| Literature DB >> 23975221 |
Ghada S E Abou-El-Wafa1, Mohamed Shaaban, Khaled A Shaaban, Mohamed E E El-Naggar, Armin Maier, Heinz H Fiebig, Hartmut Laatsch.
Abstract
Two new diterpenoids, pachydictyol B (1a/1b) and C (2), were isolated from the dichloromethane extract of the marine brown alga, Dictyota dichotoma, collected from the Red Sea coast of Egypt, along with the known metabolites, pachydictyol A (3a), dictyol E (4), cis-africanan-1α-ol (5a), fucosterol (6), tetrahydrothiophen-1,1-dioxide and poly-β-hydroxybutyric acid. GC-MS analysis of the nonpolar fractions also indicated the presence of β-bourbonene and nonanal, along with three hydrocarbons and five fatty acids or their simple derivatives, respectively. GC-MS analysis of the unsaponifiable algal petroleum ether extract revealed the presence of a further eight compounds, among them 2,2,6,7-tetramethyl-10-oxatricyclo[4.3.0.1(1,7)]decan-5-one (7), N-(4-bromo-n-butyl)-pipe ridin-2-one (8) and tert-hexadecanethiol. Structures 1-6 were assigned by 1D and 2D NMR, mass spectra (EI, CI, HREI and HRESI) and by comparison with data from related structures. The crude algal extract was potently active against the breast carcinoma tumor cell line, MCF7 (IC₅₀ = 0.6 µg mL⁻¹); pachydictyol B (1a) and dictyol E (4) showed weak antimicrobial properties, and the other compounds were inactive. Pachydictyols B (1a) and C (2) demonstrated a weak and unselective cytotoxicity against twelve human tumor cell lines with a mean IC₅₀ of >30.0 µM.Entities:
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Substances:
Year: 2013 PMID: 23975221 PMCID: PMC3801117 DOI: 10.3390/md11093109
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of compounds 1–9.
13C and 1H NMR data of pachydictyols A (3a) and B (1a/1b) in CDCl3 (J in [Hz]).
| position | Pachydictyol A (3a) | |||||
|---|---|---|---|---|---|---|
| δC (a) | δH (b) | δC (a) | δH (c) | δC (a) | δH (b) | |
| 1 | 46.0 | 2.50 (m) | 46.1 | 2.52 (m) | 46.1 | 2.67 (m) |
| 2 | 33.6 | 2.43 (m), 2.13 (m) | 33.7 | 2.46 (m), 2.16 (m) | 33.9 | 2.50 (m), 2.22 (m) |
| 3 | 123.9 | 5.28 (m) | 124.2 | 5.30 (m) | 123.9 | 5.33 (m) |
| 4 | 140.8 | - | 140.7 | - | 141.3 | - |
| 5 | 59.8 | 2.33 (m) | 59.9 | 2.36 (m) | 60.4 | 2.30 (m) |
| 6 | 73.9 | 4.18 (dm, 7.6) | 74.1 | 4.18 (m) | 75.1 | 3.92 (d, 7.8) |
| 7 | 48.6 | 1.56 (m) | 49.0 | 1.58 (m) | 47.8 | 1.55 (m) |
| 8 | 21.6 | 1.69 (m) | 21.6 | 1.73 (m), 1.65 (m) | 23.6 | 1.50 (m) |
| 9 | 40.3 | 2.60 (m), 2.04 (m) | 40.3 | 2.62 (dm, 15.7 Hz), 2.06 (m) | 40.6 | 2.62 (m), 2.10 (m) |
| 10 | 151.6 | - | 151.5 | - | 152.4 | - |
| 11 | 75.9 | - | 76.0 | - | 34.8 | 1.21 (m) |
| 12 | 43.8 | 2.42 (m), 2.33 (m) | 44.0 | 2.47 (m), 2.37 (m) | 35.1 | 2.25 (m), 1.53 (m) |
| 13 | 122.1 | 5.63 (br m) | 126.4 | 5.68 (dt, 15.6, 8.0) | 25.7 | 2.04 (m), 1.95 (m) |
| 14 | 141.6 | 5.64 (br m) | 137.4 | 5.60 (d, 15.6) | 124.6 | 5.13 (tq, 8.6, 1.3) |
| 15 | 70.4 | - | 81.6 | - | 131.4 | - |
| 16 | 29.4 | 1.24 (s) | 24.7 | 1.25 (s) | 25.8 | 1.68 (s) |
| 17 | 15.8 | 1.77 (s) | 15.8 | 1.77 (s) | 15.9 | 1.81 (d, 1.3) |
| 18 | 107.3 | 4.72 (br s), 4.69 (br s) | 107.4 | 4.74 (s), 4.70 (s) | 107.0 | 4.74 (br s) |
| 19 | 25.4 | 1.15 (s) | 25.5 | 1.17 (s) | 17.6 | 0.99 (d, 6.0) |
| 20 | 29.8 | 1.25 (s) | 24.0 | 1.28 (s) | 17.7 | 1.61 (s) |
(a) 125 MHz; (b) 300 MHz; (c) 600 MHz.
13C and 1H NMR data of pachydictyol C (2), dictyol C (3b) and dictyol E (4) in CDCl3 (J in [Hz]).
| position | Pachydictyol C (2) | Dictyol C (3b) [ | Dictyol E (4) | |||
|---|---|---|---|---|---|---|
| δC (a) | δH | δC (a) | δH (b) | δC (a) | δH | |
| 1 | 49.1 | 1.25 (m) | 49.1 | 2.21 | 46.1 | 2.53 (q, 9.8) |
| 2 | 33.0 | 2.21 (m) | 32.9 | n.r. | 33.7 | 2.44 (m), 2.16 (m) |
| 3 | 123.2 | 5.26 (br m) | 123.4 | 5.26 (br s) | 123.9 | 5.28 (br m) |
| 4 | 142.4 | - | 142.5 | - | 140.8 | - |
| 5 | 52.7 | 2.75 (m) | 52.7 | 2.74 (dd,7.8, 6.0) | 60.0 | 2.34 (m) |
| 6 | 74.5 | 3.86 (dd, 8.2, 3.4) | 74.4 | 3.87 (dd,7.8, 3.6) | 74.1 | 4.14 (dd, 7.9, 2.7) |
| 7 | 50.0 | 2.15 (m) | 49.9 | n.r. | 48.3 | 1.60 (m) |
| 8 | 19.8 | 1.27 (m), 1.22 (m) | 19.7 | n.r. | 21.5 | 1.71, 1.61 (2 m) |
| 9 | 34.5 | 1.51 (m) | 46.6 | n.r. | 40.4 | 2.63 (dm, 14.5), 2.06 (m) |
| 10 | 34.9 | 1.19 (m) | 72.4 | - | 151.7 | - |
| 11 | 72.6 | - | 34.4 | n.r. | 76.1 | - |
| 12 | 46.6 | 1.40 (m), 1.88 (m) | 34.7 | n.r. | 40.9 | 1.67 (m) |
| 13 | 25.6 | 2.02 (m), 1.94 (m) | 25.5 | n.r. | 23.2 | 1.99 (m) |
| 14 | 124.7 | 5.14 (m) | 124.7 | 5.14 (br t, 7.1) | 124.2 | 5.10 (t, 7.1) |
| 15 | 131.3 | - | 131.6 | - | 131.3 | - |
| 16 | 25.8 | 1.68 (s) | 25.7 | 1.62 (d, 0.9) | 25.6 | 1.64 (s) |
| 17 | 16.3 | 1.82 (s) | 16.3 | 1.85 (dd, 2.0, 1.2) | 15.7 | 1.77 (s) |
| 18 | 17.5 | 0.97 (d, 6.4) | 30.0 | 1.22 (s) | 107.3 | 4.73 (s), 4.70 (br d, 1.3) |
| 19 | 30.0 | 1.19 (s) | 17.5 | 1.00 (d, 6.6) | 25.1 | 1.18 (s) |
| 20 | 17.7 | 1.60 (s) | 17.7 | 1.70 (s) | 17.6 | 1.57 (s) |
(a) 125 MHz; (b) 300 MHz; n.r., signals not reported.
Figure 2Left: H,H COSY (▬) and selected HMBC (↔) correlations in cis-pachydictyol B (1a); right: selected NOESY couplings in a preferred conformation of 1a.
Figure 3H,H COSY (▬) and selected HMBC (→) couplings in pachydictyol C (2) and dictyol E (4).
Figure 4Selected NOESY couplings of pachydictyol C (2).
13C and 1H NMR data of cis-africanan-1α-ol (5a) in CDCl3 (J in [Hz]).
| Position | ||||||
|---|---|---|---|---|---|---|
| δC (a) | δH (b) | δC | δH | δC | δH | |
| 1 | 83.2 | - | 85.3 | - | 85.9 | - |
| 2 | 41.3 | 1.97 (m), 1.52 (m) | 38.9* | 1.47 (m), 1.97 (m) | 38.1 | 1.88 (m), 1.92 (m) |
| 3 | 32.7 | 1.67 (m), 1.38 (m) | 32.7 | 1.68 (m), 1.35 (m) | 30.1 | 1.96 (m), 1.17 (m) |
| 4 | 43.3 | 1.32 (m) | 43.2 | 1.31 (m) | 38.1 | 1.74 (m) |
| 5 | 55.0 | 1.20 (m) | 54.9 | 1.09 (m) | 49.5 | 1.05 (ddd, 11.7, 10.5, 2.7) |
| 6 | 41.8 | 1.06 (m), 1.00 (m) | 41.7 | 0.99 (m), 1.38 (m) | 39.8 | 1.19 (ddd, 14.4, 2.7, 2.1), 1.28 (dd, 14.4, 11.7) |
| 7 | 33.3 | - | 33.3 | - | 33.0 | - |
| 8 | 38.9 | 1.04 (m), 1.49 (m) | 41.2 * | 1.05, 1.47 | 39.7 | 1.89 (dd, 15.0, 11.8), 1.73 (ddd, 15.0, 5.5, 2.1) |
| 9 | 22.3 | 0.81 (m) | 22.2 | 0.79 (m) | 25.7 | 0.74 (m) |
| 10 | 23.6 | - | 23.5 | - | 26.9 | - |
| 11 | 15.3 | 0.66 (dd, 6.4, 5.2), 0.28 (dd, 8.6, 4.1) | 15.2 | 0.66 (m), 0.27 (m) | 16.3 | 0.74 (m), 0.31 (m) |
| 12 | 26.8 * | 1.03 * (s) | 18.9 | 1.03 (s) | 23.5 | 1.12 (s) |
| 13 | 28.3 * | 0.84 * (s) | 29.1 | 0.98 (s) | 35.1 | 0.96 (s) |
| 14 | 29.2 * | 0.98 * (s) | 28.2 | 0.84 (s) | 28.0 | 0.94 (s) |
| 15 | 18.9 * | 1.02 * (d, 6.5) | 26.7 | 1.02 (d) | 19.7 | 0.93 (d, 6.5) |
(a) 125 MHz; (b) 300 MHz; * differently assigned in the literature.
Figure 5H,H COSY (▬, ↔) and selected HMBC (→) couplings of cis-africanan-1α-ol (5a), along with the structure of trans-africanan-1α-ol (5b).
Cytotoxic activities of pachydictyols A–C (3a, 1a, 2), Dictyol E (4), cis-africanan-1α-ol (5a) and fucosterol (6).
| Compound | Antitumor Potency a | Tumor Selectivity b | ||
|---|---|---|---|---|
| Mean IC50 (µM) | Mean IC70 (µM) | % | ||
| >30.0 | >30.0 | 0/12 | 0 | |
| pachydictyol C ( | >30.0 | >30.0 | 0/12 | 0 |
| pachydictyol A ( | 23.6 | >30.0 | 0/12 | 0 |
| dictyol E ( | >30.0 | >30.0 | 0/12 | 0 |
| >10.0 | >10.0 | 0/12 | 0 | |
| fucosterol ( | 19.5 | >30.0 | 0/12 | 0 |
a Mean IC50/70 values, determined as the average of 12 human tumor cell lines tested. Individual IC50 < ½ mean IC50; e.g., if the mean IC50 = 2.0 µM, the threshold for the above average sensitivity was IC50 < 1.0 µM; b the tumor cell lines are: BXF, bladder; CEXF, cervix; CX,F colorectal; GXF, gastric; LXF, lung; MAXF, breast; MEXF, melanoma xenograft; OVXF, ovarian cancer xenograft; PRXF, prostate; PXF, pleuramesotheliom; RXF, renal; and UXF, uterus body, with XF = Xenograft Freiburg-derived cell line; A, adeno; L, large cell; E, epidermoid cell; S, small cell.