Postischemic Infusion of Apigenin Reduces Seizure Burden in Preterm Fetal Sheep

Kenta H.T. Cho, Natalya Hounsell, Evelyn McClendon, Art Riddle, Basappa, Simerdeep K. Dhillon, Laura Bennet, Stephen Back, Larry S. Sherman, Alistair J. Gunn, Justin M. Dean

Research output: Contribution to journalArticlepeer-review

Abstract

Seizures are common in preterm newborns and are associated with poor neurodevelopmental outcomes. Current anticonvulsants have poor efficacy, and many have been associated with upregulation of apoptosis in the developing brain. Apigenin, a natural bioactive flavonoid, is a potent inhibitor of hyaluronidase and reduces seizures in adult animal models. However, its impact on perinatal seizures is unclear. In the present study, we examined the effect of apigenin and S3, a synthetic, selective hyaluronidase inhibitor, on seizures after cerebral ischemia in preterm fetal sheep at 0.7 gestation (98–99 days, term ~147 days). Fetuses received sham ischemia (n = 9) or ischemia induced by bilateral carotid occlusion for 25 min. Immediately after ischemia, fetuses received either a continuous infusion of vehicle (0.036% dimethyl sulfoxide, n = 8) or apigenin (50 µM, n = 6). In a pilot study, we also tested infusion of S3 (2 µM, n = 3). Fetuses were monitored continuously for 72 h after ischemia. Infusion of apigenin or S3 were both associated with reduced numbers of animals with seizures, total seizure time, and mean seizure burden. S3 was also associated with a reduction in the total number of seizures over the 72 h recovery period. In animals that developed seizures, apigenin was associated with earlier cessation of seizures. However, apigenin or S3 treatment did not alter recovery of electroencephalographic power or spectral edge frequency. These data support that targeting brain hyaluronidase activity with apigenin or S3 may be an effective strategy to reduce perinatal seizures following ischemia. Further studies are required to determine their effects on neurohistological outcomes.

Original languageEnglish (US)
Article number16926
JournalInternational journal of molecular sciences
Volume24
Issue number23
DOIs
StatePublished - Dec 2023

Keywords

  • anticonvulsants
  • apigenin
  • extracellular matrix
  • hyaluronidase
  • hyaluronidase inhibitor
  • hypoxic–ischemic encephalopathy
  • seizures

ASJC Scopus subject areas

  • Catalysis
  • Molecular Biology
  • Spectroscopy
  • Computer Science Applications
  • Physical and Theoretical Chemistry
  • Organic Chemistry
  • Inorganic Chemistry

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