Related Experiment Video
Updated: Jan 14, 2026

Dynamic Clamp Methods to Investigate Impaired Neuronal Excitability Associated with Autism
Published on: October 17, 2025
Analysis of neuronal activity impairment in iPSC-derived neurons from idiopathic autism patients
Andras Kern1, Viktor Román1,2, Tamás I Orbán3
1Pharmacological and Drug Safety Research, Gedeon Richter Plc., Budapest, Hungary.
Abstract:
Understanding the molecular mechanisms underlying autism spectrum disorder (ASD) is crucial to develop effective interventions. Here, we utilized induced pluripotent stem cells differentiated into neurons (iPSC-Ns) from idiopathic ASD and control individuals (CTRL) to investigate the molecular basis of ASD. ASD-iPSC-Ns exhibited functional alterations displaying less calcium transients compared to CTRL. Different expression levels of microRNAs involved in neurogenesis and neuronal functioning might underlie these differences. ASD-iPSC-N neuronal networks showed impaired synaptic neurotransmission and connectivity (decreased [Ca2+]i waves and glutamatergic transmission), as demonstrated by a chemogenetic approach utilizing designer receptor exclusively activated by designer drug (DREADD) in co-cultures of iPSC-Ns and rat cortical neurons. Such functional alterations have profound implications for neuronal network formation and function, contributing to the core pathogenic features of ASD. Therefore, utilization of ASD-iPSC-Ns offers a unique opportunity to study the molecular mechanism in a relevant human cellular context. Our findings highlight the significance of neuronal activity and synaptic dysfunction in ASD pathogenesis.

