Cell-Free Fetal DNA Increases Prior to Labor at Term and in a Subset of Preterm Births

被引:0
作者
Nardhy Gomez-Lopez
Roberto Romero
George Schwenkel
Valeria Garcia-Flores
Bogdan Panaitescu
Aneesha Varrey
Fatime Ayoub
Sonia S. Hassan
Mark Phillippe
机构
[1] US Department of Health and Human Services,Perinatology Research Branch, Division of Obstetrics and Maternal
[2] Wayne State University School of Medicine,Fetal Medicine, Division of Intramural Research, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health
[3] Wayne State University School of Medicine,Department of Obstetrics and Gynecology
[4] University of Michigan,Department of Immunology, Microbiology and Biochemistry
[5] Michigan State University,Department of Obstetrics and Gynecology
[6] Wayne State University,Department of Epidemiology and Biostatistics
[7] Detroit Medical Center,Center for Molecular Medicine and Genetics
[8] Florida International University,Department of Obstetrics and Gynecology
[9] Wayne State University School of Medicine,Department of Physiology
[10] Wayne State University School of Medicine,Vincent Center for Reproductive Biology, Department of Obstetrics and Gynecology
[11] Massachusetts General Hospital,undefined
来源
Reproductive Sciences | 2020年 / 27卷
关键词
Inflammation; Chorioamnionitis; Prematurity; Fetal inflammatory response; Funisitis;
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学科分类号
摘要
Cell-free fetal DNA in the maternal circulation has been associated with the onset of labor at term. Moreover, clinical studies have suggested that cell-free fetal DNA has value to predict pregnancy complications such as spontaneous preterm labor leading to preterm birth. However, a mechanistic link between cell-free fetal DNA and preterm labor and birth has not been established. Herein, using an allogeneic mouse model in which a paternal green fluorescent protein (GFP) can be tracked in the fetuses, we established that cell-free fetal DNA (Egfp) concentrations were higher in late gestation compared to mid-pregnancy and were maintained at increased levels during the onset of labor at term, followed by a rapid decrease after birth. A positive correlation between cell-free fetal DNA concentrations and the number of GFP-positive pups was also observed. The increase in cell-free fetal DNA concentrations prior to labor at term was not linked to a surge in any specific cytokine/chemokine; yet, specific chemokines (i.e., CCL2, CCL7, and CXCL2) increased as gestation progressed and maintained elevated levels in the postpartum period. In addition, cell-free fetal DNA concentrations increased prior to systemic inflammation-induced preterm birth, which was associated with a strong cytokine response in the maternal circulation. However, cell-free fetal DNA concentrations were not increased prior to intra-amniotic inflammation-induced preterm birth, but in this model, a mild inflammatory response was observed in the maternal circulation. Collectively, these findings suggest that an elevation in cell-free fetal DNA concentrations in the maternal circulation precedes the physiological process of labor at term and the pathological process of preterm labor linked with systemic inflammation, but not that associated with intra-amniotic inflammation.
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页码:218 / 232
页数:14
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