d (7.6) | 105.5 | 4.42, d (7.6) | 103.7 | 4.60, d (7.8) | 103.8 | 4.81, d (7.5) | 104.4 |
|
| 3.50, m | 78.9 | 3.34, m | 75.2 | 3.2, m | 75.3 | 3.53, dd (8.8, 16.5) | 75.2 |
|
| 3.53, m | 75.0 | 3.36, dd (2.5, 7.0) | 78.1 | 3.38, m | 78.0 | 3.49, t (8.6) | 78.0 |
|
| 3.43, m | 71.3 | 3.36, dd (2.5, 7.0) | 72.2 | 3.38, m | 72.1 | 3.43, dd (10.6, 16.2) | 72.0 |
|
| 3.48, m | 78.2 | 3.62, m | 75.5 | 3.65, m | 75.7 | 3.68, dt (2.2, 8.4) | 75.8 |
|
| 3.96, dd (2.1, 12.0) | 62.5 | 4.66, dd (2.2, 11.8) | 65.0 | 4.64, dd (2.2, 11.8) | 65.0 | 4.61, dd (2.2, 11.8) | 64.8 |
|
| 3.77, dd (5.5, 12.0) | 4.47, dd (7.2, 11.8) | 4.43, dd (6.8, 11.8) | 4.40, dd (7.4, 11.8) | ||||
|
| — | 171.8 | — | 122.2 | — | 121.9 | — | 122.1 |
|
| 4.44, dq (3.6, 17.7) | 62.8 | 7.95, d (8.8) | 132.9 | 7.95, dt (2.6, 8.8) | 133.0 | 7.82, dt (2.7, 8.8) | 132.9 |
|
| 1.43, t (7.2) | 14.5 | 6.84, d (8.8) | 116.3 | 6.83, dt (2.6, 8.8) | 116.2 | 6.81, dt (2.7, 8.8) | 116.2 |
|
| — | — | — | 163.7 | — | 163.6 | — | 163.7 |
|
| — | — | 6.84, d (8.8) | 116.3 | 6.83, dt (2.6, 8.8) | 116.2 | 6.81, dt (2.7, 8.8) | 116.2 |
|
| — | — | 7.95, d (8.8) | 132.9 | 7.95, dt (2.6, 8.8) | 133.0 | 7.82, dt (2.7, 8.8) | 132.9 |
|
| — | — | — | 167.9 | — | 168.1 | — | 167.8 |
Cytotoxicities of compound 1–27 from J. mandshurica Maxim on HepG-2 cells lines.
| Compd. | Structural Features | IC50 (μM) a | SD b | Compd. | Structural Features | IC50 (μM) a | SD b |
|---|---|---|---|---|---|---|---|
| 8.14 | 1.95 | NA | 3.21 | ||||
| 68.72 | 1.50 | NA | - | ||||
| 16.11 | 3.54 | 83.32 | 4.54 | ||||
| 18.83 | 2.98 | NA | - | ||||
| 15.37 | 1.63 | 78.61 | 2.38 | ||||
| 7.33 | 0.52 | NA | - | ||||
| 43.54 | 0.15 | NA | - | ||||
| 22.38 | 0.66 | NA | - | ||||
| 30.42 | 2.48 | NA | - | ||||
| 32.51 | 0.46 | NA | - | ||||
| 34.80 | 0.33 | NA | - | ||||
| 56.87 | 4.27 | NA | - | ||||
| 67.95 | 3.22 | NA | - | ||||
| 88.23 | 1.90 | PC c | metal complex | 4.51 | 0.38 |
a IC50, concentration required for inhibiting growth of HepG-2 by 50% (in μM). These results are average results of three experiments; b SD, standard deviation; c PC, positive control (cisplatin); NA = not active.