Literature DB >> 29852156

Is amniotic fluid of women with uncomplicated term pregnancies free of bacteria?

Eva Maria Rehbinder1, Karin C Lødrup Carlsen2, Anne Cathrine Staff3, Inga Leena Angell4, Linn Landrø5, Katarina Hilde3, Peter Gaustad6, Knut Rudi4.   

Abstract

BACKGROUND: The "sterile womb" paradigm is debated. Recent evidence suggests that the offspring's first microbial encounter is before birth in term uncomplicated pregnancies. The establishment of a healthy microbiota early in life might be crucial for reducing the burden of diseases later in life.
OBJECTIVE: We aimed to investigate the presence of a microbiota in sterilely collected amniotic fluid in uncomplicated pregnancies at term in the Preventing Atopic Dermatitis and Allergies in children (PreventADALL) study cohort. STUDY
DESIGN: Amniotic fluid was randomly sampled at cesarean deliveries in pregnant women in 1 out of 3 study sites included in the PreventADALL study. From 65 pregnancies at term, where amniotic fluid was successfully sampled, we selected 10 from elective (planned, without ongoing labor) cesarean deliveries with intact amniotic membranes and all 14 with prior rupture of membranes were included as positive controls. Amniotic fluid was analyzed by culture-independent and culture-dependent techniques.
RESULTS: The median (min-max) concentration of prokaryotic DNA (16S rRNA gene copies/mL; digital droplet polymerase chain reaction) was low for the group with intact membranes [664 (544-748)]-corresponding to the negative controls [596 (461-679)], while the rupture of amniotic membranes group had >10-fold higher levels [7700 (1066-251,430)] (P = .0001, by Mann-Whitney U test). Furthermore, bacteria were detected in 50% of the rupture of amniotic membranes samples by anaerobic culturing, while none of the intact membranes samples showed bacterial growth. Sanger sequencing of the rupture of amniotic membrane samples identified bacterial strains that are commonly part of the vaginal flora and/or associated with intrauterine infections.
CONCLUSION: We conclude that fetal development in uncomplicated pregnancies occurs in the absence of an amniotic fluid microbiota and that the offspring microbial colonization starts after uterine contractions and rupture of amniotic membrane.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  amniotic fluid; bacteria; fetus; microbiome; microbiota; placenta; sterile

Mesh:

Substances:

Year:  2018        PMID: 29852156     DOI: 10.1016/j.ajog.2018.05.028

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


  27 in total

1.  Antibiotic administration can eradicate intra-amniotic infection or intra-amniotic inflammation in a subset of patients with preterm labor and intact membranes.

Authors:  Bo Hyun Yoon; Roberto Romero; Jee Yoon Park; Kyung Joon Oh; JoonHo Lee; Agustin Conde-Agudelo; Joon-Seok Hong
Journal:  Am J Obstet Gynecol       Date:  2019-03-27       Impact factor: 8.661

2.  Evidence that intra-amniotic infections are often the result of an ascending invasion - a molecular microbiological study.

Authors:  Roberto Romero; Nardhy Gomez-Lopez; Andrew D Winters; Eunjung Jung; Majid Shaman; Janine Bieda; Bogdan Panaitescu; Percy Pacora; Offer Erez; Jonathan M Greenberg; Madison M Ahmad; Chaur-Dong Hsu; Kevin R Theis
Journal:  J Perinat Med       Date:  2019-11-26       Impact factor: 1.901

3.  The first glimpse of the endometrial microbiota in early pregnancy.

Authors:  Inmaculada Moreno; Iolanda Garcia-Grau; Davide Bau; David Perez-Villaroya; Marta Gonzalez-Monfort; Felipe Vilella; Roberto Romero; Carlos Simón
Journal:  Am J Obstet Gynecol       Date:  2020-02-10       Impact factor: 8.661

Review 4.  Inherited nongenetic influences on the gut microbiome and immune system.

Authors:  Kathryn A Knoop; Lori R Holtz; Rodney D Newberry
Journal:  Birth Defects Res       Date:  2018-12-01       Impact factor: 2.344

Review 5.  Nutri-Epigenetics and Gut Microbiota: How Birth Care, Bonding and Breastfeeding Can Influence and Be Influenced?

Authors:  Rosita Gabbianelli; Laura Bordoni; Sandra Morano; Jean Calleja-Agius; Joan G Lalor
Journal:  Int J Mol Sci       Date:  2020-07-16       Impact factor: 5.923

6.  Does Bacteria Colonization of Canine Newborns Start in the Uterus?

Authors:  Ada Rota; Andrea Del Carro; Alessia Bertero; Angela Del Carro; Alessandro Starvaggi Cucuzza; Penelope Banchi; Michela Corrò
Journal:  Animals (Basel)       Date:  2021-05-14       Impact factor: 2.752

7.  Bacteria in the amniotic fluid without inflammation: early colonization vs. contamination.

Authors:  Eunjung Jung; Roberto Romero; Bo Hyun Yoon; Kevin R Theis; Dereje W Gudicha; Adi L Tarca; Ramiro Diaz-Primera; Andrew D Winters; Nardhy Gomez-Lopez; Lami Yeo; Chaur-Dong Hsu
Journal:  J Perinat Med       Date:  2021-07-07       Impact factor: 2.716

8.  Does the human placenta delivered at term have a microbiota? Results of cultivation, quantitative real-time PCR, 16S rRNA gene sequencing, and metagenomics.

Authors:  Kevin R Theis; Roberto Romero; Andrew D Winters; Jonathan M Greenberg; Nardhy Gomez-Lopez; Ali Alhousseini; Janine Bieda; Eli Maymon; Percy Pacora; Jennifer M Fettweis; Gregory A Buck; Kimberly K Jefferson; Jerome F Strauss; Offer Erez; Sonia S Hassan
Journal:  Am J Obstet Gynecol       Date:  2019-03       Impact factor: 10.693

Review 9.  Mechanisms and evidence of vertical transmission of infections in pregnancy including SARS-CoV-2s.

Authors:  Aniza P Mahyuddin; Abhiram Kanneganti; Jeslyn J L Wong; Pooja S Dimri; Lin L Su; Arijit Biswas; Sebastian E Illanes; Citra N Z Mattar; Ruby Y-J Huang; Mahesh Choolani
Journal:  Prenat Diagn       Date:  2020-10-04       Impact factor: 3.242

10.  Lack of detection of a human placenta microbiome in samples from preterm and term deliveries.

Authors:  Jacob S Leiby; Kevin McCormick; Scott Sherrill-Mix; Erik L Clarke; Lyanna R Kessler; Louis J Taylor; Casey E Hofstaedter; Aoife M Roche; Lisa M Mattei; Kyle Bittinger; Michal A Elovitz; Rita Leite; Samuel Parry; Frederic D Bushman
Journal:  Microbiome       Date:  2018-10-30       Impact factor: 14.650

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