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Am J Physiol Heart Circ Physiol 288: H1339-H1343, 2005. First published October 28, 2004; doi:10.1152/ajpheart.00740.2004
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Regulatory response to washout of amniotic fluid in sheep

Qin Yang,1,3 L. Davis,1 A. Hohimer,1 J. Faber,2 and D. Anderson2

Departments of 1Obstetrics and Gynecology, 2Physiology and Pharmacology, and 3Surgery, Oregon Health and Science University, Portland, Oregon

Submitted 22 July 2004 ; accepted in final form 19 October 2004

To test the hypothesis that a substance present in the amniotic fluid could serve as a regulator of amniotic fluid volume, we drained and discarded amniotic fluid while replacing it with lactated Ringer solution that was isotonic to amniotic fluid. Seven ewes with singleton fetuses at 119 ± 1 days of gestation (mean ± SE) were instrumented with multiple indwelling catheters in the pedal artery, pedal vein, and amniotic cavity. During the exchange periods, an average of 3,019 ± 171 ml/day of lactated Ringer solution was infused into the amniotic cavity while an equal amount of amniotic fluid was pumped out and discarded. During the control period, amniotic fluid composition and volume were not altered. Exchange and control periods started with the same amniotic fluid volume, lasted 3 or 4 days, and were randomized with regard to order. Amniotic fluid volume measured by vacuum drainage was 556 ± 98 ml at the end of the control period and 986 ± 209 ml (P = 0.03) at the end of the exchange period. Fetal arterial blood gases, hemodynamic parameters and the osmolality gradient between fetal plasma and amniotic fluid were not altered by the exchange process. A linear relationship between the control amniotic fluid volume and the volume at the end of the exchange period (P = 0.003) suggests that the animals with larger control volumes responded to isovolumic dilution with a larger volume increase. We conclude that amniotic fluid may contain a substance that regulates amniotic volume.

fetal; intramembranous absorption; volume; chorion; isovolumic exchange



Address for reprint requests and other correspondence: L. Davis, Division of Maternal-Fetal Medicine, Medical Research Bldg. L458, Oregon Health and Science Univ., 3181 Southwest Sam Jackson Park Rd., Portland, OR 97291 (E-mail: davislo{at}ohsu.edu)




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