Literature DB >> 107590

Membrane effects of thyrotropin-releasing hormone and estrogen shown by intracellular recording from pituitary cells.

B Dufy, J D Vincent, H Fleury, P Du Pasquier, D Gourdji, A Tixier-Vidal.   

Abstract

The effects of thyrotropin-releasing hormone and 17 beta-estradiol on the electrical membrane properties of a prolactin-secretin pituitary cell line (GH3/B6) were studied with intracellular microelectrode recordings. Of the cells tested, 50 percent were excitable and displayed calcium-dependent action potentials when depolarized. When injected directly on the membrane of an excitable cell, thyrotropin-releasing hormone and 17 beta-estradiol induced action potentials within 1 minute. The spiking activity was preceded by a progressive increase of the input resistance without any detectable change in the resting membrane polarization. The results reveal a rapid effect of both substances on the membrane of GH3/B6 cells. In the case of thyrotropin-releasing hormone, which has both a short-term effect on release of prolactin and a long-term effect on its synthesis, the induced electrical activity may be associated with the stimulation of prolactin production. The physiological implication of 17 beta-estradiol-induced, calcium-dependent spiking activity remains to be elucidated.

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Year:  1979        PMID: 107590     DOI: 10.1126/science.107590

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  44 in total

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5.  Vasoactive intestinal polypeptide alters GH3/B6 pituitary cell excitability.

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7.  Thyrotropin-releasing hormone stimulates a calcium-activated potassium current in a rat anterior pituitary cell line.

Authors:  A K Ritchie
Journal:  J Physiol       Date:  1987-04       Impact factor: 5.182

8.  Nimodipine block of calcium channels in rat anterior pituitary cells.

Authors:  C J Cohen; R T McCarthy
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Review 9.  Mechanisms underlying the rapid effects of estradiol and progesterone on hippocampal memory consolidation in female rodents.

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10.  Localisation of GPR30, a novel G protein-coupled oestrogen receptor, suggests multiple functions in rodent brain and peripheral tissues.

Authors:  Georgina G J Hazell; Song T Yao; James A Roper; Eric R Prossnitz; Anne-Marie O'Carroll; Stephen J Lolait
Journal:  J Endocrinol       Date:  2009-05-06       Impact factor: 4.286

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