| Literature DB >> 25551779 |
Robert Brkljača1, Sylvia Urban2.
Abstract
A phytochemical investigation of a southern Australian marine brown alga, Sargassum paradoxum, resulted in the isolation and identification of four new (5, 9, 10, and 15) and nine previously reported (1, 2, 6-8, and 11-14) bioactive meroditerpenoids. HPLC-NMR and HPLC-MS were central to the identification of a new unstable compound, sargahydroquinal (9), and pivotal in the deconvolution of eight (1, 2, 5-7, and 10-12) other meroditerpenoids. In particular, the complete characterization and identification of the two main constituents (1 and 2) in the crude dichloromethane extract was achieved using stop-flow HPLC-NMR and HPLC-MS. This study resulted in the first acquisition of gHMBCAD NMR spectra in the stop-flow HPLC-NMR mode for a system solely equipped with a 60 μL HPLC-NMR flow cell without the use of a cold probe, microcoil, or any pre-concentration.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25551779 PMCID: PMC4306927 DOI: 10.3390/md13010102
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of meroditerpenoids.
Figure 2Stop-flow Wet1D proton NMR spectra (500 MHz, 75% CH3CN/D2O, suppression of HDO and CH3CN at t δH 4.64 and 2.82 ppm, respectively) of peaks A–J resulting from analysis of the dichloromethane crude extract of S. paradoxum.
NMR data (500 MHz, 75% CH3CN/D2O, suppression of HDO and CH3CN at δH 4.64 and 2.82 ppm, respectively) for fallahydroquinone (1) and sargahydroquinoic acid (2) obtained via stop-flow HPLC-NMR.
| Fallahydroquinone (1) | Sargahydroquinoic Acid (2) | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Position | δC a, Type | δH ( | gCOSY | gHMBCAD | δC a, Type | δH ( | gCOSY | gHMBCAD | nOe | ||||
| 1 | 146.0, C | 146.0, C | |||||||||||
| 2 | ND b | 130.4, C | |||||||||||
| 3 | 114.4, CH | 7.22, d (3.0) | 114.4, CH | 7.23, d (3.0) | 1’ | 1, 4, 5 | |||||||
| 4 | ND b | 150.6, C | |||||||||||
| 5 | 115.6, CH | 7.25, d (3.0) | 7 | 115.6, CH | 7.26, d (3.0) | 7 | 1, 3 | ||||||
| 6 | 126.9, C | 126.9, C | |||||||||||
| 7 | ND b | 2.96, s | 5 | 1, 5, 6 | ND b | 2.96, s | 1, 5, 6 | ||||||
| 1′ | 29.3, CH2 | 4.05, d (7.5) | 2′, 18′ | 1, 3, 2′, 3′ | 29.3, CH2 | 4.06, d (7.0) | 3, 2′, 18′ | 1, 2, 3, 2′, 3′ | |||||
| 2′ | 123.4, CH | 6.10, t (7.5) | 1′, 18′ | 123.4, CH | 6.10, t (7.0) | 1′, 18′ | 1′, 4′, 18′ | ||||||
| 3′ | 137.0, C | 137.1, C | |||||||||||
| 4′ | 40.2, CH2 | SS c | 40.2, CH2 | 2.91, m | |||||||||
| 5′ | ND b | 2.94, m | ND b | 2.94, m | 6′, 19′ | 3′, 4′, 6′, 7′ | |||||||
| 6′ | 125.4, CH | 5.96, t (7.0) | 5′, 19′ | 125.6, CH | 5.97, t (7.0) | 5′, 19′ | 8’, 19’ | ||||||
| 7′ | 135.6, C | 135.4, C | |||||||||||
| 8′ | 40.1, CH2 | SS c | 39.6, CH2 | 2.91, m | 9′ | ||||||||
| 9′ | ND b | 3.01, m | 10′ | 10′, 11′ | 28.4, CH2 | 3.30, dt (7.0, 7.5) | 10′ | 7′, 8′, 10′, 11′ | |||||
| 10′ | 130.7, CH | 6.30, t (7.0) | 9′ | 142.6, CH | 6.69, t (7.5) | 9′ | 8′, 12′, 20′ | 9′, 12′ | |||||
| 11′ | 140.3, C | 132.5, C | |||||||||||
| 12′ | 75.7, CH | 4.87, t (7.5) | 13′ | 10′, 11′ | 35.3, CH2 | 3.02, m | 10′, 11′, 13′, 14′, 20′ | ||||||
| 13′ | 35.4, CH2 | 3.06, dd (7.0,7.5) | 12′, 14′, 16′, 17′ | 12′, 14′, 15′ | 28.3, CH2 | 2.91, m | 17′ | ||||||
| 14′ | 121.6, CH | 5.90, dd (7.0) | 13′ | 124.3, CH | 5.91, t (7.0) | 13′, 16′, 17′ | 16′ | ||||||
| 15′ | 134.1, C | 133.1, C | |||||||||||
| 16′ | 18.0, CH3 | 2.41, s | 14′, 15′, 17′ | 17.7, CH3 | 2.39, s | 14′ | 14′, 15′, 17′ | ||||||
| 17′ | 25.9, CH3 | 2.49, s | 13′ | 14′, 15′, 16′ | 25.7, CH3 | 2.49, s | 14′ | 14′, 15′, 16′ | |||||
| 18′ | 16.2, CH3 | 2.52, s | 1′ | 2′, 3′, 4′ | 16.2, CH3 | 2.53, s | 1′, 2′ | 1′, 2′, 3′, 4′ | |||||
| 19′ | 16.1, CH3 | 2.41, s | 15.9, CH3 | 2.41, s | 6′ | 6′, 7′, 8′ | |||||||
| 20a′ | 57.8, CH2 | 4.95, d (12.5) | 10′ | 170.9, C | |||||||||
| 20b′ | 4.88, d (12.0) | ||||||||||||
| 1-OH | ND b | ND b | |||||||||||
| 4-OH | ND b | ND b | |||||||||||
| 12′-OH | ND b | ||||||||||||
| 20′-OH | ND b | ND b | |||||||||||
a Carbon NMR assignments made on the basis of gHSQCAD and gHMBCAD NMR experiments; b Signal not detected due to signal suppression; c Signal suppressed.
NMR data (500 MHz, 75% CH3CN/D2O, suppression of HDO and CH3CN at t δH 4.64 and 2.82 ppm, respectively) for sargahydroquinal (9) obtained via stop-flow HPLC-NMR.
| Sargahydroquinal (9) | ||
|---|---|---|
| Position | δH ( | gCOSY |
| 1 | ||
| 2 | ||
| 3 | 7.23, d (2.5) | |
| 4 | ||
| 5 | 7.25, d (2.5) | |
| 6 | ||
| 7 | 2.94, s | |
| 1′ | 4.05, d (7.5) | 2′, 18′ |
| 2′ | 6.10, t (7.5) | 1′ |
| 3′ | ||
| 4′ | 2.70-3.00, m | |
| 5′ | 2.96, m | 6′ |
| 6′ | 6.00, t (7.0) | 5′ |
| 7′ | ||
| 8′ | 2.98, m | 9′ |
| 9′ | 3.26, dt (7.0, 8.0) | 8′, 10′ |
| 10′ | 7.37, t (7.0) | 9′ |
| 11′ | ||
| 12′ | 2.70-3.00, m | |
| 13′ | 2.70-3.00, m | |
| 14′ | 5.92, t (7.0) | 16′ |
| 15′ | ||
| 16′ | 2.37, s | 14′ |
| 17′ | 2.48, s | |
| 18′ | 2.52, s | 1′, 2′ |
| 19′ | 2.35, s | |
| 20′ | 10.07, s | |
| 1-OH | ND a | |
| 4-OH | ND a | |
a Signal not detected.
1H and 13C NMR data (500 MHz, CDCl3) data for paradoxhydroquinone (5).
| Paradoxhydroquinone (5) | ||||
|---|---|---|---|---|
| Position | δC a, Type | δH ( | gCOSY | gHMBCAD |
| 1 | 146.4, C | |||
| 2 | 127.6, C | |||
| 3 | 114.0, CH | 6.46, d (2.5) | 5, 1′ | 1, 4, 5, 1′ |
| 4 | 149.0, C | |||
| 5 | 115.5, CH | 6.50, d (2.5) | 3, 7 | 1, 3, 4, 7 |
| 6 | 125.5, C | |||
| 7 | 16.0, CH3 | 2.18, s | 5 | 1, 5, 6 |
| 8 | ||||
| 1′ | 30.0, CH2 | 3.28, d (7.0) | 3, 2′, 4′w, 18′w | 1, 2, 3, 2′, 3′ |
| 2′ | 122.0, CH | 5.26, t (7.0) | 1′, 4′, 18′ | 1′, 4′, 18′ |
| 3′ | 138.1, C | |||
| 4′ | 39.5, CH2 | 2.08, m | 1′w | 5′, 18′ |
| 5′ | 26.1, CH2 | 2.13, m | 4′, 7′ | |
| 6′ | 124.4, CH | 5.09, m | 4′, 5′, 19′ | |
| 7′ | 135.1, C | |||
| 8′ | 39.2, CH2 | 2.01, m | 6′, 7′, 9′, 19′ | |
| 9′ | 26.1, CH2 | 2.10, m | 8′ | 7′, 10′, 11′ |
| 10′ | 126.2, CH | 5.37, t (6.5) | 9′, 20′ | 12′, 20′ |
| 11′ | 136.6, C | |||
| 12′ | 77.3, CH | 3.97, dd (6.0,7.0) | 13a′, 13b′ | 10′, 14′, 20′ |
| 13a′ | 34.2, CH2 | 2.20, m | 12′, 16′, 17′ | |
| 13b′ | 2.28, ddd (7.0, 8.0, 14.0) | 12′, 16′, 17′ | 12′, 14′, 15′ | |
| 14′ | 120.2, CH | 5.09, m | 16′, 17′ | |
| 15′ | 134.7, C | |||
| 16′ | 18.0, CH3 | 1.63, s | 14′ | 14′, 15′, 17′ |
| 17′ | 25.9, CH3 | 1.72, s | 13b′, 14′ | 14′, 15′, 16′ |
| 18′ | 16.2, CH3 | 1.75, s | 1′, 2′ | 2′, 3′, 4′ |
| 19′ | 16.1, CH3 | 1.59, s | 5′, 6′ | 7′, 8′ |
| 20′ | 11.7, CH3 | 1.61, s | 10′ | 10′, 11′, 12′ |
| 1-OH | ND b | |||
| 4-OH | ND b | |||
| 12′-OH | ND b | |||
a Carbon NMR assignments made on the basis of gHSQCAD and gHMBCAD NMR experiments. b Signal not detected.
1H and 13C NMR data (500 MHz, CDCl3) data for paradoxquinol (10) and paradoxquinone (15).
| Paradoxquinol (10) | Paradoxquinone (15) | |||||||
|---|---|---|---|---|---|---|---|---|
| Position | δC a, Type | δH ( | gCOSY | gHMBCAD | δC a, type | δH ( | gCOSY | gHMBCAD |
| 1 | 187.7, C | 188.0, C | ||||||
| 2 | 148.1, C | 148.5, C | ||||||
| 3 | 132.1, CH | 6.46, s | 1′ | 132.3, CH | 6.46, bs | 5, 1′ | 1, 4, 5 | |
| 4 | 187.9, C | 188.0, C | ||||||
| 5 | 140.6, C * | 133.2, CH | 6.54, bs | 3, 7 | 1, 3, 4 | |||
| 6 | 141.5, C * | 145.9, C | ||||||
| 7 | 12.4, CH3 | 2.03, s | 1, 5, 6 | 16.0, CH3 | 2.05, s | 5 | 1, 5, 6 | |
| 8 | 12.1, CH3 | 2.00, s | 4, 5, 6 | 3, 2′, 18′ | 1, 2, 3, 2′, 3′ | |||
| 1′ | 27.4, CH2 | 3.12, d (7.0) | 3, 2′, 18′ | 1, 2, 3, 2′, 3′ | 27.5, CH2 | 3.13, d (7.5) | 1′, 18 | 1′, 4′, 18′ |
| 2′ | 118.2, CH | 5.15, t (7.0) | 1′, 18′ | 4′ | 118.1, CH | 5.15, t (7.5) | ||
| 3′ | 139.5, C | 139.8, C | 2′, 3′, 5′, 18′ | |||||
| 4′ | 39.5, CH2 | 2.06, m | 2′, 5′, 6′, 18′ | 39.6, CH2 | 2.07, m | 6′, 18′w, 19′w | 3′, 4′, 6′, 7′ | |
| 5′ | 26.3, CH2 | 2.12, m | 6′ | 4′, 6′ | 26.2, CH2 | 2.11, m | 5′ | 4′, 5′, 19′ |
| 6′ | 124.4, CH | 5.11, m | 5′, 19′ | 4′, 8′ | 124.2, CH | 5.10, m | ||
| 7′ | 134.7, C | 135.1, C | 6′, 7′, 10′ | |||||
| 8′ | 39.5, CH2 | 2.06, m | 19′ | 39.3, CH2 | 2.02, m | 10′, 20′w | 7′, 10′, 11′ | |
| 9′ | 26.0, CH2 | 2.21, m | 10′ | 26.2, CH2 | 2.11, m | 9′, 20′ | 9′, 12′, 20′ | |
| 10′ | 130.5, CH | 5.53, t (7.0) | 9′ | 12′, 20′ | 126.1, CH | 5.38, t (7.0) | ||
| 11′ | 138.9, C | 136.7, C | 13a′ | 10′, 11′, 13′, 14′, 20′ | ||||
| 12′ | 76.9, CH | 4.16, dd (5.5, 7.5) | 13a′, 13b′ | 10′ | 77.2, CH | 3.97, dd (5.5, 7.5) | 12′, 17′ | |
| 13a′ | 35.1, CH2 | 2.26, m | 12′, 14′ | 34.2, CH2 | 2.20, m | 12′, 17′ | 11′, 12′, 14′, 15′ | |
| 13b′ | 2.43, ddd (7.5, 8.5, 14.5) | 12′, 13a′, 14′ | 12′, 14′ | 2.27, m | 17′ | |||
| 14′ | 119.9, CH | 5.11, m | 16′, 17′ | 120.3, CH | 5.09, m | |||
| 15′ | 135.4, C | 134.6, C | 14′, 15′ | |||||
| 16′ | 18.1, CH3 | 1.65, s | 13a′, 13b′ | 14′, 15′, 17′ | 18.0, CH3 | 1.63, s | 14′, 15′, 16′ | |
| 17′ | 25.9, CH3 | 1.73, s | 13a′, 13b′, 14′ | 14′, 15′, 16′ | 25.9, CH3 | 1.72, s | 2′, 3′ | |
| 18′ | 16.1, CH3 | 1.62, s | 1′, 2′ | 2′, 3′, 4′ | 16.1, CH3 | 1.61, s | 7′ | |
| 19′ | 16.1, CH3 | 1.60, s | 5′, 6′ | 6′, 7′, 8′ | 16.1, CH3 | 1.61, s | 10′, 11′ | |
| 20′ | 58.5, CH2 | 4.26, d (3.5) | 10′, 11′. 12′ | 11.7, CH3 | 1.61, s | |||
| 12′-OH | ND b | ND b | ||||||
| 20′-OH | ND b | |||||||
a Carbon NMR assignments made on the basis of gHSQCAD and gHMBCAD NMR experiments. b Signal not detected. * Indicates signals interchangeable
Antimicrobial activity of the crude extract, selected silica column fractions, and pure compounds obtained from S. paradoxum, together with commercial standard antibiotic and antifungal compounds, showing zones of inhibition (mm).
| Microorganism | |||||||
|---|---|---|---|---|---|---|---|
| Concentration (mg/mL) | ATCC 25922 | ATCC 25923 | 344/2-32 | ATCC 27853 | 345/1 | ATCC 10231 | |
| Dichloromethane extract | 50 | ND g | 2 | 1 | ND g | 5 | ND g |
| Methanol extract | 50 | ND g | 1 | 1 | 10 | 3 | 4 |
| Silica fraction | 25 | ND g | ND g | ND g | ND g | ND g | ND g |
| Silica fraction | 25 | ND g | ND g | ND g | ND g | 1 | ND g |
| Silica fraction | 50 | ND g | ND g | 1 | ND g | 1 | ND g |
| Silica fraction | 25 | ND g | ND g | 1 | 4 | 3 | ND g |
| Silica fraction | 50 | ND g | ND g | 1 | ND g | 3 | ND g |
| Silica fraction | 50 | ND g | ND g | ND g | ND g | ND g | ND g |
| Fallahydroquinone ( | 1 | ND g | ND g | ND g | ND g | 1 | ND g |
| Sargahydroquinoic acid ( | 1 | ND g | 1 | 1 | 2 | 3 | ND g |
| Paradoxhydroquinone ( | 1 | ND g | ND g | ND g | ND g | 3 | ND g |
| Fallaquinone ( | 1 | ND g | ND g | ND g | 4 | ND g | ND g |
| Sargaquinal ( | 1 | ND g | ND g | ND g | 3 | 1 | ND g |
| Paradoxquinol ( | 1 | ND g | ND g | ND g | ND g | 1 | ND g |
| Sargaquinoic acid ( | 1 | ND g | 1 | 1 | 1 | 3 | ND g |
| Paradoxquinone ( | 1 | ND g | ND g | ND g | ND g | 2 | ND g |
| Sargaquinone ( | 1 | ND g | ND g | ND g | 5 | ND g | ND g |
| Ampicillin (antibiotic) | 1 | ND g | 15 | 3 | 2 | 20 | NT h |
| Carbendazim (antifungal) | 1 | NT h | NT h | NT h | NT h | NT h | ND g |
a 100% to 80% petroleum spirits (60–80 °C)/dichloromethane; b 20% petroleum spirits (60–80 °C)/dichloromethane; c 80% dichloromethane/ethyl acetate; d 20% dichloromethane/ethyl acetate; e 80% ethyl acetate/methanol; f 100% methanol; g Indicates no zone of inhibition detected; h Indicates not tested.