| Literature DB >> 26893742 |
Toktam Memariani1, Toktam Hosseini2, Hossein Kamali3, Ameneh Mohammadi4, Maryam Ghorbani5, Abdoreza Shakeri6, Demetrios A Spandidos7, Aristidis M Tsatsakis8, Shabnam Shahsavand9.
Abstract
Cyperus longus is one of the Iranian endemic species. However, to date, and to the best of our knowledge, there are no availale academic reports on the cytotoxicity of this plant. Thus, this study was carried out to examine the in vitro anti-proliferative and anti-apoptotic effects of Cyperus longus extract, fractions and essential oil (EO) on MCF7 and PC3 cell lines. The chemical constituents of EO were identified using gas chromatography (GC)-mass spectrometry (MS) analysis. The cells were cultured in RPMI-1640 medium and incubated with various concentrations of the plant extract and fractions. Cell viability was quantified by MTT assay following 24, 48 and 72 h of exposure to (12.5-200 µg/ml) of the methanol extract, the dichloromethane (CH2Cl2), ethyl acetate (EtOAc) and water fractions, as well as the EO of the plant. The percentage of apoptotic cells was determined using propidium iodide staining of DNA fragments by flow cytometry (sub-G1 peak). The most effective fraction in the MCF7 cell line was the CH2Cl2 fraction (IC50 after 48 h, 25.34±2.01). The EtOAc fraction (IC50 after 48 h, 35.2±2.69) and the methanol extract (IC50 after 48 h, 64.64±1.64) were also found to be effective. The IC50 values obtained for the PC3 cell line were 37.97±3.87, 51.57±3.87 and 70.33±2.36 for the CH2Cl2 fraction, the EtOAc fraction and the methanol extract, respectively. Based on these data and due to the partial polarity of the most effective fraction (the CH2Cl2 fraction), we also examined the cytotoxicity of the plant EO. The IC50 values after 48 h were 22.25±4.25 and 12.55±3.65 in the PC3 and MCF7 cell lines, respectively. DNA fragmentation assay also confirmed these data. Performing GC-MS analysis for the plant EO revealed that β-himachalene (10.81%), α-caryophyllene oxide (7.6%), irisone (4.78%), β-caryophyllene oxide (4.36%), humulene oxide (12%), viridiflorol (4.73%), aristolone (6.39%) and longiverbenone (6.04%) were the main constituents. Our results demonstrated that two of the constituents of Cyperus longus, viridiflorol and longiverbenone, should be investigated further as possible promising chemotherapeutic agents in cancer treatment.Entities:
Keywords: Cyperus longus; MTT; apoptosis; cancer; cytotoxicity; longiverbenone; viridiflorol
Year: 2015 PMID: 26893742 PMCID: PMC4734339 DOI: 10.3892/ol.2015.4050
Source DB: PubMed Journal: Oncol Lett ISSN: 1792-1074 Impact factor: 2.967
Figure 1.Partioning scheme of the methanolic extract. CH2Cl2, dichloromethane; EtOAc, ethyl acetate.
Half maximal inhibitory concentrations (IC50) of the extract, fractions and essential oil of Cyperus longus in the MCF7 and PC3 cell lines following 24, 48 and 72 h of exposure.
| IC50 in MCF7 cells | IC50 in PC3 cells | |||||
|---|---|---|---|---|---|---|
| Treatment agent | 24 h | 48 h | 72 h | 24 h | 48 h | 72 h |
| Aqueous fraction | >100 | >100 | >100 | >100 | >100 | >100 |
| Methanolic extract | >100 | 64.64±1.64 | 93.47±5.11 | >100 | 70.33±2.36 | 95.82±1.96 |
| CH2Cl2 fraction | 22.17±2.33[ | 25.34±2.01[ | 43.15±3.02[ | 58.01±6.39 | 37.97±3.87 | 72.39±6.84 |
| Ethyl acetate fraction | 42.38±2.54[ | 35.2±2.69[ | 55.38±4.25[ | 72.37±3.69 | 51.57±3.89 | 73.22±3.64 |
| Essential oil | 21.17±2.01[ | 12.55±3.65[ | 31.35±3.69 | 43.65±4.12 | 22.25±4.25[ | 39.91±3.21 |
| Paclitaxel (positive control) | 6.34±0.81[ | 3.45±0.39[ | 6.75±0.57[ | 0.10±0.02 | 0.09±0.03 | 0.08±0.03 |
The IC50 values were quantified by MTT assay. The data are presented as the means ± standard deviation (n=5). Letters (d-f) are an indicator of statistical differences obtained separately between essential oil and palitaxel (
P<0.05 and
P<0.001) after 48 h of exposure (most effective time point) and letters (a-c) are an indicator of statistical differences obtained separately for the MCF7 cell line compared to the PC3 cell line at each time point (
P<0.05,
P<0.01 and
P<0.001). CH2Cl2, dichloromethane.
Figure 2.Flow cytometric analysis of the proportion of apoptotic cells. The proportion of apoptotic cells was measured after PI staining of the DNA fragments using flow cytometry. The sub-G1 peak (one of the reliable biochemical markers of apoptosis) was observed at 48 h following treatment of the cells with the extract, the different fractions and the EO of Cyperus longus.
Effects of the extract, fractions and essential oil of Cyperus longus on the sub-G1 cell population (apoptosis, %) in the MCF7 and PC3 cell lines following 48 h of exposure.
| Percentage of apoptotic cells | |||
|---|---|---|---|
| Treatment agent | L929 cells | MCF7 cells | PC3 cells |
| Control | 2.72±3.19 | 3.2±1.59 | 3.65±1.61 |
| Aqueous fraction, 75 µg/ml | 6.25±3.21 | 7.59±1.54 | 9.87±1.31 |
| Methanolic extract, 75 µg/ml | 20.85±3.07 | 51.72±7.2[ | 25.07±4.21 |
| CH2Cl2 fraction, 75 µg/ml | 22.69±4.35 | 78.35±5.65[ | 60.39±5.32 |
| Ethyl acetate fraction, 75 µg/ml | 27.35±6.65 | 68.89±3.34[ | 50.89±6.87 |
| Essential oil, 75 µg/ml | 29.22±3.68 | 78.23±2.86[ | 65.35±2.35 |
| Paclitaxel (positive control), 0.35 µM | 90.15±2.33 | 89.1±5.79 | 98.66±3.43[ |
The sub-G1 population (apoptosis %) was quantified by in vitro DNA fragmentation assay using a FACScan flow cytometer. The data are presented as the means ± standard deviation (n=3). The letter (d) is an indicator of statistical differences obtained separately between essential oil and palitaxel (
P<0.001) and letters (a-c) are an indicator of statistical differences obtained separately for the MCF7 cell line compared to the PC3 cell line (
P<0.05,
P<0.01 and
P<0.001). CH2Cl2, dichloromethane.
Chemical composition of the essential oil of Cyperus longus from North Khorasan, Iran.
| No. | Compound name | Area % | RI | Type of compound |
|---|---|---|---|---|
| 1 | Linalool | 0.15 | 1,000.423 | Monoterpene oxygenated |
| 2 | cis-Dihydrocarvone | 0.22 | 1,100.42 | Monoterpene oxygenated |
| 3 | trans-Dihydrocarvone | 0.12 | 1,100.50 | Monoterpene oxygenated |
| 4 | α-Cubebene | 0.23 | 1,200.90 | Sesquiterpene |
| 5 | α-Copaene | 2.35 | 1,300.21 | Sesquiterpene |
| 6 | β-Elemene | 0.05 | 1,300.25 | Sesquiterpene |
| 7 | Germacrene-D | 0.61 | 1,300.33 | Sesquiterpene |
| 8 | Megastigmatrienone | 0.06 | 1,300.37 | Monoterpene oxygenated |
| 9 | α-Gurjunene | 0.56 | 1,300.49 | Sesquiterpene |
| 10 | α-Guaiene | 0.71 | 1,300.79 | Sesquiterpene |
| 11 | α-Humulene | 1 | 1,300.99 | Sesquiterpene |
| 12 | α-Amorphene | 1.16 | 1,400.18 | Sesquiterpene |
| 13 | Spathulenol | 0.97 | 1,400.41 | Sesquiterpene oxygenated |
| 14 | δ-Guaiene | 1.27 | 1,400.48 | Sesquiterpene |
| 15 | Torreyol | 1.61 | 1,400.59 | Sesquiterpene oxygenated |
| 16 | 9-methyl-10-methylenetricyclo[4,2,1,1]decane-9-ol | 1.65 | 1,400.87 | Monoterpene oxygenated |
| 17 | β-Himachalene | 10.81 | 1,500.02 | Sesquiterpene |
| 18 | γ-Gurjunenepoxide | 1.4 | 1,500.11 | Sesquiterpene oxygenated |
| 19 | α-Caryophyllene oxide | 7.6 | 1,500.22 | Sesquiterpene oxygenated |
| 20 | Irisone | 4.78 | 1,500.30 | Monoterpene oxygenated |
| 21 | β-Caryophyllene oxide | 4.36 | 1,500.35 | Sesquiterpene oxygenated |
| 22 | Humulene oxide | 12 | 1,500.65 | Sesquiterpene oxygenated |
| 23 | Retinol-acetate | 1.58 | 1,500.73 | Diterpene oxygenated |
| 24 | Limonene-1,2-epoxide | 2.15 | 1,500.80 | Monoterpene oxygenated |
| 25 | Viridiflorol | 4.73 | 1,600.02 | Sesquiterpene oxygenated |
| 26 | α-Himachalene | 2.14 | 1,600.18 | Sesquiterpene |
| 27 | Longiverbenone | 6.04 | 1,600.29 | Sesquiterpene oxygenated |
| 28 | Aristolone | 6.39 | 1,600.57 | Sesquiterpene oxygenated |
| 29 | Cembrene | 1.71 | 1,600.67 | Diterpene |
| 30 | Viridiflorol | 0.79 | 1,600.75 | Sesquiterpene oxygenated |
| 31 | Aromadendrenepoxide | 1.1 | 1,600.92 | Sesquiterpene oxygenated |
| 32 | 17-Acetoxy-19-kauranal | 3.1 | 1,800.64 | Diterpene oxygenated |
| Total compounds | 83.24 | |||
| Monoterpene oxygenated | 9.13 | |||
| Sesquiterpene | 20.89 | |||
| Sesquiterpene oxygenated | 46.83 | |||
| Diterpene | 1.71 | |||
| Diterpene oxygenated | 4.68 |
Retention index (RI) relative to the n-alkanes on the DB-5 MS capillary column. MS, identified on the basis of a comparison with MS data spectra.