| Literature DB >> 27186236 |
Xiaoqin Wang1, Ying Jiang1, Daode Hu1.
Abstract
BACKGROUND: Curcuma wenyujin, a member of the genus Curcuma, has been widely prescribed for anti-cancer therapy. Multiple response surface optimization has attracted a great attention, while, the research about optimizing three or more responses employing response surface methodology (RSM) was very few.Entities:
Keywords: Antiproliferative activity; Curcuma wenyujin; High performance liquid chromatography; Response surface methodology; Ultrasonic extraction
Year: 2016 PMID: 27186236 PMCID: PMC4868111 DOI: 10.1186/s13065-016-0177-9
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Fig. 1HPLC chromatograms of a mixed standards of the four volatile components and b the four components in Curcuma wenyujin: (1) curdione; (2) furanodienone; (3) curcumol and (4) germacrone
Central composite design and results for ultrasonic extraction of curdione, furanodienone, curcumol and germacrone from Curcuma wenyujin
| Run | Factors | Curdione (mg g−1) | Furanodienone (mg g−1) | Curcumol (mg g−1) | Germacrone (mg g−1) | Total yield (mg g−1) | ||
|---|---|---|---|---|---|---|---|---|
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| 1 | 2.6 | 6.5 | 14 | 1.53 | 0.97 | 0.16 | 0.24 | 2.90 |
| 2 | 6 | 65 | 14 | 1.77 | 1.32 | 0.21 | 0.34 | 3.64 |
| 3 | 4 | 50 | 20 | 1.34 | 0.90 | 0.14 | 0.23 | 2.61 |
| 4 | 6 | 65 | 3.9 | 1.62 | 1.04 | 0.16 | 0.26 | 3.08 |
| 5 | 4 | 80 | 20 | 1.73 | 1.19 | 0.20 | 0.31 | 3.43 |
| 6 | 6 | 65 | 24.1 | 1.84 | 1.45 | 0.22 | 0.38 | 3.89 |
| 7 | 8 | 80 | 20 | 2.00 | 1.50 | 0.25 | 0.38 | 4.13 |
| 8 | 4 | 80 | 8 | 1.57 | 1.18 | 0.18 | 0.29 | 3.22 |
| 9 | 6 | 39.8 | 14 | 1.38 | 0.74 | 0.12 | 0.18 | 2.42 |
| 10 | 6 | 65 | 14 | 1.87 | 1.43 | 0.20 | 0.36 | 3.86 |
| 11 | 6 | 65 | 14 | 1.75 | 1.39 | 0.22 | 0.35 | 3.71 |
| 12 | 9.4 | 65 | 14 | 1.92 | 1.47 | 0.25 | 0.39 | 4.03 |
| 13 | 8 | 50 | 20 | 1.80 | 1.29 | 0.20 | 0.33 | 3.62 |
| 14 | 8 | 80 | 8 | 1.83 | 1.30 | 0.21 | 0.33 | 3.67 |
| 15 | 4 | 50 | 8 | 1.25 | 0.78 | 0.12 | 0.20 | 2.35 |
| 16 | 6 | 90.2 | 14 | 1.60 | 1.11 | 0.16 | 0.24 | 3.11 |
| 17 | 8 | 50 | 8 | 1.82 | 1.17 | 0.18 | 0.30 | 3.47 |
X Liquid to solid ratio (mL g−1); X Ethanol concentration (%); X Ultrasonic time (min)
Analysis of variance for central composite design and tests of the regression coefficients and intercepts of coded equations for curdione, furanodienone, curcumol and germacrone
| Source | Mean squares | F |
| Coefficient estimate | |
|---|---|---|---|---|---|
| Curdione | Model | 0.075 | 12.99 | 0.0014 | |
| Intercept | 1.790 | ||||
|
| 0.360 | 61.88 | 0.0001 | 0.160 | |
|
| 0.120 | 20.88 | 0.0026 | 0.094 | |
|
| 0.042 | 7.29 | 0.0307 | 0.056 | |
|
| 0.029 | 5.04 | 0.0596 | −0.060 | |
|
| 1.326 × 10−3 | 0.23 | 0.6466 | −0.013 | |
|
| 8.001 × 10−3 | 1.38 | 0.2779 | 0.032 | |
|
| 4.588 × 10−3 | 0.79 | 0.4027 | −0.020 | |
|
| 0.110 | 19.80 | 0.0030 | −0.100 | |
|
| 3.531 × 10−3 | 0.61 | 0.4601 | −0.018 | |
| Lack of Fit | 6.474 × 10−3 | 1.60 | 0.4281 | ||
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| Furanodienone | Model | 0.098 | 27.14 | 0.0001 | |
| Intercept | 1.370 | ||||
|
| 0.330 | 90.16 | <0.0001 | 0.150 | |
|
| 0.190 | 51.54 | 0.0002 | 0.120 | |
|
| 0.110 | 29.00 | 0.0010 | 0.088 | |
|
| 9.730 × 10−3 | 2.69 | 0.1452 | −0.035 | |
|
| 1.966 × 10−3 | 0.54 | 0.4852 | −0.013 | |
|
| 1.566 × 10−4 | 0.04 | 0.8412 | 4.425 × 10−3 | |
|
| 0.025 | 7.01 | 0.0331 | −0.047 | |
|
| 0.250 | 70.00 | <0.0001 | −0.150 | |
|
| 0.015 | 4.14 | 0.0813 | −0.036 | |
| Lack of Fit | 3.853 × 10−3 | 1.27 | 0.4963 | ||
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| Curcumol | Model | 2.694 × 10−3 | 15.43 | 0.0008 | |
| Intercept | 0.210 | ||||
|
| 8.931 × 10−3 | 51.15 | 0.0002 | 0.026 | |
|
| 4.953 × 10−3 | 28.37 | 0.0011 | 0.019 | |
|
| 2.519 × 10−3 | 14.43 | 0.0067 | 0.014 | |
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| 1.739 × 10−4 | 1.00 | 0.3515 | −4.663 × 10−3 | |
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| 9.453 × 10−5 | 0.54 | 0.4858 | 3.437 × 10−3 | |
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| 9.045 × 10−5 | 0.52 | 0.4950 | 3.362 × 10−3 | |
|
| 3.674 × 10−7 | 2.10 × 10−3 | 0.9647 | −1.805 × 10−4 | |
|
| 6.848 × 10−3 | 39.22 | 0.0004 | −0.025 | |
|
| 2.553 × 10−4 | 1.46 | 0.2658 | −4.759 × 10−3 | |
| Lack of Fit | 2.209 × 10−4 | 3.76 | 0.2232 | ||
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| Germacrone | Model | 7.756 × 10−3 | 16.36 | 0.0007 | |
| Intercept | 0.350 | ||||
|
| 0.023 | 49.39 | 0.0002 | 0.041 | |
|
| 0.010 | 21.15 | 0.0025 | 0.027 | |
|
| 9.435 × 10−3 | 19.90 | 0.0029 | 0.026 | |
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| 8.694 × 10−4 | 1.83 | 0.2178 | −0.010 | |
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| 9.940 × 10−5 | 0.21 | 0.6609 | 3.525 × 10−3 | |
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| 1.682 × 10−5 | 0.04 | 0.8559 | 1.450 × 10−3 | |
|
| 7.945 × 10−4 | 1.68 | 0.2365 | −8.395 × 10−3 | |
|
| 0.025 | 52.89 | 0.0002 | −0.047 | |
|
| 4.873 × 10−4 | 1.03 | 0.3444 | −6.574 × 10−3 | |
| Lack of Fit | 6.264 × 10−4 | 6.72 | 0.1346 | ||
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X Liquid to solid ratio (mL g−1); X Ethanol concentration (%); X Ultrasonic time (min)
Fig. 2Three-dimensional response surface plots showing the effects of experimental factors and their mutual functions on extraction of: a–c Curdione; d–f Furanodienone; g–i Curcumol and j–l Germacrone from Curcuma wenyujin. The unmarked factor in each plot is held at its central value
Fig. 3Response surface graph of the maximum global desirability function with 0.971 at a 20 min extraction time; b 70.1 % ethanol concentration and c 8 mL g−1 liquid–solid ratio
Extraction yields of curdione, furanodienone, curcumol and germacrone from Curcuma wenyujin by ultrasonic extraction, SD extraction and maceration extraction
| Extraction methods | Extraction solvents | Extraction time | Curdione (mg g−1) | Furanodienone (mg g−1) | Curcumol (mg g−1) | Germacrone (mg g−1) | Total yield (mg g−1) |
|---|---|---|---|---|---|---|---|
| Ultrasonic extraction | 70 % ethanol | 20 min | 2.00 | 1.56 | 0.25 | 0.41 | 4.22 |
| SD extraction | Pure water | 20 min | 1.38 | 1.42 | 0.22 | 0.32 | 3.34 |
| Maceration extraction | 70 % ethanol | 20 min | 1.46 | 1.12 | 0.20 | 0.27 | 3.05 |
| SD extraction | Pure water | 1 h | 1.89 | 1.52 | 0.24 | 0.39 | 4.04 |
| Maceration extraction | 70 % ethanol | 2 h | 1.94 | 1.52 | 0.26 | 0.38 | 4.10 |
SD means steam distillation
Fig. 4FESEM images of raw and treated materials under different extraction conditions. a Raw materials; b Ultrasonic extraction 8 min; c Ultrasonic extraction 20 min; d SD extraction 20 min; e Maceration extraction 20 min; f SD extraction 1 h and g Maceration extraction 2 h
Fig. 5Antiproliferative activities in CRC cells a the effect of Curcuma wenyujin extract on RKO and HT-29 cells; b the effect of the four compounds on RKO cells; c the effect of the four compounds alone on HT-29 cells and d combined effect of these four compounds on RKO and HT-29 cells. In picture d, the concentration in horizontal coordinate refers to that of curdione