Literature DB >> 6696073

Altered osmotic thresholds for vasopressin secretion and thirst in human pregnancy.

J M Davison, E A Gilmore, J Dürr, G L Robertson, M D Lindheimer.   

Abstract

Osmoregulation was studied in eight women during late pregnancy and again 8-10 wk postpartum. Base-line plasma osmolality (Posmol) was significantly lower during (280.9 +/- 2.1 mosmol/kg, SD) than after (289.4 +/- 2.1 mosmol/kg) pregnancy yet 24-h urinary volume and plasma arginine vasopressin (PAVP) measured in vasopressinase-inactivated blood was similar in both groups (pregnancy, 1.39 +/- 0.56 pg/ml; postpartum, 1.25 +/- 0.62 pg/ml). After 12 h of dehydration PAVP rose similarly and significantly both during (2.25 +/- 0.81 pg/ml) and after (2.89 +/- 1.19 pg/ml) gestation, and Uosmol was similar on both occasions (pregnancy, 779 +/- 121 mosmol/kg; postpartum, 784 +/- 102 mosmol/kg). When Posmol was increased by the slow infusion of 5% saline PAVP increased as soon as body tonicity did both during and after pregnancy. PAVP correlated significantly with Posmol in each subject (range of r, 0.75-0.99) and the mean regression lines [pregnancy, PAVP = 0.32 (Posmol; -279), r = 0.79; postpartum, PAVP = 0.38 (Posmol, -285), r = 0.86] demonstrated that the apparent osmotic threshold for AVP secretion was 6 mosmol/kg lower during than after gestation. Similarly the Posmol at which the subject experienced a conscious desire to drink was lower in pregnant (287 +/- 1.6 mosmol/kg) compared with postpartum subjects (298 +/- 2.0 mosmol/kg; P less than 0.001). These data demonstrate decreased osmotic thresholds for AVP release and thirst during human pregnancy and explain why gravidas can maintain their new lower Posmol within narrow limits.

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Year:  1984        PMID: 6696073     DOI: 10.1152/ajprenal.1984.246.1.F105

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  28 in total

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2.  Fluid balance and renal response following dehydrating exercise in well-trained men and women.

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3.  Angiotensin AT1A receptors expressed in vasopressin-producing cells of the supraoptic nucleus contribute to osmotic control of vasopressin.

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Review 4.  Blood pressure and water regulation: understanding sex hormone effects within and between men and women.

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6.  Renal NCC is unchanged in the midpregnant rat and decreased in the late pregnant rat despite avid renal Na+ retention.

Authors:  Crystal A West; Alicia A McDonough; Shyama M E Masilamani; Jill W Verlander; Chris Baylis
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7.  Serial evaluation of vasopressin release and thirst in human pregnancy. Role of human chorionic gonadotrophin in the osmoregulatory changes of gestation.

Authors:  J M Davison; E A Shiells; P R Philips; M D Lindheimer
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Authors:  J M Davison; E A Sheills; W M Barron; A G Robinson; M D Lindheimer
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9.  Effect of endothelin-3 on vasopressin release in vitro and water excretion in vivo in Long-Evans rats.

Authors:  N F Rossi
Journal:  J Physiol       Date:  1993-02       Impact factor: 5.182

Review 10.  Estrogen receptors: their roles in regulation of vasopressin release for maintenance of fluid and electrolyte homeostasis.

Authors:  Celia D Sladek; Suwit J Somponpun
Journal:  Front Neuroendocrinol       Date:  2007-10-12       Impact factor: 8.606

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