Genomics

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Integrative single-cell and cell-free plasma RNA transcriptomics elucidates placental cellular dynamics


ABSTRACT: The human placenta is a dynamic and cellular heterogeneous organ, which is critical in fetomaternal homeostasis and the development of preeclampsia. Previous work has shown that placenta-derived cell-free RNA increases during pregnancy. We applied large-scale microfluidic single-cell transcriptomic technology to comprehensively characterize cellular heterogeneity of the human placentas and identified multiple placental cell-type–specific gene signatures. Analysis of the cellular signature expression in maternal plasma enabled noninvasive delineation of the cellular dynamics of the placenta during pregnancy and the elucidation of extravillous trophoblastic dysfunction in early preeclampsia.

PROVIDER: EGAS00001002449 | EGA |

REPOSITORIES: EGA

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Integrative single-cell and cell-free plasma RNA transcriptomics elucidates placental cellular dynamics.

Tsang Jason C H JCH   Vong Joaquim S L JSL   Ji Lu L   Poon Liona C Y LCY   Jiang Peiyong P   Lui Kathy O KO   Ni Yun-Bi YB   To Ka Fai KF   Cheng Yvonne K Y YKY   Chiu Rossa W K RWK   Lo Yuk Ming Dennis YMD  

Proceedings of the National Academy of Sciences of the United States of America 20170822 37


The human placenta is a dynamic and heterogeneous organ critical in the establishment of the fetomaternal interface and the maintenance of gestational well-being. It is also the major source of cell-free fetal nucleic acids in the maternal circulation. Placental dysfunction contributes to significant complications, such as preeclampsia, a potentially lethal hypertensive disorder during pregnancy. Previous studies have identified significant changes in the expression profiles of preeclamptic plac  ...[more]

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