Role of steroid hormones and prostaglandins in the regulation of DNA synthesis by decidual cells in culture

The effect of oestrogen and progesterone on prostaglandin synthesis and on DNA synthesis by rat decidual cells was studied in a culture system. The cells were explanted from deciduoma either during the proliferation phase (namely on the 5th day of leukocytic smear, Day L 5: “L 5 cells”) or during th...

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Veröffentlicht in:Molecular and cellular endocrinology 1980-12, Vol.20 (3), p.209-218
Hauptverfasser: Peleg, S., Lindner, H.R.
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description The effect of oestrogen and progesterone on prostaglandin synthesis and on DNA synthesis by rat decidual cells was studied in a culture system. The cells were explanted from deciduoma either during the proliferation phase (namely on the 5th day of leukocytic smear, Day L 5: “L 5 cells”) or during the maintenance phase (“L 8 cells”) and examined on the second day of culture. Oestradiol-17β (7 × 10 −11 M) and progesterone (6 × 10 −8 M) significantly inhibited accumulation of PGE by cells explanted on Day L 5: L 8-cell cultures showed no significant response to oestradiol and the progesterone effect was markedly reduced. Progesterone stimulated [ 3H]thymidine incorporation into cells explanted on Day L 5, but had no effect on L 8-cell cultures. Other inhibitors of PG synthesis, namely cortisol, flufenamic acid and indomethacin, also had a stimulatory effect on DNA synthesis by L 5 cells. PGE 2 (5–10 μg/ml) inhibited DNA synthesis in control, indomethacin-treated and progesterone-treated L 5-cell cultures, suggesting that the progesterone-induced stimulation of DNA synthesis may in part be due to its inhibitory effect on PGE accumulation by decidual cells. The possibility is discussed that during the proliferation phase of decidual development in vivo, the rate of DNA synthesis may be influenced by steroid-induced changes in PGE content of the tissue.
doi_str_mv 10.1016/0303-7207(80)90036-2
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The cells were explanted from deciduoma either during the proliferation phase (namely on the 5th day of leukocytic smear, Day L 5: “L 5 cells”) or during the maintenance phase (“L 8 cells”) and examined on the second day of culture. Oestradiol-17β (7 × 10 −11 M) and progesterone (6 × 10 −8 M) significantly inhibited accumulation of PGE by cells explanted on Day L 5: L 8-cell cultures showed no significant response to oestradiol and the progesterone effect was markedly reduced. Progesterone stimulated [ 3H]thymidine incorporation into cells explanted on Day L 5, but had no effect on L 8-cell cultures. Other inhibitors of PG synthesis, namely cortisol, flufenamic acid and indomethacin, also had a stimulatory effect on DNA synthesis by L 5 cells. PGE 2 (5–10 μg/ml) inhibited DNA synthesis in control, indomethacin-treated and progesterone-treated L 5-cell cultures, suggesting that the progesterone-induced stimulation of DNA synthesis may in part be due to its inhibitory effect on PGE accumulation by decidual cells. 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PGE 2 (5–10 μg/ml) inhibited DNA synthesis in control, indomethacin-treated and progesterone-treated L 5-cell cultures, suggesting that the progesterone-induced stimulation of DNA synthesis may in part be due to its inhibitory effect on PGE accumulation by decidual cells. The possibility is discussed that during the proliferation phase of decidual development in vivo, the rate of DNA synthesis may be influenced by steroid-induced changes in PGE content of the tissue.</abstract><cop>Ireland</cop><pub>Elsevier Ireland Ltd</pub><pmid>7202833</pmid><doi>10.1016/0303-7207(80)90036-2</doi><tpages>10</tpages></addata></record>
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subjects Animals
Cells, Cultured
cortisol
Decidua - drug effects
Decidua - metabolism
decidual cell culture
DNA - biosynthesis
DNA synthesis
Estradiol - pharmacology
Female
oestrogen
PGsynthetase inhibitors
Pregnancy
progesterone
Progesterone - pharmacology
Prostaglandin Antagonists - pharmacology
prostaglandins
Prostaglandins - pharmacology
Prostaglandins E - pharmacology
Prostaglandins F - pharmacology
Rats
title Role of steroid hormones and prostaglandins in the regulation of DNA synthesis by decidual cells in culture
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