| Literature DB >> 26415532 |
Yin Yin Chia1, M S Kanthimathi2,3, Kong Soo Khoo4, Jayakumar Rajarajeswaran5, Hwee Ming Cheng6, Wai Sum Yap7.
Abstract
BACKGROUND: Three species of seaweeds (Padina tetrastromatica, Caulerpa racemosa and Turbinaria ornata) are widely consumed by Asians as nutraceutical food due to their antioxidant properties. Studies have shown that these seaweeds exhibit bioactivities which include antimicrobial, antiviral, anti-hypertensive and anticoagulant activities. However, investigations into the mechanisms of action pertaining to the cytotoxic activity of the seaweeds are limited. The aim of this study was to determine the antioxidant and cytotoxic activities of whole extracts of P. tetrastromatica, C. racemosa and T. ornata, including the cellular events leading to the apoptotic cell death of the extract treated-MCF-7 cells. Bioassay guided fractionation was carried out and the compounds identified.Entities:
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Year: 2015 PMID: 26415532 PMCID: PMC4587585 DOI: 10.1186/s12906-015-0867-1
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Cytotoxic activity of different solvent extracts of P. tetrastromatica, C. racemosa and T. ornata in human adenocarcinoma MCF-7 cells and the human non-tumourigenic 184B5 cells
| Extracts | MCF-7 cells IC50 (μg/mL) | 184B5 cells IC20 (μg/mL) | ||||
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| Hexane | 130.0 ± 1.72 | ND | 240.0 ± 1.89 | 280.5 ± 1.34 | ND | ND |
| Dichloromethane (DCM) | ND | ND | ND | ND | ND | ND |
| Ethyl acetate (EA) | ND | ND | ND | ND | ND | ND |
| Acetone | ND | 100.0 ± 2.41 | 480.5 ± 2.27 | ND | 240.0 ± 1.26 | ND |
| Methanol | ND | 60.0 ± 1.47 | 60.0 ± 1.14 | ND | 150.5 ± 1.48 | 950.0 ± 0.62 |
Cytotoxic activity is expressed as IC50 (μg/mL) ± SD (n = 3) and IC50 (μg/mL) ± SD (n = 3) for MCF-7 and 184B5 cells, respectively, which is the concentration of extract at which 50 % of cell growth was inhibited relative to cells incubated in the presence of 0.1 % DMSO vehicle control. MCF-7 and 184B5 cells were treated with doxorubicin as a positive control. The drug showed IC50 values at 0.21 ± 1.25 μg/ml and 0.02 ± 1.97 μg/ml in MCF-7 and 184B5 cells, respectively
ND: Not detected
IC50 values in free radical scavenging assays for extracts of P. tetrastromatica, C. racemosa and T. ornata
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| Quercetin | Rutin | Catechin | |
|---|---|---|---|---|---|---|
| Total phenolic content (mg GAE/g) | 69.5 ± 1.74 (Methanol extract) | 19.8 ± 2.01 (Methanol extract) | 71.3 ± 2.14 (Acetone extract) | - | - | - |
| Total flavonoid content (mg of catechin equivalents/g dried weight) | 38.4 ± 1.64 (Methanol extract) | 16.0 ± 0.52 (EA extract) | 17.5 ± 1.06 (Hexane extract) | - | - | - |
| IC50 of DPPH radical scavenging activity (μg/mL) | 171.67 ± 2.89 (EA extract) | 90.00 ± 0 (Hexane extract) | 280.67 ± 1.15 (Methanol extract) | 21.67 ± 2.89 | 23.33 ± 2.89 | - |
| IC50 of superoxide anion scavenging activity (μg/mL) | ND | ND | 20.00 ± 0 (EA, acetone, methanol extracts) | 260.00 ± 0 | 223.33 ± 2.89 | - |
| IC50 of nitric oxide scavenging activity (μg/mL) | ND | 38.33 ± 2.89 (DCM extract) | 25.00 ± 0 (DCM and acetone extracts) | 20.00 ± 0 | 20.00 ± 0 | - |
| IC50 of hydroxyl radical scavenging activity (μg/mL) | 23.33 ± 2.89 (Hexane extract) | 20.00 ± 0 (Hexane and acetone extracts) | 20.00 ± 0 (Methanol extract) | 20.00 ± 0 | 101.67 ± 2.89 | - |
Quercetin and rutin were used as positive controls for all scavenging assays and for the determination of TPC whereas catechin was used as a positive control for the determination of TFC. Each value is expressed as mean ± SD (n = 3). Extracts in parentheses () indicate the solvent extracts with the highest TPC and TFC contents and best radical scavenging activities
ND Not detected
Fig. 1Antioxidant enzyme activities of methanolic extracts of P. tetrastromatica, C. racemosa and T. ornate for 8, 16 and 24 h. Untreated MCF-7 cells were used as the control and set as 100 %. Each value is expressed as mean ± SD (n = 3). a superoxide dismutase (SOD), b catalase (CAT), c glutathione reductase (GR). Note the enzyme activity decreasing upon treatment
Cytotoxic activity of column chromatographic pooled fractions of the hexane extract of P. tetrastromatica, the methanolic extract of C. racemosa and the methanolic extract of T. ornata in the human adenocarcinoma MCF-7 cells and the human non-tumourigenic 184B5 cells
| Sample | Pooled fractions | MCF-7 cells | 184B5 cells |
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| IC50 (μg/mL) | IC20 (μg/mL) | ||
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| P1 | 13.0 ± 1.68 | 120.0 ± 0.97 |
| P2 | 12.0 ± 2.01 | 138.5 ± 1.74 | |
| P3 | 15.0 ± 1.73 | 125.0 ± 0.91 | |
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| P1 | 18.0 ± 1.43 | 105.0 ± 1.47 |
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| P1 | 12.0 ± 2.35 | 110.5 ± 1.95 |
| P2 | 22.0 ± 1.96 | 120.0 ± 1.47 |
Cytotoxic activity is expressed as IC50 (μg/mL) ± SD (n = 3) and IC50 (μg/mL) ± SD (n = 3) for MCF-7 and 184B5 cells, respectively, which is the concentration of extract at which 50 % of cell growth was inhibited relative to cells incubated in the presence of 0.1 % DMSO vehicle control. MCF-7 and 184B5 cells were treated with doxorubicin as a positive control. The drug showed IC50 values at 0.21 ± 1.25 μg/ml and 0.02 ± 1.97 μg/ml in MCF-7 and 184B5 cells, respectively
Fig. 2MS spectra of protonated and deprotonated molecules. a Camptothecin at [M + H] + of m/z 371; lycodine at [M-H]- of m/z 277; camptothecin at [M + H] + of m/z 371; pseudopelletierine at [M + H] + of m/z 171; Camptothecin at [M + H] + of m/z 371; Pseudopelletierine at [M + H] + of m/z 171; Camptothecin at [M + H] + of m/z 371. b Compounds with pharmacological activity isolated and identified in P. tetrastromatica, C. racemosa and T. ornata fractions
Fig. 3Caspase activities of MCF-7 cells treated with seaweed fractions. a Caspase-8, b Caspase-9 and c Caspase-3 activities of MCF-7 cells treated with 12 μg/mL of partially purified P. tetrastromatica column chromatographic fraction, 18 μg/mL of partially purified C. racemosa column chromatographic fraction and 12 μg/mL of partially purified T. ornata column chromatographic fraction. Mitomycin-c was used as a positive control for caspase-8 and 9 activities while positive control for caspase-3 was colchicine (*p < 0.05; **p < 0.01). Note caspase activity induction upon cell treatment
Fig. 4DNA fragmentation in MCF-7 cells treated with seaweed fractions. Lane M: 1000 bp DNA marker, Lane 1 : Untreated MCF-7 cells (negative control), Lanes 2 and 3: MCF-7 cells treated with 12 μg/mL of P. tetrastromatica for 24 and 48 h, respectively, Lanes 4 and 5: MCF-7 cells treated with 18 μg/mL of C. racemosa for 24 and 48 h, respectively, Lanes 6 and 7: MCF-7 cells treated with 12 μg/mL of T. ornata for 24 and 48 h, respectively