| Literature DB >> 25923077 |
Omer Abdalla Ahmed Hamdi1, El Hassane Anouar2,3, Jamil A Shilpi4, Zuhra Bashir Khalifa Al Trabolsy5, Sharifuddin Bin Md Zain6, Nur Shahidatul Shida Zakaria7, Mohd Zulkefeli8, Jean-Frédéric F Weber9, Sri Nurestri A Malek10, Syarifah Nur Syed Abdul Rahman11, Khalijah Awang12,13.
Abstract
A series of 21 compounds isolated from Curcuma zedoaria was subjected to cytotoxicity test against MCF7; Ca Ski; PC3 and HT-29 cancer cell lines; and a normal HUVEC cell line. To rationalize the structure-activity relationships of the isolated compounds; a set of electronic; steric and hydrophobic descriptors were calculated using density functional theory (DFT) method. Statistical analyses were carried out using simple and multiple linear regressions (SLR; MLR); principal component analysis (PCA); and hierarchical cluster analysis (HCA). SLR analyses showed that the cytotoxicity of the isolated compounds against a given cell line depend on certain descriptors; and the corresponding correlation coefficients (R2) vary from 0%-55%. MLR results revealed that the best models can be achieved with a limited number of specific descriptors applicable for compounds having a similar basic skeleton. Based on PCA; HCA and MLR analyses; active compounds were classified into subgroups; which was in agreement with the cell based cytotoxicity assay.Entities:
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Year: 2015 PMID: 25923077 PMCID: PMC4463598 DOI: 10.3390/ijms16059450
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Structure of compounds isolated from C. zedoaria.
Cytotoxicity IC50 (µM) and molecular descriptors obtained at B3P86/6-311+G (d, p) level for the isolated compounds.
| NO. | IP | EA | χ | η | ω | α | μ | V | Log P | M | IC50 (µM) a | |||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| MCF-7 | Ca Ski | PC-3 | HT-29 | HUVEC | ||||||||||||
| 1 | 6.87 | 2.15 | 4.51 | 4.71 | 2.16 | 324 | 6.13 | 400 | 470 | 3.45 | 302.46 | 53.9 ± 0.7 | 47.9 ± 0.3 | 87.0 ± 7.9 | 71.1 ± 10.2 | 149.8 ± 6.3 |
| 2 | 6.86 | 2.09 | 4.48 | 4.77 | 2.10 | 328 | 5.62 | 408 | 481 | 3.86 | 318.46 | 70.0 ± 3.3 | NA b | 68.8 ± 5.0 | 54.6 ± 6.3 | 81.0 ± 6.0 |
| 3 | 6.85 | 2.00 | 4.43 | 4.85 | 2.02 | 363 | 5.63 | 457 | 541 | 4.20 | 348.53 | 14.3 ± 0.6 | NA b | 119.6 ± 9.8 | 138.6 ± 14.6 | 135.7 ± 12.1 |
| 4 | 6.56 | 1.69 | 4.12 | 4.87 | 1.74 | 244 | 2.99 | 323 | 368 | 3.63 | 234.34 | 140.8 ± 4.7 | 92.6 ± 4.7 | 81.5 ± 11.9 | 96.9 ± 10.2 | 102.4 ± 9.0 |
| 5 | 6.52 | 1.26 | 3.89 | 5.26 | 1.44 | 238 | 1.40 | 331 | 377 | 4.01 | 236.35 | NA b | – | – | – | – |
| 6 | 6.40 | 1.39 | 3.89 | 5.01 | 1.51 | 248 | 4.06 | 321 | 355 | 3.81 | 218.34 | NA b | 180.0 ± 5.5 | 252.8 ± 22.4 | 196.5 ± 18.8 | 337.5 ± 1.4 |
| 7 | 5.96 | 0.29 | 3.12 | 5.67 | 0.86 | 238 | 1.88 | 304 | 341 | 1.84 | 216.32 | 271.9 ± 12.0 | NA b | 182.6 ± 20.8 | 218.2 ± 20.3 | 189.1 ± 12.0 |
| 8 | 6.58 | 1.80 | 4.19 | 4.78 | 1.84 | 241 | 6.35 | 313 | 353 | 0.84 | 246.31 | NA b | NA b | 109.6 ± 7.7 | 77.5 ± 10.1 | 170.9 ± 11.0 |
| 9 | 6.54 | 1.39 | 3.96 | 5.14 | 1.53 | 241 | 5.59 | 318 | 364 | 2.71 | 234.34 | 218.8 ± 17.1 | NA b | 187.3 ± 30.7 | 169.0 ± 19.6 | 206.5 ± 20.1 |
| 10 | 6.49 | 1.66 | 4.08 | 4.83 | 1.72 | 243 | 3.67 | 320 | 364 | 2.85 | 243.34 | 251.7 ± 23.9 | NA b | 218.6 ± 20.1 | 299.2 ± 34.1 | 228.1 ± 6.6 |
| 11 | 6.07 | 1.46 | 3.76 | 4.61 | 1.54 | 240 | 4.37 | 320 | 356 | 2.60 | 232.32 | 137.7 ± 6.5 | – | – | – | – |
| 12 | 6.50 | 0.37 | 3.43 | 6.13 | 0.96 | 254 | 2.61 | 342 | 389 | 3.80 | 236.4 | 154.5 ± 17.8 | NA b | 158.2 ± 19.0 | 218.3 ± 16.5 | 190.8 ± 12.7 |
| 13 | 6.54 | 1.77 | 4.16 | 4.78 | 1.81 | 252 | 7.48 | 327 | 362 | 2.71 | 234.34 | 127.2 ±9.4 | 266.3 ± 1.3 | 56.8 ± 7.3 | 66.1 ± 9.8 | 69.6 ± 4.3 |
| 14 | 6.21 | 0.57 | 3.39 | 5.64 | 1.02 | 260 | 3.86 | 333 | 376 | 3.58 | 248.37 | 37.4 ± 37.4 | 74.5 ± 4.0 | 69.7 ± 4.8 | 99.9 ± 10.9 | 104.3 ± 5.6 |
| 15 | 5.71 | 2.26 | 3.99 | 3.45 | 2.30 | 290 | 11.67 | 305 | 330 | 3.46 | 228.29 | 136.8 ± 14.1 | NA b | 167.8 ± 9.6 | 156.4 ± 25.4 | 314.1 ± 26.7 |
| 16 | 6.47 | 1.55 | 4.01 | 4.92 | 1.63 | 245 | 3.76 | 350 | 371 | 2.23 | 232.32 | 243.2 ± 13.8 | – | – | – | – |
| 17 | 7.09 | 2.12 | 4.61 | 4.97 | 2.14 | 227 | 4.90 | 298 | 339 | 3.43 | 220.31 | 109.4 ± 0.5 | 156.6 ± 2.7 | 49.0 ± 8.6 | 62.2 ± 12.3 | 64.5 ± 5.0 |
| 18 | 6.51 | 1.80 | 4.15 | 4.71 | 1.83 | 247 | 6.66 | 310 | 340 | 3.51 | 216.32 | NA b | 351.3 ± 5.5 | NA b | NA b | NA b |
| 19 | 6.77 | 1.64 | 4.21 | 5.13 | 1.72 | 256 | 0.71 | 362 | 394 | 3.5 | 248.37 | 32.2 ± 4.0 | NA b | 160.2 ± 16.9 | 174.3 ± 25.0 | 201.3 ± 34.6 |
| 20 | 6.94 | 1.48 | 4.21 | 5.47 | 1.62 | 243 | 6.39 | 330 | 365 | 2.98 | 234.34 | 212.4 ± 13.2 | 80.2 ± 10.2 | 90.9 ± 13.7 | 92.6 ± 29.9 | – |
| 21 | 7.24 | 2.03 | 4.63 | 5.21 | 2.06 | 259 | 4.88 | 332 | 386 | 3.86 | 262.35 | 238.0 ± 13.8 | 236.7 ± 30.9 | 221.8 ± 13.3 | 172.7 ± 29.7 | – |
a The cytotoxicity results as reported by [18]; b NA = Not active.
Figure 2Simple linear regression correlation (SLR) curves between the cytotoxic activity on MCF-7 cells and each descriptor of isolated compounds from C. zedoaria.
Correlation coefficients (R2), adjusted correlation coefficients (R2adj) and standard deviations (SD) of simple linear regression curves (SLR) between each descriptor and the tested cell lines.
| Descriptor/s/SLR on Cells | MCF-7 | Ca Ski | PC-3 | HT-29 | HUVEC | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| %R2 | %R2adj | SD | %R2 | %R2adj | SD | %R2 | %R2adj | SD | %R2 | %R2adj | SD | %R2 | %R2adj | SD | |||
| IP | 4 | −4 | 0.40 | 0 | −14 | 0.31 | 8 | 2 | 0.22 | 14 | 8 | 0.22 | 30 | 24 | 0.19 | ||
| EA | 6 | −2 | 0.39 | 6 | −8 | 0.30 | 5 | −2 | 0.23 | 19 | 14 | 0.21 | 3 | −4 | 0.23 | ||
| χ | 5 | −2 | 0.39 | 2 | −11 | 0.31 | 8 | 2 | 0.22 | 23 | 18 | 0.20 | 13 | 7 | 0.21 | ||
| η | 3 | −4 | 0.40 | 11 | −2 | 0.30 | 0 | −6 | 0.23 | 5 | −2 | 0.23 | 2 | −6 | 0.23 | ||
| S | 4 | −4 | 0.40 | 10 | −3 | 0.30 | 0 | −7 | 0.23 | 2 | −5 | 0.23 | 5 | −3 | 0.23 | ||
| ω | 7 | 0 | 0.39 | 4 | −10 | 0.31 | 5 | −1 | 0.23 | 14 | 19 | 0.21 | 3 | −4 | 0.23 | ||
| α | 52 | 48 | 0.28 | 28 | 18 | 0.27 | 2 | −5 | 0.23 | 5 | −1 | 0.23 | 1 | −7 | 0.23 | ||
| DM | 0 | −7 | 0.40 | 9 | −4 | 0.30 | 4 | −3 | 0.23 | 13 | 7 | 0.22 | 0 | −8 | 0.23 | ||
| A | 55 | 51 | 0.27 | 42 | 33 | 0.24 | 2 | −4 | 0.23 | 4 | −2 | 0.23 | 3 | −4 | 0.23 | ||
| V | 53 | 49 | 0.28 | 43 | 34 | 0.24 | 3 | −4 | 0.23 | 5 | −1 | 0.23 | 5 | −2 | 0.22 | ||
| Log P | 40 | 36 | 0.31 | 0 | −14 | 0.31 | −7 | 0 | 0.23 | 0 | −6 | 0.23 | 1 | −7 | 0.23 | ||
| M | 49 | 45 | 0.29 | 36 | 26 | 0.25 | 4 | −3 | 0.23 | 8 | 2 | 0.22 | −1 | 6 | 0.22 | ||
Figure 3Multiple linear regression (MLR) correlations between most important descriptors and the cytotoxic activity of the active compounds isolated from C. zedoaria. (a) MLR analysis for cytotoxicity against MCF-7; (b) Modified MLR analysis of compounds 1–11 for cytotoxicity against MCF-7; (c) MLR analysis for cytotoxicity against Ca Ski; (d) MLR analysis for cytotoxicity against PC-3; (e) MLR analysis for cytotoxicity against HUVEC.
Predicted log(IC50)Pred. and residuals of the active compounds obtained using MLR Equations (1)–(6).
| NO. | Equation (1) | Equation (2) | Equation (3) | Equation (5) | Equation (6) | |||||
|---|---|---|---|---|---|---|---|---|---|---|
| log(IC50)Pred. | Resid. | log(IC50)Pred. | Resid. | log(IC50)Pred. | Resid. | log(IC50)Pred. | Resid. | log(IC50)Pred. | Resid. | |
| 1 | 1.79 | 0.06 | 1.73 | 1.69 | 1.68 | 0.00 | 1.86 | −0.08 | 2.02 | 2.18 |
| 2 | 1.69 | −0.17 | 1.86 | 1.82 | – | – | 1.96 | 0.12 | 2.06 | 1.91 |
| 3 | 1.26 | 0.11 | 1.15 | 1.20 | – | – | 2.03 | −0.05 | 2.13 | 2.13 |
| 4 | 1.85 | −0.30 | 2.15 | 2.13 | – | – | 2.39 | −0.02 | – | – |
| 5 | – | – | – | – | – | – | 2.26 | 0.00 | – | – |
| 6 | – | – | – | – | 2.26 | 0.00 | 2.06 | 0.02 | 2.48 | 2.53 |
| 7 | 2.43 | 0.00 | 2.43 | 2.41 | – | – | 2.28 | 0.00 | 2.28 | 2.28 |
| 8 | – | – | – | – | – | – | 2.34 | 0.00 | 2.27 | 2.23 |
| 9 | 2.37 | 0.03 | 2.34 | 2.39 | – | – | – | – | 2.30 | 2.32 |
| 10 | 2.44 | 0.04 | 2.40 | 2.43 | – | – | – | – | 2.38 | 2.36 |
| 11 | 2.31 | 0.17 | – | – | – | – | – | – | – | – |
| 12 | 2.14 | −0.05 | – | – | – | – | – | – | – | – |
| 13 | – | – | – | – | 2.43 | -0.01 | – | – | – | – |
| 14 | 1.62 | 0.05 | – | – | 1.87 | -0.01 | – | – | – | – |
| 15 | – | – | – | – | – | – | – | – | – | – |
| 16 | 2.13 | −0.26 | – | – | – | – | – | – | – | – |
| 17 | 2.22 | 0.18 | – | – | 2.19 | 0.00 | – | – | – | – |
| 18 | – | – | – | – | 2.55 | 0.01 | – | – | – | – |
| 19 | 1.74 | 0.22 | – | – | – | – | – | – | – | – |
| 20 | 2.38 | 0.05 | – | – | 1.90 | 0.01 | – | – | – | – |
| 21 | 2.25 | −0.13 | – | – | 2.37 | 0.00 | – | – | – | – |
Variances (eigenvalues) obtained for the first three principal components.
| Component | Eigenvalue | Variance (%) | Cumulated Variance (%) |
|---|---|---|---|
| PC1 | 4.525 | 90.50 | 90.50 |
| PC2 | 0.3560 | 7.12 | 97.62 |
| PC3 | 0.1134 | 2.27 | 99.89 |
Loading vectors for the first three principal components.
| Variable | PC1 | PC2 | PC3 |
|---|---|---|---|
| IP | 0.43 | 0.61 | 0.66 |
| A | 0.46 | −0.38 | −0.04 |
| V | 0.46 | −0.34 | 0.04 |
| logP | 0.43 | 0.51 | −0.74 |
| M | 0.46 | −0.32 | 0.08 |
Figure 4Plot of the score vectors of first principal components for cytotoxicity of compounds from C. zedoaria against MCF-7 cells.
Figure 5Dendrogram obtained from HCA of cytotoxicity of compounds from C. zedoaria.