| Literature DB >> 29115583 |
Artur Anisiewicz1, Agata Pawlik1, Beata Filip-Psurska1, Eliza Turlej1, Stanisław Dzimira2, Magdalena Milczarek1, Katarzyna Gdesz1, Diana Papiernik1, Joanna Jarosz1, Dagmara Kłopotowska1, Andrzej Kutner3, Andrzej Mazur4, Joanna Wietrzyk1.
Abstract
Low vitamin D status is considered as a risk factor for breast cancer and has prognostic significance. Furthermore, vitamin D deficiency increases after adjuvant cancer therapy, which alters bone metabolism increasing the risk of osteoporosis. It is now postulated that vitamin D supplementation in breast cancer treatment delays the recurrence of cancer thereby extending survival. We evaluated the impact of calcitriol and its low-calcemic analogs, PRI‑2191 and PRI‑2205, on the tumor growth, angiogenesis, and metastasis of 4T1 mouse mammary gland cancer. Gene expression analysis related to cancer invasion/metastasis, real‑time PCR, ELISA, western blotting, and histochemical studies were performed. In vitro studies were conducted to compare the effects of calcitriol and its analogs on 4T1 and 67NR cell proliferation and expression of selected proteins. Calcitriol and its analogs increased lung metastasis without influencing the growth of primary tumor. The levels of plasma 17β-estradiol and transforming growth factor β (TGFβ) were found to be elevated after treatment. Moreover, the results showed that tumor blood perfusion improved and osteopontin (OPN) levels increased, whereas vascular endothelial growth factor (VEGF) and TGFβ levels decreased in tumors from treated mice. All the studied treatments resulted in increased collagen content in the tumor tissue in the early step of tumor progression, and calcitriol caused an increase in collagen content in lung tissue. In addition, in vitro proliferation of 4T1 tumor cells was not found to be affected by calcitriol or its analogs in contrast to non-metastatic 67NR cells. Calcitriol and its analogs enhanced the metastatic potential of 4T1 mouse mammary gland cancer by inducing the secretion of OPN probably via host cells. In addition, OPN tumor overexpression prevailed over the decreasing tumor TGFβ level and blood vessel normalization via tumor VEGF deprivation induced by calcitriol and its analogs. Moreover, the increased plasma TGFβ and 17β-estradiol levels contributed to the facilitation of metastatic process.Entities:
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Year: 2017 PMID: 29115583 PMCID: PMC5743363 DOI: 10.3892/ijo.2017.4185
Source DB: PubMed Journal: Int J Oncol ISSN: 1019-6439 Impact factor: 5.650
Figure 1The scheme of in vivo experiments. The effect of calcitriol and its analogs on the growth and metastasis of 4T1 mouse mammary gland cancer was investigated at various stages of tumor progression (days 14, 21, 28 and 33). Additional controls were also used: healthy mice (assigned as day 0) and mice with implanted tumors euthanized on the day when the vitamin D derivatives began to be administered (day 7). The control group from day 7 was included to monitor the condition of the body at the start of the treatment. Some of the analysis was performed on two various days: 14 or 21 (as an early stage) and 28 or 33 (as an late stage of tumor progression).
Antibodies and detection systems used for aorta immunohistochemistry.
| Antibody (source) | Antigen | Antibody dilution/duration of incubation |
|---|---|---|
| Rabbit polyclonal (Abcam, Cambridge, UK) | CD31 (PECAM) | 1:50/1 h |
| CD105 (endoglin) | 1:1,000/1 h | |
| vWF | 1:100/1 h | |
| αSMA | 1:100/1 h |
Scoring of staining for collagen in lung tissue.
| Day after tumor transplantation | Score for collagen staining
| |||
|---|---|---|---|---|
| Control | Calcitriol | PRI-2191 | PRI-2205 | |
| Day 0 | +++ | |||
| Day 7 | +++ | |||
| Day 14 | ++ | +++ | ++ | +/++ |
| Day 21 | ++ | +/++ | ++ | ++ |
| Day 28 | ++ | +++/++++ | +/++ | ++ |
Semiquantitative evaluation of collagen fibers were based on its presence of a small level (+), the medium (++), significant (+++) and very abundant (++++).
List of genes evaluated using mouse tumor invasion/metastasis PCR array library (MTIM-1).
| Symbol | Name |
|---|---|
| ADAM metallopeptidase | |
| Aldehyde dehydrogenase 3 family, member A1 | |
| Angpt1 | Angiopoietin 1 |
| Angiopoietin-like 4 | |
| Caspase 8, apoptosis-related cysteine peptidase | |
| Cyclin E2 | |
| Chemokine (C-C motif) receptor 7 | |
| CD44 molecule (Indian blood group) | |
| CD82 antigen | |
| Cadherin 1, type 1, E-cadherin (epithelial) | |
| Cadherin 11, type 2, OB-cadherin (osteoblast) | |
| Cadherin 2, type 1, N-cadherin | |
| Cadherin 6 | |
| Claudin 7 | |
| Collagen, type I, α1 | |
| Collagen, type IV, α2 | |
| Collagen, type VI, α1 | |
| Colony stimulating factor 1 | |
| Colony stimulating factor 2 | |
| Colony stimulating factor 3 | |
| Cystatin F (leukocystatin) | |
| Connective tissue growth factor | |
| Cathepsin B | |
| Cathepsin D | |
| Cathepsin K | |
| Cathepsin L-like 3 | |
| Chemokine (C-X-C motif) ligand 1 | |
| Chemokine (C-X-C motif) ligand 13 | |
| Chemokine (C-X-C motif) receptor 4 | |
| Chemokine (C-X-C motif) receptor 6 | |
| Developmentally regulated GTP binding protein 1 | |
| Epiregulin | |
| Fibroblast growth factor 8 (androgen-induced) | |
| Fms-related tyrosine kinase | |
| Fms-related tyrosine kinase 4 | |
| Glucose phosphate isomerase | |
| Gelsolin (amyloidosis, Finnish type) | |
| Hepatocyte growth factor (hepapoietin A; scatter factor) | |
| Hypoxia inducible factor 1, α subunit | |
| High-mobility group box 1 | |
| Inhibitor of DNA binding 1 | |
| Interleukin 13 receptor, α2 | |
| Interferon stimulated exonuclease gene 20 kDa | |
| Jagged 1 (Alagille syndrome) | |
| KiSS-1 metastasis-suppressor | |
| Killer cell lectin-like receptor subfamily C, member 2 | |
| Kynureninase (L-kynurenine hydrolase) | |
| Latent transforming growth factor β binding protein 1 | |
| Mitogen-activated protein kinase kinase 4 | |
| Mitogen-activated protein kinase kinase 5 | |
| Mitogen-activated protein kinase kinase 7 | |
| Melanoma cell adhesion molecule | |
| Met proto-oncogene (hepatocyte growth factor receptor) | |
| Methionyl aminopeptidase 2 | |
| Matrix metallopeptidase 1 (interstitial collagenase) | |
| Matrix metallopeptidase 10 (stromelysin 2) | |
| Matrix metallopeptidase 11 (stromelysin 3) | |
| Matrix metallopeptidase 13 (collagenase 3) | |
| Matrix metallopeptidase 14 (membrane-inserted) | |
| Matrix metallopeptidase 2 | |
| Matrix metallopeptidase 7 (matrilysin, uterine) | |
| V-myc myelocytomatosis viral oncogene homolog | |
| Neural precursor cell expressed, dev. downregulated 9 | |
| Neurofibromin 2 (merlin) | |
| Non-metastatic cells 1, protein (NM23A) | |
| Nme2 | Non-metastatic cells 2, protein |
| Non-metastatic cells 4, protein | |
| Paired box 5 | |
| Platelet-derived growth factor α polypeptide | |
| Plasminogen activator, urokinase receptor | |
| Prostaglandin-endoperoxide synthase 2 | |
| Runt-related transcription factor 1 | |
| Serpin peptidase inhibitor, clade E | |
| Serpin peptidase inhibitor, clade B5 | |
| SRY (sex determining region Y)-box 4 | |
| Secreted protein, acidic, cysteine-rich (osteonectin) | |
| Secreted phosphoprotein 1 | |
| V-src sarcoma viral oncogene homolog (avian) | |
| Trefoil factor 1 | |
| Transforming growth factor, β1 | |
| TIMP metallopeptidase inhibitor 1 | |
| TIMP metallopeptidase inhibitor 2 | |
| TIMP metallopeptidase inhibitor 3 | |
| TIMP metallopeptidase inhibitor 4 | |
| Tenascin C (hexabrachion) | |
| Tumor protein p53 | |
| Vascular endothelial growth factor A | |
| Vascular endothelial growth factor B | |
| Actin, β | |
| β-2-microglobulin | |
| Glyceraldehyde-3-phosphate dehydrogenase | |
| Glucuronidase, β | |
| Hypoxanthine phosphoribosyltransferase 1 | |
| Phosphoglycerate kinase 1 | |
| Peptidylprolyl isomerase A | |
| Ribosomal protein L13a |
Figure 2Tumor volume and number of lung metastases in mice bearing 4T1 tumors treated with calcitriol, PRI-2191, and PRI-2205. (A) Tumor volume measured on day 21, 28 and 33 of experiment. (B) Number of lung metastases counted in lungs from two independent experiments. (C) Score for metastases in H&E stained lungs, days 14, 28 and 33: 0, no metastasis detected; +, 1–3 metastatic foci; ++, 4–7 foci; +++, 8–10 foci; ++++, >10 metastatic foci in lungs. (D) An example of H&E stained lungs on various stages of tumor progression from mice treated with calcitriol. Black arrows indicated tumor nodules. Magnification, ×20, scale bar, 100 µm. Mice were inoculated orthotopically with 4T1 cells on day 0. From day 7 (7 days after tumor inoculation), vitamin D analogs were administered subcutaneously (s.c.) thrice a week. The single dose of compounds were as follows: calcitriol, 0.5 µg/kg; PRI-2191, 1.0 µg/kg; and PRI-2205, 10.0 µg/kg. Number of mice were 9–13 per group. Data were collected from two independent experiments. Data for individual animals are presented with median lines. Statistical analysis: Kruskal-Wallis multiple comparison test. *P<0.05.
Figure 3Body weight changes and blood calcium, 17β-estradiol, and 25(OH)D level in 4T1 tumor-bearing mice. (A) Body weight changes (BWCs) and (B) 17β-estradiol, (C) blood calcium, and (D) 25(OH)D level in mouse plasma. Mice were inoculated orthotopically with 4T1 cells on day 0. From day 7 (7 days after tumor inoculation), vitamin D analogs were administered subcutaneously (s.c.) thrice a week. The single dose of compounds was as follows: calcitriol, 0.5 µg/kg; PRI-2191, 1.0 µg/kg; and PRI-2205, 10.0 µg/kg. Number of mice were 5–7 per group. D0, control, healthy mice; D7, 4T1 tumor-bearing non-treated mice 7 days after tumor transplantation. Mean values with standard deviation (SD) are presented. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Statistical analysis: (B) Mann-Whitney U test. (C and D) Dunnett's multiple comparisons test; significant differences are marked on the figure: *P<0.05 as compared to control animals on the relevant day of treatment, or as indicated by fastener. The decrease in BWC observed in (A) from day 24 until the last day of measurements is caused by the calcitriol toxicity (blue line). The mean body weight decreased in ~10.5% when compared to control mice (A). We considered the treatment to be toxic if the BWC decreased by ~20% in two successive measurements.
Figure 4Influence of calcitriol, PRI-2191, and PRI-2205 on angiogenesis of 4T1 tumor. Tumor blood perfusion estimated by ultrasound imaging as (A) time to peak and (B) peak-enhancement values measured on day 24 after 4T1 mammary gland cancer inoculation. (C) Representative images of tumor perfusion taken for (I) control group, (II) mice treated with calcitriol, (III) PRI-2191, and (IV) mice treated with PRI-2205. (D) VEGF level in tumor tissue. (E) Thrombospondin 1 (TSP-1) tumor tissue level. (F) VEGF plasma level measured on day 14. Mice were inoculated orthotopically with 4T1 cells on day 0. From day 7 (7 days after tumor inoculation), vitamin D analogs were administered subcutaneously (s.c.) thrice a week. The single dose of compounds were as follows: calcitriol, 0.5 µg/kg; PRI-2191, 1.0 µg/kg; and PRI-2205, 10.0 µg/kg. Number of mice evaluated were 4–7 per group. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Data presentation: (A and B) Data for individual animals with median line. (C) Representative ultrasound images: left panel, before; right panel, after contrast inoculation. (D and E) Mean ± standard deviation. Statistical analysis: (A and B) Dunnett's multiple comparisons test. (D) Tukey's multiple comparison test. (E) Sidak's multiple comparison test. *P<0.05 as compared to control animals on the relevant day of treatment.
The expression of genes associated with tumor invasion or metastasis evaluated in 4T1 tumor tissue after treatment with calcitriol or its analogs.
| Gene | Control
| Calcitriol
| PRI-2191
| PRI-2205
| ||||
|---|---|---|---|---|---|---|---|---|
| D14 | D28 | D14 | D28 | D14 | D28 | D14 | D28 | |
| 8.300 | 2.754 | 1.653 | 3.996 | 2.534 | 4.028 | 4.959 | 2.247 | |
| 3.526 | 4.325 | 1.528 | 3.342 | 2.861 | 2.468 | 2.500 | 2.897 | |
| 5.738 | 3.931 | 1.368 | 6.865 | 5.412 | 8.016 | 3.174 | 4.734 | |
| 11.476 | 10.293 | 1.929 | 10.865 | 6.052 | 7.078 | 2.786 | 19.504 | |
| 5.481 | 4.407 | 1.680 | 6.547 | 2.697 | 1.434 | 3.685 | 4.377 | |
| 1.201 | 1.030 | 1.249 | 2.244 | 1.588 | 1.928 | 0.394 | 1.578 | |
| 6.035 | 2.921 | 2.069 | 0.362 | 0.899 | 0.486 | 0.750 | 2.647 | |
| 2.637 | 1.809 | 2.193 | 2.434 | 6.010 | 2.839 | 2.444 | 6.133 | |
| 13.012 | 7.619 | 1.252 | 2.712 | 1.534 | 1.842 | 1.714 | 6.557 | |
| 2.669 | 1.666 | 1.801 | 2.727 | 3.533 | 4.933 | 3.064 | 7.574 | |
| 18.556 | 12.008 | 0.763 | 12.120 | 1.835 | 1.888 | 2.538 | 5.185 | |
| 2.843 | 2.500 | 15.140 | 0.892 | 0.122 | 0.555 | 0.445 | 0.363 | |
| 15.520 | 18.011 | 5.140 | 0.107 | 1.989 | 2.080 | 0.928 | 1.434 | |
| 6.498 | 18.792 | 4.327 | 4.351 | 0.483 | 4.482 | 1.148 | 1.396 | |
| 3.566 | 3.480 | 4.935 | 3.949 | 6.191 | 7.234 | 3.045 | 11.300 | |
| 5.292 | 3.740 | 1.290 | 5.493 | 4.317 | 1.452 | 1.086 | 2.584 | |
| 5.872 | 8.900 | 1.615 | 2.505 | 2.509 | 1.831 | 0.917 | 6.456 | |
| 2.334 | 1.812 | 3.471 | 3.173 | 5.454 | 3.675 | 2.774 | 4.742 | |
| 1.297 | 1.001 | 1.154 | 1.683 | 1.628 | 2.128 | 1.282 | 2.010 | |
| 2.855 | 2.186 | 1.637 | 1.940 | 2.016 | 2.671 | 1.800 | 2.287 | |
| 10.271 | 13.785 | 11.894 | 14.061 | 3.263 | 10.219 | 2.158 | 14.053 | |
| 15.663 | 10.047 | 1.784 | 2.597 | 5.598 | 14.129 | 6.377 | 2.102 | |
| 11.770 | 10.176 | 1.522 | 20.272 | 2.063 | 4.953 | 2.779 | 3.258 | |
| 2.307 | 8.493 | 1.969 | 2.567 | 2.687 | 2.396 | 1.241 | 3.739 | |
| 2.103 | 4.064 | 3.050 | 2.800 | 5.150 | 2.149 | 0.694 | 2.286 | |
| 2.748 | 3.962 | 1.375 | 6.656 | 2.389 | 5.574 | 1.547 | 3.540 | |
| 15.092 | 6.512 | 10.286 | 4.299 | 3.337 | 4.448 | 4.385 | 6.341 | |
| 8.438 | 7.808 | 3.079 | 3.122 | 0.959 | 6.057 | 2.347 | 7.366 | |
| 10.257 | 25.839 | 3.043 | 3.718 | 0.801 | 17.339 | 4.869 | 2.932 | |
| 2.397 | 2.421 | 1.531 | 1.521 | 1.444 | 2.846 | 2.414 | 1.673 | |
| 1.385 | 3.778 | 2.141 | 1.982 | 1.685 | 3.101 | 3.024 | 1.919 | |
| 5.052 | 2.180 | 11.167 | 3.796 | 31.448 | 7.117 | 7.194 | 17.671 | |
| 3.300 | 4.548 | 2.309 | 2.692 | 1.340 | 10.143 | 5.289 | 4.507 | |
| 3.510 | 1.350 | 3.781 | 1.025 | 21.864 | 2.887 | 1.547 | 3.213 | |
| 1.667 | 2.270 | 2.002 | 1.580 | 2.965 | 8.540 | 3.473 | 1.574 | |
| 2.109 | 3.874 | 3.297 | 1.785 | 2.146 | 4.060 | 1.998 | 3.030 | |
| 5.118 | 2.797 | 3.370 | 2.149 | 2.776 | 7.053 | 5.086 | 2.962 | |
| 1.982 | 4.925 | 1.420 | 3.090 | 0.747 | 2.129 | 1.540 | 0.521 | |
| 1.164 | 0.524 | 2.918 | 0.733 | 1.662 | 0.931 | 1.091 | 0.830 | |
| 1.237 | 0.486 | 3.572 | 0.545 | 3.355 | 0.798 | 1.319 | 6.911 | |
| 1.198 | 2.990 | 2.287 | 2.118 | 1.227 | 0.982 | 1.367 | 1.744 | |
| 1.846 | 1.898 | 4.773 | 1.321 | 1.676 | 1.769 | 1.927 | 1.547 | |
| 3.058 | 5.330 | 4.415 | 1.100 | 0.940 | 1.817 | 1.187 | 2.014 | |
| 1.248 | 1.303 | 3.395 | 0.987 | 1.362 | 0.655 | 0.891 | 0.583 | |
| 0.068 | 0.019 | 0.054 | 0.037 | 0.095 | 0.602 | 0.043 | 0.064 | |
| 0.307 | 0.155 | 0.224 | 0.092 | 2.461 | 0.150 | 0.208 | 0.100 | |
Tumors were collected on days 14 and 28 (after inoculation with 4T1 cells) from mice treated with calcitriol or its analogs and control group receiving 80% propylene glycol (vehicle for vitamin D analogs). Real-time PCR screening was performed using the mouse tumor invasion/metastasis PCR array library (MTIM-1). From 88 genes available in this array (Table III), the expression for 42 genes was not detected in 4T1 tumor tissue. Data presented as mean relative quantification (RQ) values (calculated from duplicate). Fold-change (RQ) of target cDNA was determined by calculating the differences in ΔΔCT values with reference to phosphoglycerate kinase 1 (Pgk1) by DataAssist v 3.01 software. All PCR amplification cycles were performed at 95°C for 10 sec and 58°C for 45 sec (50 cycles). We used 25 ng of cDNA for a single reaction, and each test was performed in duplicate.
Figure 5Changes in mRNA expression in tumors from mice treated with calcitriol or its analogs. (A) Screening of genes using real-time polymerase chain reaction correlated with tumor invasion and metastasis. (B) Real-time PCR analysis of nine selected genes. Number of mice evaluated were 3–7 per group. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Data presentation: (A) Heat maps presenting mean relative quantification (RQ) values from duplicates. (B) Mean ± standard deviation. Statistical analysis: Kruskal-Wallis multiple comparisons test, *P<0.05 as compared to control animals on the relevant day of treatment or as indicated.
Figure 6Selected proteins in 4T1 tumor tissue from mice treated with calcitriol or its analogs. Western blot analysis of (A) nuclear receptors; (B) epithelial-mesenchymal transition markers; (C) transcription factors. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Bands on the blot were determined as: 1, control animals; 2, calcitriol; 3, PRI-2191; 4, PRI-2205. Number of mice evaluated were 3–4 per group. Chemiluminescence was visualized using Image station 4000MM PRO (Carestream). Densitometry analysis of the western blots was performed using Carestream MI Software 5.0.6.20 (Carestream Health). Data presentation: mean ± standard deviation of protein tested to actin ratio and representative cropped blots. Statistical analysis: Holm-Sidak's multiple comparisons test; *P<0.05 as indicated.
Figure 7Osteopontin and transforming growth factor β (TGFβ) level in tumor tissue and in plasma of mice. ELISA proteins levels analyzed in (A) tumor tissue and (B) plasma. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Number of mice evaluated were 4–7 per group. Data are presented as mean ± standard deviation. Statistical analysis: (A) Tukey's multiple comparison test; (B) Dunnett's multiple comparison test. *P<0.05 as compared to control animals on the relevant day of treatment or as indicated.
Figure 8Collagen staining in tumor tissue from mice treated with calcitriol or its analogs. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Number of mice evaluated were 6 per group. (A) Data are presented as mean ± standard deviation. Statistical analysis: Kruskal-Wallis multiple comparison test. *P<0.05 as compared to control animals on the relevant day of treatment or as indicated. (B) Representative photographs. Magnification, ×40; scale bar, 20 µm. The sections were immersed respectively in azoploxine solution for cytoplasm dyeing, Tungstophosphoric acid orange G solution for erythrocytes staining, and Light green SF solution for collagen and connective tissue visualization. Semiquantitative evaluation of collagen was based on the presence of single collagen fibers around single cells (+), single collagen fibers around all cells (++), the medium (+++), significant (++++) and very abundant (+++++) collagen deposits in sight.
Figure 9Kinetics of aorta remodeling in control mice during tumor progression and score for endothelium damage during treatment with calcitriol or its analogs. (A) Kinetic of aorta remodeling in control mice. (B) Score for endothelium damage. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Number of mice evaluated were six per group. Data are presented as mean ± standard deviation. Statistical analysis: (A) Mann-Whitney U test. *P<0.05 as compared to D0, vP<0.05 as compared to D7. (B) Kruskal-Wallis multiple comparisons test. *P<0.05 as compared to control on day 14.
Figure 10Kinetics of aorta remodeling during tumor progression and treatment with calcitriol or its analogs. (A) Intima CD31 and CD105 expression. (B) Media thickness and the α-smooth muscle actin (αSMA) staining. (C) Adventitia thickness and von Willebrand factor (vWF), CD105 expression. (D) Representative photographs of aortic wall from selected groups of mice. Color bars, black, control animals; blue, calcitriol; red, PRI-2191; green, PRI-2205. Number of mice evaluated were 6 per group. Data are presented as mean ± standard deviation. Statistical analysis: Mann-Whitney U test. *P<0.05 as compared to control animals on the relevant day of treatment. Magnification, ×20; scale bar, 20 µm.
Figure 11The in vitro proliferation inhibition and the osteopontin secretion to the culture media of 67NR and 4T1 cells after treatment with calcitriol or its analogs. (A) The proliferation inhibition curves. (B) Osteopontin secretion to the culture media at various time points after incubation with calcitriol or its analogs. Color bars, black, control medium; gray, ethanol control; blue, calcitriol; red, PRI-2191; green, PRI-2205. Experiments were repeated thrice at least in triplicates. Data are presented as mean ± standard deviation. Statistical analysis: (A) Student's t-test, *P<0.05 as compared to 4T1; (B) Sidak's multiple comparisons test, *P<0.05 as compared to both controls or as indicated.
Antiproliferative activity of tested compounds and positive controls against mammary gland cancer sublines: metastatic 4T1 and non-metastatic 67NR cells.
| Compound | 4T1 cells | 67NR cells |
|---|---|---|
|
| ||
| IC50 (nM) | ||
| Calcitriol | – | 25.04±9.30 |
| PRI-2191 | – | 23.52±5.93 |
| PRI-2205 | – | 230.73±12.14 |
|
| ||
| IC50 ( | ||
|
| ||
| Cisplatin | 0.38±0.090 | 0.30±0.050 |
| Doxorubicin | 0.04±0.002 | 0.05±0.012 |
| Docetaxel | 0.01±0.000 | 1.20±0.990 |
| Camptothecin | 0.03±0.003 | 0.04±0.036 |
| 5-fluorouracil | 0.46±0.044 | 0.11±0.079 |
| Tamoxifen | 3.05±0.237 | 1.46±0.164 |
The inhibitory concentration 50% (IC50) value is defined as the concentration of a compound that corresponds to a 50% growth inhibition. Experiments were repeated three times in triplicates. Data presented as mean ± standard deviation.
P<0.05, Student's t-test.
Figure 12Western blot analysis of the expression of selected proteins in 4T1 and 67NR cells cultured in vitro. (A) Western blot analysis of selected protein expression. (B) Representative blots. Color bars, black, control medium; gray, ethanol control; blue, calcitriol; red, PRI-2191; green, PRI-2205. Experiments were repeated thrice. Results are expressed as mean ± standard deviation of protein tested to actin ratio and representative cropped blots. Statistical analysis: Dunnett's multiple comparisons test. *P<0.05 as compared to both controls or as indicated.
Figure 13Proposed mechanisms leading to lung metastasis enhancement by calcitriol and its analogs in 4T1 mammary gland cancer model.