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January 18, 2026FEBS Open Bio1 citationsOpen Access

Dihydroorotate dehydrogenase ( DHODH ) regulates trophoblast syncytialization through organelle stress–induced cellular senescence

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KYKanoko YoshidaKKKazuya KusamaAHAyaka Horiuchi

Key Points

  • Investigate the role of DHODH in trophoblast syncytialization and its relation to cellular senescence.
  • Utilized human trophoblast stem cells for experimentation.
  • Inhibited DHODH to evaluate effects on syncytialization.
  • Assessed mitochondrial and endoplasmic reticulum stress levels.
  • Measured sFlt1/PlGF levels as indicators of placental dysfunction.
  • Inhibition of DHODH impaired trophoblast syncytialization.
  • Induced cellular senescence correlated with mitochondrial and organelle stress.
  • Elevated sFlt1/PlGF levels were observed, indicating placental dysfunction.
  • Mitochondrial activators quercetin and riboflavin partially reversed the negative effects.

Abstract

Trophoblast syncytialization is essential for placental function, and its dysregulation contributes to hypertensive disorders of pregnancy (HDPs), which compromise maternal and fetal health. Reduced expression of mitochondrial dihydroorotate dehydrogenase (DHODH) was observed in early‐onset HDP placentas in our previous study. Experiments using human trophoblast stem cells demonstrated that DHODH inhibition impairs syncytialization and induces cellular senescence via mitochondrial and endoplasmic reticulum stress, elevating sFlt1/PlGF levels, a hallmark of placental dysfunction in HDPs. Mitochondrial activators quercetin and riboflavin partially reversed these effects. Our findings suggest that DHODH may be a key regulator of trophoblast differentiation by linking organelle stress to cellular senescence.

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Cite This Study

Yoshida et al. (2026) studied this question.

synapsesocial.com/papers/696c774feb60fb80d139588dhttps://doi.org/10.1002/2211-5463.70194
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