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April 4, 2026Placenta0 citationsOpen Access

Severe early-onset preeclampsia is significantly associated with metabolic dysregulation and sustained elevation of placental HIF-1α

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CJCourtney B. Johnson-GonzalezSBScout Bowman-GibsonCCChandni H. Chandiramani

Key Points

  • To investigate the role of elevated HIF-1α in placental metabolic function in severe, early-onset preeclampsia (sEOPE).
  • Collected placentas from healthy controls and sEOPE patients at delivery.
  • Performed Western blot analysis to quantify HIF-1α, VHL, and AKT protein levels.
  • Measure glycolytic and mitochondrial function markers, including glutathione levels and mitochondrial copy number.
  • HIF-1α protein levels were significantly elevated in sEOPE placentas.
  • VHL decreased while AKT increased, contributing to sustained HIF-1α levels.
  • Glycolytic proteins were significantly elevated, indicating metabolic dysfunction.
  • An enzyme critical for β-oxidation was significantly decreased, suggesting impaired fatty acid metabolism.

Abstract

Hypoxia-inducible factor 1α is an oxygen-sensitive transcription factor which has been reported to be upregulated in placentas of preeclampsia patients beyond the first trimester. In this study, we sought to determine how HIF-1α protein remains elevated in severe, early-onset PE and impacts placental metabolic function. Placentas from healthy pregnant control and severe, early-onset preeclampsia patients were taken at the time of delivery and processed for Western blot analysis, glutathione levels, and mitochondrial copy number. HIF-1α protein was significantly elevated in sEOPE. VHL, which degrades HIF-1α, was significantly decreased; while AKT, which stabilizes HIF-1α protein, was significantly elevated. A decrease in VHL, coupled with increased AKT, contribute to the sustained elevation of placental HIF-1α. We then assessed downstream metabolic targets to determine the impact of elevated HIF-1α. Target proteins in glycolysis were significantly elevated. An enzyme critical for β-oxidation was significantly decreased. The master regulator of cellular energy sensing, pAMPK, was significantly elevated, suggesting low cellular energy. Low cellular energy has been shown to decrease antioxidant capacity, consistent with our finding of decreased glutathione and GPX4. HTRA4, an indicator of endothelial dysfunction was also significantly elevated, further supporting increased placental metabolic dysfunction. Severe, early-onset preeclampsia is known to occur due to abnormal placentation, leading to compromised placental oxygen signaling and a sustained elevation of HIF-1α. This results in a shift from oxidative phosphorylation to glycolysis, decreased cellular energy, and diminished antioxidant capacity. Our findings provide compelling evidence for the significance of elevated placental HIF-1α in the pathogenesis of sEOPE. • sEOPE is characterized by Compromised Placental Oxygen Signaling. • Placental HIF-1α elevation is significantly associated with pathogenesis of sEOPE. • Elevated HIF-1α protein is strongly associated with placental metabolic dysfunction. • Metabolic dysfunction results in reduced cellular energy and antioxidant capacity.

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Cite This Study

Johnson-Gonzalez et al. (2026) studied this question.

synapsesocial.com/papers/69d0aff2659487ece0fa6133https://doi.org/10.1016/j.placenta.2026.03.020
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