Literature DB >> 810026

Fetal ingestion and metabolism of amniotic fluid protein.

R M Pitkin, W A Reynolds.   

Abstract

Fetal swallowing, digestion, and utilization of amniotic fluid protein were studied in near-term rhesus monkeys in which 35S-protein, synthesized biologically from 35S-methionine, was injected into the amniotic sac. The half-time of the injected protein in amniotic fluid was 1.1 days, a figure consistent with findings of others that fetal swallowing represents the principal mechanism of clearance of amniotic fluid protein. On delivery at timed intervals up to 7 days after injection, evidence of progressive proteolysis along the fetal alimentary tract was found. The amnio acids liberated from protein hydrolysis were apparently utilized in protein synthesis in the gut wall as well as absorbed in fetal plasma, where they equilibrated rapidly with maternal plasma and amniotic fluid. Maximal amino acid radioactivity in these three compartments occurred 3 days after injection and was followed 1 day later by maximal fetal plasma protein radioactivity. Incorporation into protein of amino acids absorbed after hydrolysis was found in fetal lung, liver, skeletal muscle, and brain. The results indicate that ingested amniotic fluid protein undergoes proteolysis in the fetal alimentary tract and the amino acids thus made available are utilized in protein synthesis by the developing fetus. While this mechanism can provide only a relatively minor proportion (estimated at 10 to 15 per cent) of fetal nitrogen requirements, it may represent an important aspect physiologically by preparing the fetus for extrauterine nutrition. Moreover, the use of intra-amniotic nutrition as a mode of fetal therapy, while speculative at present, offers possibilities for the furture.

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Year:  1975        PMID: 810026     DOI: 10.1016/s0002-9378(16)33436-6

Source DB:  PubMed          Journal:  Am J Obstet Gynecol        ISSN: 0002-9378            Impact factor:   8.661


  10 in total

Review 1.  Host factors in amniotic fluid and breast milk that contribute to gut maturation.

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Review 2.  Ontogeny, growth and development of the small intestine: Understanding pediatric gastroenterology.

Authors:  Laurie A Drozdowski; Tom Clandinin; Alan B R Thomson
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3.  The effect of chick embryo amniotic fluid on sciatic nerve regeneration of rats.

Authors:  Gh H Farjah; F Fazli
Journal:  Iran J Vet Res       Date:  2015       Impact factor: 1.376

4.  Prenatal Treatment of X-Linked Hypohidrotic Ectodermal Dysplasia using Recombinant Ectodysplasin in a Canine Model.

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5.  More than fetal urine: enteral uptake of amniotic fluid as a major predictor for fetal growth during late gestation.

Authors:  Soyhan Bagci; Erwin Brosens; Dick Tibboel; Annelies De Klein; Hanneke Ijsselstijn; Charlotte H W Wijers; Nel Roeleveld; Ivo de Blaauw; Paul M Broens; Iris A L M van Rooij; Alice Hölscher; Thomas M Boemers; Marcus Pauly; Oliver J Münsterer; Eberhard Schmiedeke; Mattias Schäfer; Benno E Ure; Martin Lacher; Vera Choinitzki; Johannes Schumacher; Nadine Zwink; Ekkehart Jenetzky; David Katzer; Joerg Arand; Peter Bartmann; Heiko M Reutter
Journal:  Eur J Pediatr       Date:  2016-03-16       Impact factor: 3.183

6.  The effect of gestational age and labor on placental growth hormone in amniotic fluid.

Authors:  P Mittal; S S Hassan; J Espinoza; J P Kusanovic; S Edwin; F Gotsch; O Erez; N G Than; S Mazaki-Tovi; R Romero
Journal:  Growth Horm IGF Res       Date:  2007-10-01       Impact factor: 2.372

Review 7.  Human milk for the premature infant.

Authors:  Mark A Underwood
Journal:  Pediatr Clin North Am       Date:  2012-10-18       Impact factor: 3.278

8.  Strategies for intra-amniotic administration of fetal therapy in a rabbit model of intrauterine growth restriction.

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Review 9.  Sample preparation techniques for extraction of vitamin D metabolites from non-conventional biological sample matrices prior to LC-MS/MS analysis.

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Journal:  Anal Bioanal Chem       Date:  2022-05-02       Impact factor: 4.478

10.  Lack of megalin expression in adult human terminal ileum suggests megalin-independent cubilin/amnionless activity during vitamin B12 absorption.

Authors:  Louise L Jensen; Rikke K Andersen; Henrik Hager; Mette Madsen
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  10 in total

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