PIP2 Accumulation in the Spongiotrophoblast Drives Trophoblast Apoptosis in Intrahepatic Cholestasis of Pregnancy

  • Mol Reprod Dev. 2026 Apr;93(4):e70105. doi: 10.1002/mrd.70105.
Zhou-Tian Xu  1 Lu-Xing Ge  1 Li Luo  1 Hong-Ying Ma  1 Hong Xiao  1 Yu-Bin Ding  2  3
Affiliations
  • 1. Department of Health Laboratory Technology, School of Public Health, Chongqing Medical University, Chongqing, China.
  • 2. Department of Obstetrics and Gynecology, Women and Children's Hospital of Chongqing Medical University, Chongqing, China.
  • 3. Department of Pharmacology, Academician Work Station, Changsha Medical University, Changsha, China.
Abstract

Intrahepatic cholestasis of pregnancy (ICP) is a pregnancy-specific liver disorder characterized by elevated maternal bile acids and an increased risk of adverse fetal outcomes. Although placental dysfunction is a key contributor to ICP pathogenesis, the underlying mechanisms remain incompletely understood. Here, we combined a Sprague-Dawley rat model of ICP with spatial metabolomics to delineate region-specific metabolic alterations within the placenta. Multivariate analysis revealed distinct metabolic signatures between ICP and control placentas, with pronounced reprogramming in trophoblast-enriched regions. Differential metabolite and pathway analyses identified significant perturbations in glycerophospholipid metabolism, pyruvate metabolism, Phospholipase D signaling, and the tricarboxylic acid cycle. Notably, phosphatidic acid (PA) was broadly elevated, whereas its downstream product phosphatidylinositol 4,5-bisphosphate (PIP2) exhibited spatially restricted accumulation in trophoblasts. Mechanistically, taurocholic acid exposure in HTR-8/SVneo cells induced upregulation of PIP5K1, leading to PIP2 accumulation and increased trophoblast Apoptosis via disruption of the Bcl-2/Bax balance. Silencing of PIP5K1 restored PIP2 homeostasis and attenuated Apoptosis. Importantly, these molecular alterations were recapitulated in placental tissues from ICP patients, confirming activation of the PIP5K1-PIP2 axis in vivo. Collectively, our findings identify a spatially resolved PA-PIP5K1-PIP2 lipid signaling cascade that links bile acid-induced metabolic stress to trophoblast Apoptosis and placental dysfunction in ICP.

Keywords
5‐bisphosphate; bile acids; intrahepatic cholestasis of pregnancy; phosphatidylinositol‐4; placental metabolism; trophoblast apoptosis.
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