Bar Alon, Moran Ron, Mendelsohn-Cohen Netta, Korem Kohanim Yael, Mayo Avi, Toledano Yoel, Alon Uri
Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot 7610001, Israel.
Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot 7610001, Israel.
Sci Adv. 2025 Mar 28;11(13):eadr7922. doi: 10.1126/sciadv.adr7922. Epub 2025 Mar 26.
Pregnancy and delivery involve dynamic alterations in many physiological systems. However, the physiological dynamics during pregnancy and after delivery have not been systematically analyzed at high temporal resolution in a large human population. Here, we present the dynamics of 76 lab tests based on a cross-sectional analysis of 44 million measurements from over 300,000 pregnancies. We analyzed each test at weekly intervals from 20 weeks preconception to 80 weeks postpartum, providing detailed temporal profiles. About half of the tests take 3 months to a year to return to baseline postpartum, highlighting the physiological load of childbirth. The precision of the data revealed effects of preconception supplements, overshoots after delivery and intricate temporal responses to changes in blood volume and renal filtration rate. Pregnancy complications-gestational diabetes, preeclampsia, and postpartum hemorrhage-showed distinct dynamical changes. These results provide a comprehensive dynamic portrait of the systems physiology of pregnancy.
怀孕和分娩涉及许多生理系统的动态变化。然而,尚未在大量人群中以高时间分辨率对怀孕期间和分娩后的生理动态进行系统分析。在此,我们基于对超过30万次怀孕的4400万次测量的横断面分析,展示了76项实验室检查的动态变化。我们从孕前20周直至产后80周,以每周为间隔对每项检查进行分析,提供了详细的时间变化曲线。大约一半的检查需要3个月至1年时间才能在产后恢复到基线水平,突出了分娩的生理负担。数据的精确性揭示了孕前补充剂的影响、分娩后的超调现象以及对血容量和肾滤过率变化的复杂时间响应。妊娠并发症——妊娠期糖尿病、先兆子痫和产后出血——呈现出明显的动态变化。这些结果提供了妊娠系统生理学的全面动态图景。