| Literature DB >> 26075219 |
Kátia Pereira dos Santos1, Lucimar B Motta2, Deborah Y A C Santos1, Maria L F Salatino1, Antonio Salatino1, Marcelo J Pena Ferreira1, João Henrique G Lago3, Ana Lúcia T G Ruiz4, João E de Carvalho4, Cláudia M Furlan1.
Abstract
Croton sphaerogynus is a shrub from the Atlantic Rain Forest in southeastern Brazil. A lyophilized crude EtOH extract from leaves of C. sphaerogynus, obtained by maceration at room temperature (seven days), was suspended in methanol and partitioned with hexane. The purified MeOH phase was fractionated over Sephadex LH-20 yielding five fractions (F1-F5) containing flavonoids, as characterized by HPLC-DAD and HPLC-MS analyses. The antiproliferative activity of the crude EtOH extract, MeOH and hexane phases, and fractions F1-F5 was evaluated on in vitro cell lines NCI-H460 (nonsmall cell lung), MCF-7 (breast cancer), and U251 (glioma). The MeOH phase showed activity (mean log GI50 0.54) higher than the hexane phase and EtOH extract (mean log GI50 1.13 and 1.19, resp.). F1 exhibited activity against NCI-H460 (nonsmall cell lung) (GI50 1.2 μg/mL), which could be accounted for the presence of flavonoids and/or diterpenes. F4 showed moderate activity (mean log GI50 1.05), while F5 showed weak activity (mean log GI50 1.36). It is suggested that the antiproliferative activity of the crude EtOH extract and MeOH phase is accounted for a synergistic combination of flavonoids and diterpenes.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26075219 PMCID: PMC4449871 DOI: 10.1155/2015/212809
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Major constituents of the crude EtOH extract (EE), MeOH (MP) and hexane (HP) phases, and fractions (F1–F5) from of Croton sphaerogynus leaves, characterized by HPLC-DAD (352 nm) and HPLC-MS.
| Constituent | Rt (min) | UV/visible (nm) | Mass spectrum | Suggestion | |
|---|---|---|---|---|---|
| [ | [ | ||||
|
| 1.75 | 254, 264 (om), 348 | Quercetin derivative | ||
|
| 2.96 | 256, 264 (om), 296 (om), 354 | 757.8; 611.1; 465; 303 | 755.7 | Quercetin triglycoside (2 rhamnose; 1 hexose) |
|
| 3.16 | 260, 296, 356 | 741.8; 595.1; 433.1; 286.8 | Kaempferol triglycoside (2 rhamnose; 1 hexose) | |
|
| 4.05 | 264, 292, 346 | 741.8; 595.1; 287 | Kaempferol triglycoside (2 rhamnose; 1 hexose) | |
|
| 4.30 | 264, 294, 348 | 741.9; 595.2; 448.7; 287 | 739.6 | Kaempferol triglycoside (2 rhamnose; 1 hexose) |
|
| 4.99 | 256, 266 (om), 294 (om), 354 | 595, 303 | Quercetin diglycoside (1 pentose; 1 hexose) | |
|
| 5.33 | 256, 266 (om), 294 (om), 354 | 661.1; 465 | 608.9 | Rutin |
|
| 6.04 | 264, 294, 348 | 595, 286.9 | 593 | Kaempferol diglycoside (1 rhamnose; 1 glucose) |
|
| 6.35 | 256, 264 (om), 296 (om), 354 | 479, 316.9 | Isorhamnetin monoglycoside (1 hexose) | |
|
| 7.30 | 264, 294, 348 | 448.9; 286.9 | Kaempferol monoglycoside (1 hexose) | |
|
| 9.23 | 264, 294, 346 | Kaempferol derivative | ||
|
| 10.10 | 256, 268 (om), 356 | Quercetin derivative | ||
|
| 10.72 | 264, 294, 346 | Kaempferol derivative | ||
|
| 10.97 | 256, 264 (om), 306 (om), 348 | 449.0; 302.9 | 447 | Quercitrin |
|
| 20.44 | 262, 294, 340 | Kaempferol derivative | ||
|
| 22.95 | 254, 270, 298, 370 | Quercetin | ||
| 17* | 23.23 | 256, 266 (om), 298 (om), 356 | 317, 302 | 314.8 | Quercetin 3- |
|
| 23.55 | 264, 292, 320, 366 | Kaempferol | ||
|
| 23.73 | 266, 294, 350 | Kaempferol derivative | ||
|
| 23.84 | 254, 268 (om), 294 (om), 356 | Quercetin derivative | ||
Rt: average retention time in minutes. *Compound confirmed by 1H NMR.
Antiproliferative activity (GI50, µg/mL) of the leaf extract and fractions of Croton sphaerogynus on culture cell lines.
| Material tested | Cell linesa | Mean log GI50 c | ||
|---|---|---|---|---|
| U251 | MCF-7 | NCI-H460 | ||
| Doxorubicinb | <0.025 | <0.025 | <0.025 | −1.60 |
|
| 23.4 | 53.4 | 3.00 | 1.19 W |
|
| 8.10 | 20.0 | 0.25 | 0.54 |
|
| 24.7 | 27.2 | 3.80 | 1.14 W |
|
| 16.7 | 20.3 | 1.20 | 1.19 W |
|
| 41.8 | 61.1 | 12.3 | 1.50 W |
|
| 58.7 | 47.0 | 12.4 | 1.51 I |
|
| 15.0 | 8.10 | 11.8 | 1.05 |
|
| 31.6 | 17.9 | 21.8 | 1.36 W |
aU251: glioma; MCF-7: breast cancer; NCI-H460: nonsmall cell lung.
bPositive control. NCI's criteria (Fouche et al., 2008 [23]): I: mean log GI50 > 1.5 = inactive; W: weak activity: mean log GI50 > 1.1–1.5; M: moderate activity: mean log GI50 > 0–1.1; P: potent activity: mean log GI50 < 0.
clog GI50.
Crude EtOH extract (EE); MeOH (MP) and hexane (HP) phases, and fractions (F1, F2, F3, F4, and F5).
Main constituents of leaf extract and fractions from Croton sphaerogynus leaves and respective GC/EIMS data. EE: crude EtOH extract; MP: methanol phase; HP: hexane phase; F1: fraction 1. RT: retention time (min); MM: molecular mass; N.I.: not identified.
| RT (min) | MM | Characterization* | Relative amount (%) | ||||||
|---|---|---|---|---|---|---|---|---|---|
| Dch* | Met* | EE | MP | HP | F1 | ||||
| 1 | 14.8 | 272 | Abieta-8, 11-diene | 2.2 | 2.3 | — | — | 3.8 | — |
| 2 | 15.2 | 278 | NI | — | 0.9 | 1.6 | — | ||
| 3 | 16.2 | 306 | NI | — | — | 1.3 | — | ||
| 4 | 16.4 | 286 | Abieta-8,11-dien-3-one | 20.2 | 20.1 | 36.0 | 22.3 | 27.6 | 23.8 |
| 5 | 16.7 | 286 | Abieta-8,11,13-trien-3-ol | 6.2 | 13.1 | 5.4 | 6.5 | 7.7 | 7.1 |
| 6 | 16.9 | 288 | Abieta-8,11-dien-3-ol | 3.8 | 16.7 | 4.6 | 8.0 | 3.3 | 8.9 |
| 7 | 17.2 | 286 | Podocarp-7-en,13-methyl-13-vinyl-3-one | 12.9 | 4.7 | 11.2 | 17.9 | 18.5 | 17.9 |
| 8 | 17.5 | 286 | NI | 2.1 | 2.5 | 0.9 | 2.7 | ||
| 9 | 17.7 | 288 | NI | 0.9 | 3.8 | 1.5 | 4.6 | ||
| 10 | 18.0 | 284 | NI | 3.6 | 1.7 | 1.6 | 1.4 | ||
| 11 | 18.1 | 286 | NI | — | 1.3 | 1.8 | 1.6 | ||
| 12 | 18.2 | 286 | NI | 6.7 | 4.0 | 3.3 | 3.4 | ||
| 13 | 18.6 | 286 | Abieta-8,11,13-trien-12-ol | 11.9 | 18.5 | 10.3 | 13.9 | 21.8 | 13.5 |
| 14 | 19.2 | 288 | Podocarp-7-en-3-ol, 13-methyl-13-vinyl | 4.5 | 1.6 | 6.2 | 4.0 | 6.0 | |
| 15 | 19.3 | 302 | 13-hydroxy-abieta-8,11-dien-7-one | 4.8 | 4.2 | 2.1 | — | 1.9 | |
| 16 | 20.3 | 300 | 11-hydroxy-abieta-8,11,13-trien-7-one | 3.4 | 2.2 | 0.9 | — | 1.2 | |
| 17 | 20.5 | 302 | NI | — | 1.2 | — | 1.3 | ||
| 18 | 20.6 | 300 | Abieta-6,8,11,13-tetraen-3,12-diol | 0.7 | 10.2 | 4.8 | 0.7 | 4.2 | |
| 19 | 21.1 | 286 | NI | — | 1.2 | — | 0.4 | ||
| 20 | 21.2 | 302 | Abieta-8,11,13-trien-6,14-diol | 0.8 | 0.9 | 0.9 | — | — | |
| 21 | — | 316 | Crotonin derivative* | 5.2 | — | — | — | — | |
|
| |||||||||
| NI | 23.4 | 24.6 | 8.8 | 9.7 | 7.1 | 7.8 | |||
*Main constituents of leaf extract of Croton sphaerogynus and respective GC/EIMS data and characterization according to Motta et al. [20]. Dch, CH2Cl2; Met, MeOH.
Relative amount of major flavonoids in crude EtOH extract (EE), MeOH phase (MP), and fractions (F1–F5) of C. sphaerogynus, detected by HPLC-DAD (352 nm).
| Constituent* |
|
|
|
|
|
|
|
|---|---|---|---|---|---|---|---|
|
| nd | 0.10Q | — | 0.47Q | — | — | — |
|
| 0.20Q | 1.17Q | 0.94Q | — | — | — | — |
|
| nd | — | — | 2.23K | 3.00K | — | — |
|
| 0.57K | 2.45K | 2.01K | — | — | — | — |
|
| 1.03K | 3.73K | 3.04K | — | — | — | — |
|
| 0.09Q | 0.35Q | — | 4.65Q | 5.18Q | — | — |
|
| 0.37Q | 1.63Q | 0.89Q | 19.35Q | 8.39Q | — | — |
|
| 0.10K | 0.51K | 0.50K | — | — | — | — |
|
| 0.09Q | 0.48Q | — | 0.91Q | 6.51Q | 8.42Q | — |
|
| 0.18K | 0.67K | 0.48K | 5.5K | 1.84K | — | — |
|
| 0.99K | 3.04K | 2.42K | 19.71K | 4.42K | — | — |
|
| nd | — | — | 7.47Q | 8.39Q | — | — |
|
| nd | — | — | 4.15K | — | — | — |
|
| 0.51Q | 3.13Q | — | 3.65Q | 34.51Q | 47.06Q | — |
|
| nd | — | — | 2.54K | 7.89K | — | — |
|
| nd | — | — | 2.47Q | 3.68Q | nd | — |
|
| 0.59Q | 3.26Q | 0.13Q | 3.06Q | 2.16Q | 70.96Q | 58.31Q |
|
| nd | — | — | 2.94K | 1.70K | — | — |
|
| 0.48K | 0.97K | — | — | 2.13K | 29.68K | — |
|
| nd | — | — | — | 2.23Q | nd | — |
*Identification suggestions in Table 1.
QValues expressed as milligram per gram of quercetin equivalent (mg/g QE).
KValues expressed as milligram per gram of kaempferol equivalent (mg/g KE).
nd: trace amounts.