MedicineBiology

Wing Ki Chan, Sofia Rasmusson, Seyedeh Marzieh Jabbari Shiadeh, Rebecka Wilhelmsson, Maria E. Johansson, B. Elfving, H. Müller, Carina Mallard, M. Ardalan

2026.5.18CELLULAR AND MOLECULAR NEUROBIOLOGY

DOI: 10.1007/s10571-026-01746-2

Abstract

Serotonin (5-hydroxytryptamine, 5-HT) is a multifaceted neuromodulator involved in processes from early embryogenesis to postnatal brain maturation. During pregnancy, 5-HT plays critical roles not only in maternal mood and behavior but also in placental function and fetal brain development. Beyond its classical role in mood regulation, 5-HT acts as a developmental signal influencing neuronal proliferation, migration, and synaptic organization within precisely timed critical windows. This narrative review provides an integrative framework linking molecular, cellular, and systems-level 5-HT mechanisms to neurodevelopmental outcomes, emphasizing how maternal, placental, and fetal sources of 5-HT dynamically interact with genetic, environmental, and pharmacological factors during gestation. By considering recent advances from developmental neurobiology, genetics, and psychopharmacology, we propose that disrupted 5-HTergic homeostasis represents a convergent mechanism underlying neurodevelopmental risk, particularly in autism spectrum disorder (ASD). We further highlight emerging evidence for sex-dependent 5-HTergic signaling and its role in differential susceptibility across offspring. These results collectively indicate the key role of 5-HT in neurodevelopment and highlight its promise as a biomarker and therapeutic target in neurodevelopmental disorders.

Citation format

CHAN, Wing Ki, et al. The role of serotonin in brain development: From molecular pathways to neurodevelopmental risk. CELLULAR AND MOLECULAR NEUROBIOLOGY, 2026, 46.