| Literature DB >> 20723210 |
An Wouters1, Bea Pauwels, Filip Lardon, Greet G O Pattyn, Hilde A J Lambrechts, Marc Baay, Paul Meijnders, Jan B Vermorken.
Abstract
BACKGROUND: Based on their different mechanisms of action, non-overlapping side effects and radiosensitising potential, combining the antimetabolites pemetrexed (multitargeted antifolate, MTA) and gemcitabine (2',2'-difluorodeoxycytidine, dFdC) with irradiation (RT) seems promising. This in vitro study, for the first time, presents the triple combination of MTA, dFdC and irradiation using various treatment schedules.Entities:
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Year: 2010 PMID: 20723210 PMCID: PMC2931492 DOI: 10.1186/1471-2407-10-441
Source DB: PubMed Journal: BMC Cancer ISSN: 1471-2407 Impact factor: 4.430
DEF, CI, ID50, SF2 and % survival (representing the cytotoxic effect of treatment with MTA alone, 0 Gy) for irradiation (RT) given alone or in combination with MTA using different treatment schedules: 24 h MTA immediately followed by RT; RT immediately followed by 24 h MTA; 24 h MTA followed by different time intervals (24, 8, 4, 1, 0 h) and subsequent irradiation.
| Condition | DEF | CI | % survival | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| mean | SD | mean | SD | mean | SD | mean | SD | mean | SD | ||||||
| RT | 1.94 | 0.47 | 48.37 | 9.31 | 100% | 0% | |||||||||
| 24 h 50 nM MTA → RT | 1.04 | 0.23 | 1.145 | 0.132 | 1.97 | 0.45 | 49.25 | 9.71 | 97% | 11% | |||||
| 24 h 75 nM MTA → RT | 1.01 | 0.10 | 1.260 | 0.270 | 1.94 | 0.54 | 47.75 | 7.53 | 70% | 12% | |||||
| 24 h 100 nM MTA → RT | 1.04 | 0.03 | 1.229 | 0.269 | 1.86 | 0.27 | 47.34 | 4.31 | 57% | 4% | |||||
| RT → 24 h 50 nM MTA | 0.87 | 0.06 | 1.039 | 0.098 | 1.86 | 0.46 | 46.21 | 9.19 | 88% | 4% | |||||
| RT → 24 h 75 nM MTA | 0.94 | 0.14 | 1.023 | 0.063 | 1.77 | 0.63 | 44.56 | 12.48 | 71% | 8% | |||||
| RT → 24 h 100 nM MTA | 1.00 | 0.24 | 1.005 | 0.080 | 1.65 | 0.41 | 42.40 | 10.00 | 59% | 12% | |||||
| 24 h 50 nM MTA → 24 h → RT | 1.59 | 0.53 | † | 0.915 | 0.063 | 1.71 | 0.66 | 43.37 | 12.35 | 70% | 21% | ||||
| 24 h 50 nM MTA → 8 h → RT | 1.23 | 0.31 | 0.844 | 0.091 | * | 1.55 | 0.58 | 39.45 | 12.88 | 88% | 4% | ||||
| 24 h 50 nM MTA → 4 h → RT | 1.12 | 0.24 | 0.965 | 0.106 | 1.68 | 0.58 | 42.34 | 12.02 | 90% | 6% | |||||
| 24 h 50 nM MTA → 1 h → RT | 1.46 | 0.21 | † | 0.932 | 0.073 | 1.21 | 0.35 | † | 32.45 | 8.43 | † | 98% | 4% | ||
| RT | 2.41 | 0.39 | 56.26 | 6.18 | 100% | 0% | |||||||||
| 24 h 100 nM MTA → RT | 1.29 | 0.25 | 0.698 | 0.079 | ** | 1.77 | 0.36 | 45.39 | 7.15 | 87% | 11% | ||||
| 24 h 200 nM MTA → RT | 1.19 | 0.06 | 0.855 | 0.197 | * | 2.18 | 0.34 | 52.16 | 4.46 | 65% | 12% | ||||
| 24 h 300 nM MTA → RT | 0.97 | 0.23 | 0.887 | 0.294 | * | 2.84 | 1.03 | 57.46 | 8.70 | 52% | 14% | ||||
| 24 h 500 nM MTA → RT | 0.75 | 0.28 | 0.793 | 0.288 | * | 3.83 | 1.56 | 62.76 | 10.23 | 38% | 13% | ||||
| RT → 24 h 200 nM MTA | 0.86 | 0.19 | 0.996 | 0.124 | 2.77 | 0.20 | 60.24 | 3.01 | 68% | 19% | |||||
| RT → 24 h 300 nM MTA | 0.80 | 0.10 | 0.862 | 0.173 | * | 2.98 | 0.30 | 61.48 | 2.65 | 52% | 16% | ||||
| RT → 24 h 500 nM MTA | 0.76 | 0.11 | 0.723 | 0.166 | * | 3.11 | 0.19 | 62.75 | 1.09 | 38% | 15% | ||||
| 24 h 100 nM MTA → 24 h → RT | 0.98 | 0.15 | 0.832 | 0.067 | * | 2.16 | 0.11 | 52.70 | 2.00 | 84% | 16% | ||||
| 24 h 100 nM MTA → 8 h → RT | 1.21 | 0.18 | 0.731 | 0.129 | * | 2.02 | 0.24 | 50.62 | 4.87 | 85% | 9% | ||||
| 24 h 100 nM MTA → 4 h → RT | 1.56 | 0.41 | 0.718 | 0.103 | * | 1.63 | 0.35 | 42.19 | 6.30 | 94% | 10% | ||||
| 24 h 100 nM MTA → 1 h → RT | 1.52 | 0.39 | 0.677 | 0.076 | ** | 1.85 | 0.51 | 46.28 | 9.78 | 85% | 11% | ||||
†: p < 0.05 vs. 24 h incubation with the same concentration of MTA immediately followed by RT; *: moderate synergism (0.7
Figure 1MTA combined with irradiation. (A) Combination index (CI) plots of radiation (RT) immediately followed by 24 h incubation with various concentrations of MTA in A549 cells. The plots represent the mean of at least three independent experiments. (B-C) Radiation dose-response curves of CAL-27 (B) and A549 (C) cells treated with 24 h MTA followed by different time intervals (24, 8, 4, 1, 0 h) and subsequent irradiation. Survival values from combination experiments were normalised to MTA cytotoxicity (see table 1 for the cytotoxic effect of MTA alone). Data points represent mean values from at least three independent experiments; bars, SD.
Influence of 24 h MTA on the percentage cells in G1, S and G2/M phase.
| Condition | S phase | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| Mean | SD | mean | SD | mean | SD | |||||
| 24 h 0 nM MTA | 49.3 | 2.2 | 34.3 | 2.5 | 10.8 | 2.4 | ||||
| 24 h 50 nM MTA → 0 h | 30.4 | 13.7 | 56.2 | 14.1 | 8.9 | 3.8 | ||||
| 24 h 50 nM MTA → 1 h | 30.9 | 12.9 | 54.5 | 12.3 | * | 9.5 | 4.0 | |||
| 24 h 50 nM MTA → 4 h | 30.1 | 9.8 | * | 53.5 | 7.5 | * | 10.8 | 1.6 | ||
| 24 h 50 nM MTA → 8 h | 29.0 | 0.1 | * | 49.1 | 2.4 | * | 15.2 | 2.0 | ||
| 24 h 50 nM MTA → 24 h | 41.5 | 7.9 | 38.9 | 6.8 | 9.2 | 8.1 | ||||
| 24 h 0 nM MTA | 49.5 | 3.1 | 37.1 | 1.3 | 11.3 | 0.8 | ||||
| 24 h 100 nM MTA → 0 h | 23.3 | 6.1 | * | 66.5 | 6.2 | * | 7.2 | 1.5 | * | |
| 24 h 100 nM MTA → 1 h | 25.4 | 4.2 | * | 65.8 | 4.6 | * | 5.4 | 1.1 | * | |
| 24 h 100 nM MTA → 4 h | 23.1 | 5.5 | * | 68.0 | 6.3 | * | 7.9 | 2.9 | ||
| 24 h 100 nM MTA → 8 h | 16.4 | 0.4 | * | 71.3 | 1.5 | * | 8.5 | 2.1 | ||
| 24 h 100 nM MTA → 24 h | 57.1 | 18.8 | 38.2 | 0.8 | 12.4 | 0.9 | ||||
Cell cycle analysis was performed 0, 1, 4, 8 or 24 h after drug wash out. *: p < 0.05 vs. untreated control
Figure 2Influence of MTA on cell cycle distribution. DNA histograms of A549 cells at different time points after 24 h incubation with 100 nM MTA.
IC50 and combination index (CI) values for MTA - dFdC combinations in CAL-27 and A549 cells.
| Condition | CAL-27 | A549 | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| SD | CI | SD | SD | CI | SD | |||||||||
| 24 h MTA → 24 h wash out | 118.53 | 16.37 | 569.47 | 120.60 | ||||||||||
| 24 h wash out → 24 h MTA | 198.25 | 14.51 | 1576.86 | 349.19 | ||||||||||
| 24 h MTA + 24 h 2 nM dFdC → 24 h wash out | 147.44 | 18.68 | 1.038 | 0.378 | 1689.43 | 1289.82 | 1.003 | 0.352 | ||||||
| 24 h MTA + 24 h 4 nM dFdC → 24 h wash out | 240.31 | 49.10 | † | 0.957 | 0.510 | 9120.46 | 1499.06 | † | 0.569 | 0.271 | ** | |||
| 24 h MTA → 24 h 2 nM dFdC | 146.31 | 12.08 | † | 0.943 | 0.403 | 452.53 | 177.35 | 0.632 | 0.213 | ** | ||||
| 24 h MTA → 24 h 4 nM dFdC | 130.60 | 29.92 | 0.858 | 0.461 | * | 1069.95 | 1035.22 | 0.373 | 0.190 | ** | ||||
| 24 h 2 nM dFdC → 24 h MTA | 132.00 | 14.59 | † | 0.779 | 0.341 | * | 1322.54 | 833.14 | 0.546 | 0.237 | ** | |||
| 24 h 4 nM dFdC → 24 h MTA | 172.68 | 42.09 | 0.739 | 0.373 | * | 6076.56 | 3648.50 | 0.384 | 0.154 | ** | ||||
| 24 h dFdC → 24 h wash out | 4.35 | 0.39 | 3.64 | 0.27 | ||||||||||
| 24 h wash out → 24 h dFdC | 5.87 | 0.17 | 5.30 | 0.20 | ||||||||||
| 24 h dFdC + 24 h 50 nM MTA → 24 h wash out | 4.25 | 0.37 | 1.141 | 0.858 | ||||||||||
| 24 h dFdC + 24 h 100 nM MTA → 24 h wash out | 5.82 | 0.68 | † | 1.201 | 0.843 | |||||||||
| 24 h dFdC + 24 h 200 nM MTA → 24 h wash out | 7.48 | 1.04 | † | 1.112 | 0.972 | |||||||||
| 24 h dFdC + 24 h 500 nM MTA → 24 h wash out | 19.40 | 11.06 | 1.167 | 0.967 | ||||||||||
| 24 h dFdC → 24 h 50 nM MTA | 3.83 | 0.07 | 1.073 | 0.872 | ||||||||||
| 24 h dFdC → 24 h 100 nM MTA | 3.61 | 0.20 | 1.179 | 1.071 | ||||||||||
| 24 h dFdC → 24 h 200 nM MTA | 4.90 | 1.79 | 0.873 | 0.924 | * | |||||||||
| 24 h dFdC → 24 h 500 nM MTA | 7.08 | 1.87 | 0.921 | 0.942 | ||||||||||
| 24 h 50 nM MTA → 24 h dFdC | 4.88 | 0.29 | † | 0.961 | 0.591 | |||||||||
| 24 h 100 nM MTA → 24 h dFdC | 5.89 | 0.83 | 1.158 | 0.870 | ||||||||||
| 24 h 200 nM MTA → 24 h dFdC | 6.96 | 2.52 | 0.830 | 0.848 | * | |||||||||
| 24 h 500 nM MTA → 24 h dFdC | 14.81 | 10.54 | 0.838 | 0.806 | * | |||||||||
| 1 h dFdC → 24 h wash out | 478.76 | 149.90 | 533.46 | 197.64 | ||||||||||
| 24 h wash out → 1 h dFdC | 495.55 | 130.97 | 569.36 | 96.66 | ||||||||||
| 1 h dFdC → 24 h 50 nM MTA | 571.61 | 262.49 | 1.154 | 0.349 | ||||||||||
| 1 h dFdC → 24 h 100 nM MTA | 386.35 | 92.33 | 0.980 | 0.185 | ||||||||||
| 1 h dFdC → 24 h 200 nM MTA | 421.84 | 237.54 | 0.693 | 0.287 | ** | |||||||||
| 1 h dFdC → 24 h 500 nM MTA | 407.32 | 187.49 | 0.570 | 0.265 | ** | |||||||||
| 24 h 50 nM MTA → 1 h dFdC | 271.36 | 38.36 | 0.880 | 0.466 | * | |||||||||
| 24 h 100 nM MTA → 1 h dFdC | 166.12 | 16.64 | † | 0.803 | 0.413 | * | ||||||||
| 24 h 200 nM MTA → 1 h dFdC | 215.44 | 21.72 | † | 0.880 | 0.682 | * | ||||||||
| 24 h 500 nM MTA → 1 h dFdC | 217.14 | 24.80 | † | 0.681 | 0.494 | ** | ||||||||
†: p < 0.05 vs. IC50 of the corresponding drug alone; *: moderate synergism (0.7
Figure 3Combination index (CI) plots of MTA - dFdC combinations in CAL-27 . Cells were treated with a concentration range of MTA for 24 h (0-100 nM for CAL-27 cells; 0-2000 nM for A549 cells) combined with a constant concentration of dFdC for 24 h (2 or 4 nM) (A, D). Alternatively, cells were incubated with a concentration range of dFdC (0-100 nM for 24 h (B, E) or 0-5 μM for 1 h (C, F)) combined with a constant concentration of MTA (50 or 100 nM for CAL-27; 200 or 500 nM for A549). The plots represent the mean of at least three independent experiments.
Figure 4Inhibitory effect of 24 h MTA - 1 h dFdC combinations on cell survival of CAL-27 . Survival curves were corrected for the cytotoxic effect of 24 h MTA alone. In CAL-27, 24 h incubation with 50 or 100 nM MTA resulted in resp. 90 ± 7% and 73 ± 8% survival. In A549, 24 h incubation with 200 or 500 nM MTA resulted in resp. 73 ± 10% and 50 ± 7% survival. Data points represent mean values from at least three independent experiments; bars, SD.
DEF, CI, ID50, SF2 and % survival (representing the cytotoxic effect of treatment with MTA and/or dFdC alone, 0 Gy) for MTA - dFdC - irradiation (RT) combinations in CAL-27 and A549 cells.
| Condition | DEF | CI | % survival | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| mean | SD | mean | SD | mean | SD | mean | SD | mean | SD | |||||||
| RT | 1.94 | 0.47 | 48.37 | 9.31 | 100% | 0% | ||||||||||
| 24 h 50 nM MTA → RT | 1.04 | 0.23 | 1.095 | 0.127 | 1.97 | 0.45 | 49.25 | 9.71 | 97% | 11% | ||||||
| 24 h 50 nM MTA → 24 h → RT | 1.59 | 0.53 | 0.916 | 0.063 | 1.71 | 0.66 | 43.37 | 12.35 | 70% | 21% | ||||||
| 24 h 50 nM MTA → 1 h → RT | 1.46 | 0.21 | 0.933 | 0.073 | 1.21 | 0.35 | 32.45 | 8.43 | 98% | 4% | ||||||
| 24 h 2 nM dFdC → RT | 1.47 | 0.09 | 0.888 | 0.180 | * | 1.72 | 0.10 | 49.25 | 9.71 | 96% | 1% | |||||
| 24 h 2 nM dFdC → 24 h → RT | 1.04 | 0.16 | 1.090 | 0.101 | 2.43 | 0.08 | 58.31 | 2.96 | 84% | 18% | ||||||
| 1 h 100 nM dFdC → 24 h → RT | 1.56 | 0.46 | 0.653 | 0.108 | ** | 1.32 | 0.25 | 34.09 | 5.34 | 91% | 24% | |||||
| 1 h 50 nM dFdC → RT | 1.07 | 0.19 | 0.917 | 0.124 | 1.69 | 0.64 | 44.73 | 14.77 | 98% | 14% | ||||||
| 24 h 2 nM dFdC + 24 h 50 nM MTA → RT | 1.53 | 0.27 | † | 0.960 | 0.267 | 1.66 | 0.09 | 42.27 | 1.03 | 98% | 11% | |||||
| 24 h 2 nM dFdC → 24 h 50 nM MTA → RT | 1.38 | 0.09 | 0.949 | 0.106 | 1.85 | 0.34 | 46.93 | 6.81 | 75% | 4% | † | |||||
| 24 h 50 nM MTA → 24 h 2 nM dFdC → RT | 1.78 | 0.14 | 0.705 | 0.097 | * | 1.42 | 0.06 | 36.83 | 3.36 | 64% | 22% | |||||
| 1 h 100 nM dFdC → 24 h 50 nM MTA → RT | 1.56 | 0.37 | † | 0.801 | 0.094 | * | 1.29 | 0.20 | † | 34.65 | 4.07 | † | 71% | 15% | † | |
| 24 h 50 nM MTA → 1 h 50 nM dFdC → RT | 1.43 | 0.57 | 0.858 | 0.175 | * | 1.30 | 0.45 | 34.93 | 10.25 | 65% | 11% | †;†† | ||||
| RT | 2.41 | 0.39 | 56.26 | 6.18 | 100% | 0% | ||||||||||
| 24 h 100 nM MTA → RT | 1.29 | 0.25 | 0.674 | 0.053 | ** | 1.77 | 0.36 | 45.39 | 7.15 | 87% | 11% | |||||
| 24 h 100 nM MTA → 24 h → RT | 0.98 | 0.15 | 0.838 | 0.070 | * | 2.16 | 0.11 | 52.70 | 2.00 | 84% | 16% | |||||
| 24 h 100 nM MTA → 1 h → RT | 1.52 | 0.39 | 0.681 | 0.084 | ** | 1.85 | 0.51 | 46.28 | 9.78 | 85% | 11% | |||||
| 24 h 2 nM dFdC → RT | 1.55 | 0.24 | 0.538 | 0.057 | ** | 1.25 | 0.08 | 34.55 | 2.01 | 71% | 16% | |||||
| 24 h 2 nM dFdC → 24 h → RT | 0.99 | 0.31 | 0.703 | 0.118 | * | 2.04 | 0.40 | 50.19 | 6.96 | 65% | 4% | |||||
| 1 h 100 nM dFdC → 24 h → RT | 1.23 | 0.23 | 0.606 | 0.073 | ** | 1.97 | 0.24 | 49.28 | 4.36 | 67% | 13% | |||||
| 1 h 50 nM dFdC → RT | 1.49 | 0.39 | 0.831 | 0.068 | * | 1.92 | 0.49 | 47.99 | 8.72 | 96% | 5% | |||||
| 24 h 2 nM dFdC + 24 h 100 nM MTA → RT | 1.49 | 0.28 | 0.564 | 0.075 | ** | 1.32 | 0.30 | 36.11 | 6.47 | 66% | 23% | |||||
| 24 h 2 nM dFdC → 24 h 100 nM MTA → RT | 0.94 | 0.27 | 0.585 | 0.101 | ** | 2.21 | 0.80 | 52.39 | 11.98 | 47% | 14% | |||||
| 24 h 100 nM MTA → 24 h 2 nM dFdC → RT | 1.17 | 0.24 | 0.500 | 0.073 | ** | 1.69 | 0.36 | 44.34 | 7.16 | 48% | 16% | † | ||||
| 1 h 100 nM dFdC → 24 h 100 nM MTA → RT | 1.29 | 0.27 | 0.513 | 0.053 | ** | 1.88 | 0.25 | 47.68 | 4.45 | 48% | 12% | † | ||||
| 24 h 100 nM MTA → 1 h 50 nM dFdC → RT | 1.52 | 0.58 | 0.534 | 0.083 | ** | 1.92 | 0.50 | 47.93 | 9.71 | 49% | 8% | †;†† | ||||
†: p < 0.05 vs. corresponding schedule of MTA and RT; ††: p < 0.05 vs. corresponding schedule of dFdC and RT; *: moderate synergism (0.7