Clonidine prevents radiation-induced cell death in human brain organoids

M Martin Lundberg S Samudyata M Marja Koskuvi A Asimenia Gkogka M Mahnaz Nikpour M Melis Çelik E Erik Smedler B Bo Stenerlöw P Per-Arne Lönnqvist M Martin Schalling C Carl M. Sellgren

Abstract

Abstract Radiotherapy is a standard treatment of pediatric brain tumors. Though the survival rate has improved for many tumor types, most patients suffer long-term cognitive decline and there is currently no way of preventing radiation-induced damage to healthy brain tissue. Here, we used a human forebrain organoid model to investigate if the α 2 -adrenoceptor and I 1 -imidazoline receptor agonist clonidine could prevent radiotoxicity. We found that treatment of organoids with clonidine significantly reduced radiation-induced loss of neural progenitor cells, neurons, astrocytes, and oligodendrocyte lineage cells. Moreover, clonidine reduced overall DNA damage and signs of reactive gliosis in organoids. Our findings demonstrate that pharmacological rescue of radiation neurotoxicity is possible in a human brain organoid model and provides a rationale for future drug repurposing studies aiming to prevent radiation-induced brain injury in children treated with radiotherapy.

Article Details

Volume / Issue Vol. 15, Issue 1
Published October 31, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (11)

M

Martin Lundberg

S

Samudyata

M

Marja Koskuvi

A

Asimenia Gkogka

M

Mahnaz Nikpour

M

Melis Çelik

E

Erik Smedler

B

Bo Stenerlöw

P

Per-Arne Lönnqvist

M

Martin Schalling

C

Carl M. Sellgren