| Literature DB >> 22682026 |
Natthida Weerapreeyakul1, Apiyada Nonpunya, Sahapat Barusrux, Thaweesak Thitimetharoch, Bungorn Sripanidkulchai.
Abstract
BACKGROUND: Six herbs in the Plant Genetics Conservation Project that have been used as complementary medicines were chosen on the basis of their medicinal value, namely Terminalia mucronata, Diospyros winitii, Bridelia insulana, Artabotrys harmandii, Terminallia triptera, and Croton oblongifolius. This study aims to evaluate the potential anticancer activity of 50% ethanol-water extracts of these six herbs.Entities:
Year: 2012 PMID: 22682026 PMCID: PMC3502167 DOI: 10.1186/1749-8546-7-15
Source DB: PubMed Journal: Chin Med ISSN: 1749-8546 Impact factor: 5.455
Cytotoxicity of the 50% ethanol-water crude extracts based on the neutral red assay, and the scientific name, family, part used and % yield
| Combretaceae | 6.14 | 136.4 ± 44.5 | 148.7 ± 12.3 | |
| [TT, OC & SK No 1214, 1224] | ||||
| Euphorbiaceae | 6.18 | 238.9 ± 21.9 | 378.4 ± 18.7 | |
| [TT, OC & SK No 1215, 1256] | ||||
| Ebenaceae | 4.13 | > 500 | 204.7 ± 33.5 | |
| [TT, OC & SK No 1245] | ||||
| Euphorbiaceae | 5.68 | > 500 | 183.9 ± 7.1 | |
| [TT, OC & SK No 1253] | ||||
| Annonaceae | 3.28 | 309.7 ± 58.2 | 163.5 ± 11.7 | |
| [TT, OC & SK No 1264] | ||||
| Combretaceae | 3.93 | 129.4 ± 18.4 | 152.0 ± 33.2 | |
| [TT, OC & SK No 1269] | ||||
| Melphalan | 59.9 ± 3.2 | 37.7 ± 9.8 | ||
Classification of the cytotoxicity and selectivity index (SI) of the 50% ethanol-water crude extracts in HepG2 cells Vero cells
| Very strong cytotoxicity | SI ≥ 3 | - |
| (IC50 < 10 μg/mL) | ||
| Strong cytotoxicity | SI ≥ 3 | - |
| (IC50 10 - 100 μg/mL) | SI < 3 | - |
| Moderate cytotoxicity | SI ≥ 3 | - |
| (IC50 100 - 500 μg/mL) | SI < 3 | |
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Figure 1DNA laddering in apoptotic HepG2 cells. DNA laddering was visualized in HepG2 cells after treatment with 80 μg/mL of melphalan and 500 μg/mL of 50% ethanol-water crude extracts for 24 h.
Figure 2Percent cell populations at different death modes and percent viable cells detected by Annexin V-FITC staining and flow cytometry after treatment of HepG2 cells with 80 μg/mL of melphalan and 500 μg/mL of 50% ethanol-water crude extracts for 24 h. A: Untreated cells; B: melphalan-treated cells; C: Diospyros winitii-treated cells; D: Terminalia triptera-treated cells; E: Terminalia mucronata-treated cells; F: Croton oblongifolius-treated cells; G: Artabotrys harmandii-treated cells; H: Bridelia ovata-treated cells.
GC-MS profiles of the three potential plant 50% ethanol-water crude extracts
| T | 11.94 | 7.126 | 51, 65, 91, 119, 120 | 4-Vinylphenol |
| | 12.29 | 6.335 | 53, 63, 69, 81, 97, 109, 126 | 5-Hydroxymethyl-2-furancarboxaldehyde |
| | 29.52 | 3.220 | 60, 73, 83, 97, 115, 129, 143, 157, 171, 185, 199, 213, 227, 256 | n-Hexadecanoic acid |
| | 36.34 | 5.579 | 57, 71, 107, 135, 320 | 3-Bis(methylthio)methylene-2-methyl-4-(methoxyphenyl) |
| 14.45 | 1.784 | 51, 77, 107, 135, 150 | 2-Methoxy-4-vinylphenol | |
| | 15.44 | 2.605 | 65, 96, 111, 139, 154 | Phenol,2,6-dimethoxy- |
| | 21.92 | 2.464 | 111, 126, 141, 169, 184 | Acetaldehyde,(3-chloro-5,5-dimethyl-2-cyclohexane-1-ylidene) |
| | 24.85 | 8.367 | 77, 91, 124, 137, 180 | 1,7-Dimethyl-4,4a,5,6-tetrahydropyrido-1H[1,2-b]pyridazin-2)3H)one |
| | 29.53 | 8.318 | 60, 73, 83, 97, 115, 129, 143, 157, 171, 185, 199, 213, 227, 256 | n-Hexadecanoic acid |
| | 36.35 | 5.656 | 57, 107, 135, 152, 320 | 4-Trimethylsilyl-3-(1-phenylthiobutyl)pent-3-en-2-one |
| 14.43 | 2.260 | 51, 77, 107, 135, 150 | 2-Methoxy-4-vinylphenol | |
| | 24.88 | 10.966 | 77, 91, 124, 137, 180 | 2-(2-Oxoethyl)-cis-bicyclo[3.3.0]octane-3,7dione |
| | 29.64 | 8.398 | 60, 73, 83, 97, 115, 129, 143, 157, 171, 185, 199, 213, 227, 256 | Hexadecanoic acid |
| | 39.10 | 27.801 | 57, 74, 98, 112, 134, 239, 257, 299 | Hexadecanoic acid, 2-hydroxy-1-(hydroxymethyl)ethyl ester) |
| 42.17 | 18.451 | 43, 57, 74, 98, 112, 134, 154, 267, 284, 298, 327, 341, 358 | Glyceryl monosterate |