Effects of dopamine receptor antagonists and radiation on mouse neural stem/progenitor cells

Ling He1, Kruttika Bhat1, Angeliki Ioannidis1

  • 1Department of Radiation Oncology, David Geffen School of Medicine at UCLA, United States.

Abstract

Insights

Dopamine receptor antagonists combined with radiation may offer a novel glioblastoma therapy. This combination therapy

Area of Science:

  • Neuroscience
  • Oncology
  • Pharmacology

Background:

  • Dopamine receptor antagonists show promise as anti-cancer agents, with one in clinical trials for pediatric glioma.
  • Radiotherapy can cause cognitive impairment by damaging neural stem/progenitor cells, leading to reduced neurogenesis and other adverse effects.
  • This study investigates the combined impact of dopamine receptor antagonists and radiation on neural stem/progenitor cells.

Purpose of the Study:

  • To evaluate the effects of dopamine receptor antagonists, alone and in combination with radiation, on neural stem/progenitor cells.
  • To determine if these effects are sex-dependent.
  • To assess the potential of this combination as a novel glioblastoma treatment.

Main Methods:

  • Utilized transgenic mice with EGFP reporter for neural stem/progenitor cells.
  • Assessed effects in vitro and in vivo using sphere-formation assays, extreme limiting dilution assays, flow cytometry, and real-time PCR.
  • Tested in both male and female mice across different age groups.

Main Results:

  • Hydroxyzine and trifluoperazine demonstrated sex-dependent effects on neural stem/progenitor cells in vitro.
  • Amisulpride, nemonapride, and quetiapine, when combined with radiation, significantly increased neural stem/progenitor cell numbers in both sexes.
  • In vivo, amisulpride enhanced sphere-forming capacity and stem cell frequency in both sexes.

Conclusions:

  • A therapeutic window for combining dopamine receptor antagonists with radiation therapy for glioblastoma may exist.
  • This combination represents a novel therapeutic strategy.
  • Consideration of age and sex is crucial for managing normal tissue toxicity in clinical trials.