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Review
. 2018 May;79(5):e12851.
doi: 10.1111/aji.12851. Epub 2018 Mar 25.

Maternal-fetal cross talk through cell-free fetal DNA, telomere shortening, microchimerism, and inflammation

Affiliations
Review

Maternal-fetal cross talk through cell-free fetal DNA, telomere shortening, microchimerism, and inflammation

Shi-Bin Cheng et al. Am J Reprod Immunol. 2018 May.

Abstract

There exists a strong correlation between unscheduled inflammation at the maternal-fetal interface and the continuum of pregnancy complications. In normal pregnancy, immunological tolerance is established to protect the semi-allogeneic fetus. There has been extensive research on how the immunity, endovascular trophoblast migration, and hormonal nexus are orchestrated during pregnancy at the maternal-fetal interface to program a normal pregnancy outcome. It is not clear what contributes to the plasticity of uterine immune tolerance, fetal survial, and long-term post-partum health of the mother and the offspring. Old and new concepts have reemerged and emerged that include cell-free fetal DNA (cffDNA), telomere shortening, microchimerism involving bidirectional migration of maternal and fetal cells, and pregnancy as a stress factor. The question is how these pathways converge in a gestational age-dependent manner to contribute to the health of the mother and the offspring later in life and respond to an array of inflammatory challenges. In this Review, we provide pertinent discussion on maternal-fetal cross talk through cffDNA, telomere shortening, and microchimerism in the context of inflammatory and anti-inflammatory settings, particularly how these pathways lead to normal and adverse pregnancy outcomes.

Keywords: adverse pregnancy outcomes; cell-free fetal DNA; immune tolerance; microchimerism; telomere.

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Figures

Figure 1
Figure 1
Diagram showing signaling events involving maternal fetal cross-talk through telomere, microchimerism, cell free fetal DNA and inflammation. Mito: mitochondria.

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