Cell lines and culture
The human uterine endometrial RL95-2 cell line (CRL-1671) was purchased from ATCC, and cultured in RPMI-1640 (Hyclone Inc.) medium containing 10% fetal calf serum (FBS; Gibco), 100 units/mL penicillin and 100 µg/mL streptomycin (Genview Inc.). The human chorionic cell line JEG-3 (HTB-36, ATCC) was a gift from Fujian Maternity and Child Care Center, China. The breast cancer cell line MCF-7 (HTB-22, ATCC) was obtained from ATCC and used as a model of circulating tumor cells (CTCs). Both JEG-3 and MCF-7 cells were cultured in DMEM (Hyclone) medium with 10% FBS and antibiotics (100 units/mL penicillin and 100 µg/mL streptomycin). HUVECs were prepared as described by Lu et al (27). After removal of type I collagenase, cells were maintained in 1% gelatin-coated cell culture flasks in M199 (Gibco Inc.) medium containing 20% FBS, 8 units/mL heparin sodium, 10 ng/mL bFGF (Life Inc.), 100 units/mL penicillin and 100 mg/mL streptomycin. HUVECs were used at no more than six passages. All these cells were cultured in a humidified atmosphere of 5% CO2 and 95% air.
Reagents and antibodies
The primary anti-human or anti-mouse antibodies (CD29-PE, CD49a-PE, CD49b-PE, CD49c-PE, CD49d-FITC, CD49e-PE, CD49f-PE, CD51/61-PE, CD44-APC, CD45-FITC, CD47-PE, CD324-PE, CD325-PE, CD326-PE, CD54-PE, CD106-FITC, CD62E-APC, CD62L-APC, CD15s, isotype controls) and secondary antibodies were all obtained from Becton Dickinson (BD) Pharmingen™. Human interleukin-1 beta (IL-1β) was purchased from Cell Signaling Technology, Inc. 17β-estradiol (E2) and progesterone (P4) were purchased from Shanghai Yuanye biological technology Co. Mifepristone (RU-486) was purchased from Shanghai New Hualian pharmaceutical Co., with purity > 98%. Metapristone was synthesized by our laboratory with purity > 98%. Calcein-AM was obtained from Dojindo Molecular Technologies, Inc.
Growth inhibition assay
The growth inhibition of different cells was investigated by the MTT assay as we previously described. Cells were seeded on 96-well plates (1 ×104 cells per well). After 24 h incubation, the culture medium was removed and replaced with the medium containing different concentrations of mifepristone/metapristone (1, 10, 20, 50, and 100 µM). After an additional 24 h of incubation at 37oC, the cells were washed with PBS and incubated with 10 µL of 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyltetrazolium bromide (MTT; Genview) (5 mg/mL) and 90 µL of the medium without phenol red for another 4 h. Then 100 µL of dimethyl sulfoxide (DMSO) was added to each well to dissolve the formazan crystals. Cell viability was determined by detecting the absorbance at 570 nm in a microplate reader (Tecan Infinite 200 PRO, Switzerland). All experiments were completed in quadruplicate.
FACS analysis
Expression of cell-surface ICAM-1, VCAM-1, E-selectin, L-selectin, E-cadherin, N-cadherin, CD45, CD47, sLex, EpCAM, integrin α1, α2, α3, α4, α5, α6, αvβ3 and β1 was measured by flow cytometry. Briefly, cells were plated in 6-well plates, grew to 80% confluence, and then incubated with different concentrations of mifepristone or metapristone. After incubation for 24 h, cells were dissociated with EDTA-free trypsin (Genview) from 6-well plates and 5 × 105 cells were incubated with antibodies for 20 min at 4oC in dark. After 3 times of washing with PBS, expression of cell surface biomarkers was analyzed by a BD FACSDiva software. Isotype control IgG was set to replace the primary antibody as a control for background fluorescence intensity. Positive rate (% expression) was defined as the percentage of cells in the gate to exclude isotype control cells.
RNA extraction and quantitative real-time PCR
Total RNA was extracted from untreated control cells and mifepristone/metapristone treated cells by using Trizol reagent (Invitrogen) according to the manufacturer’s protocol. mRNA was reversely transcribed by the PrimeScript RT reagent kit (Takara). The levels of mRNA expression were detected by real-time PCR using SYBR Premix Ex Taq (Takara) with the Bio-Rad CFX manager software. The primers were designed by the Oligo Primer Analysis 4.0 software and the sequences were analyzed in BLAST. The sequences are 5′-AGATCTTCTTCTTCAAGGACCGGTT-3′ and 5′- GGCTGGTCAGTGGCTTGG GGTA-3′ for MMP-2, 5′-CTTTGACAGCGACAAGAAGTGG-3′ and 5′- GGCACTG AGGAATGATCTAAGC-3′ for MMP-9, 5′-AGACCTACACTGTTGGCTGTGAG-3′ and 5′- GACTGGAAGCCCTTTTCAGAG-3′ for TIMP-1, 5′-ATGCACATCACCCT CTGTGA-3′ and 5′-CTCTGTGACCCAGTCCATCC-3′ for TIMP-2, 5′-TGCACCAC CAACTGCTTAGC-3′ and 5′- GGAGGCAGGGATGATGTTCT-3′ for GAPDH, 5′-TGCAGTGTGAGGCTGTGTACA-3′ and 5′- GTGGCCACCTGACGCTCT-3′ for integrinα5, 5′-TTTCGATGCCATCATGCAA-3′, and 5′- ACCAGCAGCCGTGTAAC ATTC-3′ for integrinβ1. For sample analysis, the threshold was set based on the exponential phase of products, and the software program 2-ΔΔCT was used to analyze the data. The expression level of each gene was normalized by using GAPDH mRNA.
Adhesion assay
RL95-2 cells were seeded into 96-well plates (5 × 105 cells per well). After forming a monolayer, cells were cultured for 24 h in the presence and absence of mifepristone/ metapristone at different concentrations. Trophoblastic spheroids were prepared by shaking the JEG-3 cells on a gyratory shaker at 90 rpm for 24 h until the diameter of spheroids reached about 100 µm that is similar to the human blastocyst size. Calcein-AM (final concentration 1 µM) was added to the medium in the final half hour. These calcein-AM-labeled JEG-3 spheroids in quadruplicate were delivered to each well with a confluent monolayer of RL95-2 cells, and incubated at 37oC in a humidified atmosphere with 5% CO2 for 1.5 h. We randomly selected 10 visual fields for each well and took photos under a fluorescence microscope (Zeiss, Germany). The adhesion rate was calculated by the formula: number of adhered JEG-3 spheroids/number of total JEG-3 spheroids delivered(28–30).
HUVECs grown to confluence in 24-well plates were pretreated with IL-1β (1 ng/mL) for 4 h. The calcein-AM-labeled MCF-7 cells were co-cultured with HUVECs monolayers in each well, followed by treatment with mifepristone or metapristone for 1.5 h. The non-adherent MCF-7 cells were removed from the plate by washing with PBS, and the adhered cells were counted under a fluorescence microscope. The formula for calculating the adhesion rate was the same as above.
The experimental method for adhesion of JEG-3 or MCF-7 cells to matrigel was similar to that of the adhesion of MCF-7 cells to HUVECs except that the 24-well plates were coated with 2 µg matrigel and blocked with 2% BSA.
Western blotting analysis
Cells were grown to 90–95% confluence in 6-well plates, and washed with ice-cold PBS and lysed by 100 µL of RIPA buffer containing PMSF (1mM). Cell extracts were centrifuged at 4oC to obtain the supernatants for analysis. Protein concentrations of the samples were measured by the BCA protein assay kit. Equal amounts of protein (20 µg/well) were separated by SDS-PAGE and transferred to the polyvinylidene difluoride membrane. The membrane was blocked with 5% skim milk for 1h at room temperature, and then probed with primary antibodies overnight at 4oC. Monoclonal mouse anti-human antibodies against β-actin, MMP-2 and MMP-9 (all 1:1000 dilution) were used followed by an additional 1 h incubation with the appropriate HRP-labeled secondary antibody (1:5000). The target protein expression was detected by an enhanced chemiluminescence kit, and quantified with Bio-Rad Quantity One software analysis system. The total MMP-2 or MMP-9 expression was normalized to β-actin levels.
Scratch assay
JEG-3 and MCF-7 cells were seeded in 6-well plates and cultured until cell monolayers formed. After scratching with a pipette tip, the cells were incubated with different concentrations of E2 plus P4, mifepristone or metapristone for 24 h. Then cells were photographed by using a fluorescence microscope at 0 h and 24 h after the drug treatment. Quantification of cell migration was performed by measuring the wound closure area using Image J software. Each wound closure area at 24 h was compared with the wound closure area at 0 h, and the wound closure area of the control was set as 1. The experiment was conducted in triplicate.
Cell morphology assay
Cells were seeded on the 24-well plates. After 80% confluent monolayer was formed, mifepristone or metapristone was added to each well at concentrations of 0 and 100 µM for 24 h, cells were then photographed under a fluorescence microscope.
Mouse embryonic implantation
Normal Kunming mice purchased from the Shanghai Laboratory Animal Center (Shanghai, China) were housed at 22–25°C and 60% humidity condition with ad libitum access to water and food. Two females and one male were caged together, and the females were checked for the presence of a vaginal plug or spermatozoa in the next morning. If the vaginal plug or spermatozoa was found, the day would be defined as D1, and the females would be orally administered with mifepristone or metapristone once (5 mg/kg), or the vehicle on Day 4, and mice were euthanized on Day 8 of the pregnancy, and the number of embryos implanted on the mouse uterus endometrium was counted after laparotomy. All animal studies were performed in accordance with animal protocol procedures approved by the Institutional Animal Care and Use Committee of Fuzhou University.
Lung metastatic mouse model
The immunocompetent female C57BL/6 mice were cared as described above. They were orally dosed with 5 mg/kg/day of mifepristone and metapristone, respectively, for 3 days before tail-vein injection of homologous 4T1 mouse breast cancer cells (1×105/mouse). Oral mifepristone or metapristone was continually administered for additional 21 days. The mice were then sacrificed and their lungs were excised. The number of lung surface tumor colonies was counted under a dissecting microscope as we described previously(10, 18).
Immunohistochemistry
For immunohistochemical analysis, the paraffin embedded tissues were cut into 6 µm sections and stained with MMP-2 antibody as described elsewhere. MMP-2 expression in the lung and embryo tissue was determined using avidin-biotin complex (ABC) method. Stained cells were visualized under light microscope at × 200 magnification.
Statistical analysis
All experimental data were expressed as the mean ± SEM (n = 3–5). The analysis was carried out by using GraphPad Prism 5. Statistical analysis was performed by using the Student’s t-test and one-way ANOVA.