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Emilie C. Rijnink, Marlies E. Penning, Ron Wolterbeek, Suzanne Wilhelmus, Malu Zandbergen, Sjoerd G. van Duinen, Joke Schutte, Jan A. Bruijn, Ingeborg M. Bajema, Tissue microchimerism is increased during pregnancy: a human autopsy study, Molecular Human Reproduction, Volume 21, Issue 11, November 2015, Pages 857–864, https://doi.org/10.1093/molehr/gav047
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Abstract
Microchimerism is the occurrence of small populations of cells with a different genetic background within an individual. Tissue microchimerism is considered to be primarily pregnancy-derived and is often studied relative to female-dominant autoimmune diseases, pregnancy complications, malignancies, response to injury, and transplantation outcomes. A particular distribution pattern of chimeric cells across various organs was recently described in a model of murine pregnancies. Our aim was to determine the frequency and distribution of tissue microchimerism across organs during and after pregnancy in humans. We performed in situ hybridization of the Y chromosome on paraffin-embedded autopsy samples of kidneys, livers, spleens, lungs, hearts and brains that were collected from 26 women who died while pregnant or within 1 month after delivery of a son. Frequencies of chimeric cells in various tissues were compared with those of a control group of non-pregnant women who had delivered sons. Tissue microchimerism occurred significantly more frequently in the lungs, spleens, livers, kidneys and hearts of pregnant women compared with non-pregnant women (all P < 0.01). We showed that some of the chimeric cells were CD3+ or CD34+. After correction for cell density, the lung was most chimeric (470 Y chromosome-positive nuclei per million nuclei scored), followed by the spleen (208 Y+/106 nuclei), liver (192 Y+/106 nuclei), kidney (135 Y+/106 nuclei), brain (85 Y+/106 nuclei) and heart (40 Y+/106 nuclei). Data from this unique study group of women who died while pregnant or shortly after delivery provide information about the number and physiologic distribution of chimeric cells in organs of pregnant women. We demonstrate that during pregnancy, a boost of chimeric cells is observed in women, with a distribution across organs, that parallels findings in mouse models.