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1.
J Endocrinol ; 121(3): 513-9, 1989 Jun.
Article in English | MEDLINE | ID: mdl-2754375

ABSTRACT

Two inhibitors of prostaglandin synthesis, indomethacin and aspirin, blocked the increase of oestrogen-binding sites in the nuclear subcellular fraction, an increase which occurs after the administration of oestradiol. Consequently the biological effects of oestrogens in the anterior pituitary gland of the rat (prolactin synthesis, concentration of progesterone-binding sites and cell proliferation) are diminished. The anterior pituitary gland synthesized prostaglandin F2 alpha (PGF2 alpha), PGE2 and PGD2 from arachidonic acid. This synthesis was blocked when indomethacin was added to the culture media. Oestrogen increased the concentration of PGE2: an increase that was partially prevented by indomethacin. Prostaglandins may have an important role on the effects of oestrogen in the anterior pituitary gland of the rat.


Subject(s)
Estrogen Antagonists/metabolism , Indomethacin/pharmacology , Pituitary Gland, Anterior/drug effects , Animals , Arachidonic Acids/metabolism , Aspirin/pharmacology , Dinoprostone/metabolism , Estradiol/pharmacology , Progesterone/metabolism , Rats , Rats, Inbred Strains , Receptors, Estrogen/drug effects
2.
Prostaglandins ; 18(4): 577-89, 1979 Oct.
Article in English | MEDLINE | ID: mdl-531226

ABSTRACT

Incubated bovine pineal glands released prostaglandin E-and prostglandin F-like material (304 +/- 20 and 582 +/- 56 pg/mg dry tissue wt/h, respectively) and the release was increased 2.2 2.9-fold by adding 10(-4)-10(-6)M of norepinephrine to the medium. Binding assays revealed the existence of high affinity binding of 3H-prostaglandin E2 (3H-PGE2) and 3H-prostaglandin F1 alpha (3H-PGF2 alpha) in low speed supernatants of pineal homogenates. Binding was increased by increasing Ca++ concentration in medium up to 2 mM, was heat labile and was depressed following incubation with trypsin. In subcellular fractionation studies maximal 3H-PG binding was found in the 27000 x g pellet. Scatchard analysis of 3H-PGE2 binding revealed the presence of a single population of binding sites with a Kd= 1.2 nM and a binding site concentration of 1-2 pmoles/g protein. A single population of binding sites for 3H-PGF2 alpha was also detected with a Kd= 1.7 nM and a similar binding site concentration. Non-radioactive PGE1 and PGE2 were almost equally effective to compete for 3H-PGE1 binding sites (ED50= 5 and 2 nM, respectively). Unlabeled PGF1 was relatively ineffective to compete for 3H-PGE2 binding (ED50 greater than 1000 nM) but displaced effectively 3H-PGF2 alpha binding (ED20=1.2 nM).


Subject(s)
Pineal Gland/metabolism , Prostaglandins E/metabolism , Prostaglandins F/metabolism , Animals , Cattle , Culture Media , Norepinephrine/pharmacology , Receptors, Prostaglandin , Secretory Rate/drug effects
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