Literature DB >> 8734839

Ethanol increases uterine blood flow and fetal arterial blood oxygen tension in the near-term pregnant ewe.

J D Reynolds1, D H Penning, F Dexter, B Atkins, J Hrdy, D Poduska, J F Brien.   

Abstract

Fetal hypoxia is a hypothesized mechanism of ethanol teratogenesis. The objective of this study was to test this hypothesis by determining the effects of maternal ethanol infusion on uterine blood flow (UBF) and fetal oxygen status. UBF was measured with an electromagnetic flow probe placed around the left maternal uterine artery of the surgically recovered instrumented near-term pregnant sheep at 124 +/- 3 days of gestation (term = 147 days). Experimental treatment involved maternal infusion of 2 g (n = 3) or 4 g (n = 5) ethanol/kg maternal body weight, or 0.9% saline (n = 4) over a 5-h period. Arterial blood samples were collected at regular intervals to monitor maternal ethanol concentration and fetal PO2. Maternal ethanol infusion produced a dose-dependent increase (p = 0.0009) in UBF. Ethanol infusion also increased (p = 0.03) fetal arterial PO2. Overall, these findings indicate that fetal hypoxia is not a mechanism of ethanol teratogenesis.

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Year:  1996        PMID: 8734839     DOI: 10.1016/0741-8329(95)02051-9

Source DB:  PubMed          Journal:  Alcohol        ISSN: 0741-8329            Impact factor:   2.405


  13 in total

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Review 4.  Mechanisms of Neonatal Heart Regeneration.

Authors:  Alisson C Cardoso; Ana Helena M Pereira; Hesham A Sadek
Journal:  Curr Cardiol Rep       Date:  2020-04-24       Impact factor: 2.931

Review 5.  Hypoxia and fetal heart development.

Authors:  A J Patterson; L Zhang
Journal:  Curr Mol Med       Date:  2010-10       Impact factor: 2.222

6.  Effects of L-glutamine supplementation on maternal and fetal hemodynamics in gestating ewes exposed to alcohol.

Authors:  Onkar B Sawant; Jayanth Ramadoss; Gary D Hankins; Guoyao Wu; Shannon E Washburn
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7.  Alcohol-induced alterations in maternal uterine endothelial proteome: a quantitative iTRAQ mass spectrometric approach.

Authors:  Jayanth Ramadoss; Ronald R Magness
Journal:  Reprod Toxicol       Date:  2012-09-05       Impact factor: 3.143

8.  Acid-sensitive channel inhibition prevents fetal alcohol spectrum disorders cerebellar Purkinje cell loss.

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9.  Eyeblink classical conditioning in the preweanling lamb.

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Journal:  Behav Neurosci       Date:  2008-06       Impact factor: 1.912

10.  The oxygen-rich postnatal environment induces cardiomyocyte cell-cycle arrest through DNA damage response.

Authors:  Bao N Puente; Wataru Kimura; Shalini A Muralidhar; Jesung Moon; James F Amatruda; Kate L Phelps; David Grinsfelder; Beverly A Rothermel; Rui Chen; Joseph A Garcia; Celio X Santos; SuWannee Thet; Eiichiro Mori; Michael T Kinter; Paul M Rindler; Serena Zacchigna; Shibani Mukherjee; David J Chen; Ahmed I Mahmoud; Mauro Giacca; Peter S Rabinovitch; Asaithamby Aroumougame; Ajay M Shah; Luke I Szweda; Hesham A Sadek
Journal:  Cell       Date:  2014-04-24       Impact factor: 41.582

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