| Literature DB >> 19619280 |
Annemarie Samalecos1, Katja Reimann, Stefanie Wittmann, Heinrich M Schulte, Jan J Brosens, Ana-Maria Bamberger, Birgit Gellersen.
Abstract
BACKGROUND: Coordinated differentiation of the endometrial compartments in the second half of the menstrual cycle is a prerequisite for the establishment of pregnancy. Endometrial stromal cells (ESC) decidualize under the influence of ovarian progesterone to accommodate implantation of the blastocyst and support establishment of the placenta. Studies into the mechanisms of decidualization are often hampered by the lack of primary ESC. Here we describe a novel immortalized human ESC line.Entities:
Mesh:
Substances:
Year: 2009 PMID: 19619280 PMCID: PMC2719639 DOI: 10.1186/1477-7827-7-76
Source DB: PubMed Journal: Reprod Biol Endocrinol ISSN: 1477-7827 Impact factor: 5.211
Oligonucleotide Primers and Amplification Conditions for RT-PCR
| DEPP | 5'-AGGTCCCGGCTTCTGCTCTCC-3' | 20 cycles | 434 bp | |
| dPRL | 5'-GAGACACCAAGAAGAATCGGAACATACAGG-3' | 25 or 30 cycles | 416 bp | |
| ERα | 5'-CCCGCCGGCATTCTACA-3' | 30 cycles | 359 bp | |
| GAPDH | 5'-GGAGTCCACTGGCGTCTTCAC-3' | 20 cycles | 287 bp | |
| HEF-1 | 5'-AACCGGGTGAAGCTTCTGATTGG-3' | 25 cycles | 416 bp | |
| IGFBP-1 | 5'-TGCTGCAGAGGCAGGGAGCCC-3' | 25 cycles | 378 bp | |
| ITGA6 | 5'-AGCAAGGCAGATGGAATAATGTGA-3' | 25 cycles | 329 bp | |
| KAI-1 | 5'-AGAAGTGGGCCCTGTGACC-3' | 25 cycles | 396 bp | |
| p53 | 5'-TTCCACGACGGTGACACGCTT-3' | 25 cycles | 381 bp | |
| PR-B | 5'-GCCACATTCAACACCCACTTTCTC-3' | 30 cycles | 411 bp | |
| PR-B/-A | 5'-TCCACGTGCCTATCCTGCCTCTCA-3' | 30 cycles | 412 bp | |
| PR-LBD | 5'-GGACATGACAACACAAAACCTGAC-3' | 30 cycles | 598 bp | |
| Tissue Factor | 5'-TACTTGGCACGGGTCTTCTCCTAC-3' | 20 cycles | 431 bp |
Figure 1Phenotypic markers of St-T1b cells. St-T1b were grown to near confluency and subjected to immunocytochemical analysis using antibodies to vimentin, CD90 and cytokeratin-7 (CK7). The trophoblast-derived cell line AC-1M88 was stained alongside as a control. Control insets (Co) shows staining with omission of the primary antibody (original magnification, 100×).
Figure 2Morphological and biochemical decidualization of St-T1b cells. A) The left panel shows phase contrast microphotographs of untreated (control) or decidualized St-T1b cells after 7 d treatment with 8-Br-cAMP (magnification, 100×). Right panel: St-T1b cells and primary ESC were left untreated or exposed to 8-Br-cAMP for 4 d before staining with FITC-phalloidin to visualize the cytoskeleton (200×). B) St-T1b cells and ESC were cultured for 1, 3, or 7 d in the absence or presence of 8-Br-cAMP. Induction of transcripts for decidualization markers dPRL and IGFBP-1 was demonstrated by RT-PCR; GAPDH mRNA was amplified for normalization.
Figure 3Induction of KAI1 and p53 protein expression in decidualizing St-T1b cells. A) Total protein was harvested from St-T1b cells after 1, 3, or 7 d of treatment with 8-Br-cAMP and from untreated cells. Western blot analysis was performed for KAI1 and p53, and for GAPDH as a loading control. B) RNA was harvested from the same cultures as described in panel A and analyzed for KAI1, p53 and GAPDH transcript levels by RT-PCR.
Figure 4Long-term maintenance of St-T1b cells. A) St-T1b cells, obtained at passage number 30, were kept in continuous culture for the indicated number of passages and tested for their ability to decidualize in response to 3 d of 8-Br-cAMP stimulus. Transcript levels of dPRL, IGFBP-1 and FOXO1 were determined by RT-PCR; GAPDH mRNA was amplified for normalization. B) St-T1b cells at passage number 44 or 114 were treated with the indicated combinations of 8-Br-cAMP, P4 (1 μM) and E2 (10 nM) for 7 d before Western blot analysis for FOXO1. The blot was stripped and reprobed with GAPDH antibody. C) St-T1b cells at passage number 114, untreated or treated with 8-Br-cAMP for 7 d, were subjected to immunocytochemistry with vimentin antibody (original magnification, 100×).
Figure 5Steroid hormone receptor expression and P4 responsiveness in St-T1b cells. A) Expression of PR and ERα was analyzed by RT-PCR in St-T1b cells and ESC cultured without or with P4 (1 μM) for 4 h. PR transcripts were amplified using primers recognizing specifically PR-B, a region common to PR-B and PR-A, or the ligand-binding domain (LBD). GAPDH mRNA was amplified as a loading control. B) Expression of P4 target genes was analyzed in St-T1b cells by RT-PCR, after 4 or 24 h treatment with the indicated doses of P4, dexamethasone or R5020. Controls received 0.001% ethanol as a vehicle control.
Figure 6Effect of P4 and MPA on expression of decidual products. A) St-T1b cells were incubated in MM1 for 9 days as outlined in the scheme. Cultures were stimulated for 3 or 7 d with 8-Br-cAMP (0.5 mM) alone or in combination with P4 or MPA (1 μM). Supernatants were collected from the last 3 days of treatment, and RNA was harvested. B) RT-PCR analysis was performed for the indicated products on cells that had been stimulated for 3 or 7 d. C) Supernatants of the cultures described above, stimulated for 3 or 7 d, were assayed for IGFBP-1. Values represent IGFBP-1 secretion over 3 d, normalized to total RNA content of the wells. Means ± SD are shown (n = 3 wells). ANOVA followed by Bonferroni's post-hoc test revealed significant differences (**, P < 0.01; ***, P < 0.001; s, significantly different from controls, P4 and MPA after 3 and 7 d with P < 0.001; ns, not significantly different from controls, P4 or MPA after 3 and 7 d).