| Literature DB >> 22072902 |
Jun-De Chen1, Rui-Zao Yi, Yi-Ming Lin, Dan-Qing Feng, Hai-Chao Zhou, Zhan-Chang Wang.
Abstract
One new dimeric diterpenoid, 8(14)-enyl-pimar-2'(3')-en-4'(18')-en-15'(16')-endolabr- 16,15,2',3'-oxoan-16-one (1) and five known terpenoids: Tagalsin C (2), Tagalsin I (3), lup-20(29)-ene-3β,28-diol (4), 3-oxolup-20(29)-en-28-oic acid (5) and 28-hydroxylup- 20(29)-en-3-one (6) were isolated from the roots of the mangrove plant Ceriops tagal. Their structures and relative stereochemistry were elucidated by means of extensive NMR, IR and MS analysis. The antifouling activity against larval settlement of the barnacle Balanus albicostatus were evaluated using capsaicin as a positive control. All these terpenoids exhibited antifouling activity against cyprid larvae of the barnacle without significant toxicity. The structure-activity relationship results demonstrated that the order of antifouling activity was diterpenoid (Compound 2) > triterpenoid (Compounds 4, 5 and 6) > dimeric diterpenoid (Compounds 1 and 3). The functional groups on the C-28 position of lupane triterpenoid significantly affect the antifouling activity. The diterpenoid dimmer with two identical diterpenoid subunits might display more potent antifouling activity than one with two different diterpenoid subunits. The stability test showed that Compounds 2, 4, 5 and 6 remained stable over 2-month exposure under filtered seawater.Entities:
Keywords: Ceriops tagal; antifouling activity; barnacle; structure-activity relationship; terpenoids
Mesh:
Substances:
Year: 2011 PMID: 22072902 PMCID: PMC3210993 DOI: 10.3390/ijms12106517
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Structures of the isolated terpenoids 1–6.
1H-NMR Data (500 MHz) and 13C-NMR Data (125 MHz) for Compound 1 (CDCl3).
| No. | δC | δH | No. | δC | δH |
|---|---|---|---|---|---|
| 1 | 39.2 t | 0.95 (m) | 1′ | 22.2 t | 2.28 (m) |
| 1.71 (m) | 2.56 (dd, | ||||
| 2 | 19.0 t | 1.53 (m) | 2′ | 113.6 s | |
| 3 | 42.1 t | 1.40 (m) | 3′ | 148.6 s | |
| 1.19 (m) | 4′ | 139.5 s | |||
| 4 | 33.3 s | 5′ | 39.1 s | ||
| 5 | 55.0 d | 1.06 (m) | 6′ | 36.8 t | 2.17 (m) |
| 6 | 22.7 t | 1.58 (m) | 1.54 (m) | ||
| 1.34 (m) | 7′ | 25.6 t | 1.19 (m) | ||
| 7 | 36.23 t | 2.05 (m) | 8′ | 43.0 d | 1.47 (m) |
| 2.36 (d, | 9′ | 38.1 s | |||
| 8 | 137.7 s | 10′ | 53.3 d | 1.38 (m) | |
| 9 | 49.8 d | 1.74 (m) | 11′ | 35.2 t | 1.60 (m) |
| 10 | 38.87 s | 1.34 (m) | |||
| 11 | 18.6 t | 1.60 (m) | 12′ | 32.0 t | 1.54 (m) |
| 1.10 (m) | 1.31 (m) | ||||
| 12 | 32.4 t | 1.68 (m) | 13′ | 36.18 s | |
| 1.22 (m) | 14′ | 38.93 t | 1.36 (m) | ||
| 13 | 38.0 s | 1.04 (m) | |||
| 14 | 128.5 d | 5.55 (s) | 15′ | 151.0 d | 5.81 (dd, |
| 15 | 56.2 d | 3.20 (s) | 16′ | 109.0 t | 4.82 (d, |
| 4.92 (d, | |||||
| 16 | 177.0 s | 17′ | 23.0 q | 1.01 (s) | |
| 17 | 24.7 q | 0.99 (s) | 18′ | 105.9 t | 5.26 (s) |
| 18 | 33.7 q | 0.89 (s) | 5.08 (s) | ||
| 19 | 22.1 q | 0.85 (s) | 19′ | 33.1 q | 1.14 (s) |
| 20 | 15.4 q | 0.82 (s) | 20′ | 11.8 q | 0.57 (s) |
Figure 2Key HMBC of Compound 1.
Figure 3Key NOE correlations of Compound 1.
Figure 4Effects of compounds on settlement and survival of B. albicostatus cyprids. a: Capsaicin; b: 8(14)-enyl-pimar-2′(3′)-en-4′(18′)-en-15′(16′)-en-dolabr-16,15,2′,3′-oxoan- 16-one (1); c: Tagalsin C (2); d: Tagalsin I (3); e: lup-20(29)-ene-3β,28-diol (4); f: 3-oxolup-20(29)-en-28-oic acid (5); g: 28-hydroxylup-20(29)-en-3-one (6). Data were analyzed using one-way ANOVA, where *P < 0.05; **P < 0.01 and ***P < 0.001 were significantly different from the negative control.
Antifouling activity of the investigated terpenoids against B. albicostatus cyprid larvae.
| Compound | Skeleton structure | EC50 (μg/cm2) | LC50 (μg/cm2) |
|---|---|---|---|
| Capsaicin (positive control) | - | 1.32 ± 0.02 | > 250 |
| 8(14)-enyl-pimar-2′(3′)-en-4′(18′)-en-15′(16′)-en-dolabr-16,15,2′,3′-oxoan-16-one ( | Dimeric diterpenoid | 13.94 ± 0.81 | > 250 |
| Tagalsin C ( | Diterpenoid | 0.65 ± 0.02 | > 250 |
| Tagalsin I ( | Dimeric diterpenoid | 11.67 ± 0.47 | > 250 |
| lup-20(29)-ene-3β,28-diol ( | Triterpenoid | 9.27 ± 0.30 | > 250 |
| 3-oxolup-20(29)-en-28-oic acid ( | Triterpenoid | 3.50 ± 0.24 | > 250 |
| 28-hydroxylup-20(29)-en-3-one ( | Triterpenoid | 8.73 ± 0.43 | > 250 |
Values with different letters in the same column of EC50 are significantly different at p < 0.05 level.