RRC ID 89870
Author Adachi S, Nishimura M, Yamaguchi K, Sato AY, Takeuchi RF, Osakada F.
Title AAV-DJ enables efficient, function-preserving neuronal transduction for circuit interrogation in human cortical and thalamic organoids.
Journal Cell Rep Methods
Abstract Neural organoids provide tractable models of human brain development, function, and disease, but adeno-associated viral vector (AAV)-based gene delivery is limited by inefficient transduction and insufficient comparative evaluation of the natural and engineered capsids. Here, we evaluated seven AAV capsids (AAV-2, -6, -9, -DJ, -2-retro, -PHP.eB, and -Cap-Mac) for transduction efficiency, cell type tropism, cytotoxicity, and functional integrity in human cortical and thalamic organoids. AAV-Cap-Mac demonstrated the highest transduction efficiency, with broad cellular tropism, but caused cytotoxicity and decreased neuronal activity. By contrast, AAV-DJ yielded efficient neuronal transduction, with preserved calcium dynamics and minimal cytotoxicity, which enabled rabies virus-based circuit tracing and all-optical physiology. Our findings reveal a capsid-dependent trade-off between transduction efficiency and functional integrity and identify AAV-DJ as an optimal serotype for robust gene delivery and physiological interrogation in organoid-based neuroscience. Combining AAV-DJ with emerging molecular and circuit-level technologies in organoids should facilitate mechanistic and translational studies of the human brain.
Pages 101546
Published 2026-8-13
DOI 10.1016/j.crmeth.2026.101546
PII S2667-2375(26)00247-X
PMID 42594869
Resource
Human and Animal Cells 293T(RCB2202)