Targeting Oxidative Stress during the Post-Thawing Recovery Window Improves Cryopreservation Outcomes in Human Neural Organoids

  • Kwon, Yejin; 
  • Shin, Aeri; 
  • Kim, Garam; 
  • Sun, Woong
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초록

Neural organoids serve as critical in vitro models for recapitulating the structural and functional complexities of the human nervous system. However, the transition toward high-throughput drug screening and industrial-scale applications is currently hindered by low post-cryopreservation viability. While traditional research focuses on the freeze-thaw cycle itself, the biological mechanisms driving post-thaw failure remain poorly understood. In this study, we identify distinct cellular vulnerabilities during the recovery phase: mature neurons undergo rapid apoptosis, while neural stem cells exhibit a persistent reduction in proliferative capacity, ultimately leading to organoid growth failure. We demonstrate that these damages are closely associated with the induction of reactive oxygen species. Crucially, post-thaw antioxidant treatment significantly mitigates oxidative stress, restoring proliferative potential and substantially increasing overall organoid survival rates. Our findings suggest that shifting the focus from freezing protocols to targeted post-thaw pharmacological recovery represents a superior strategy for ensuring a reliable, scalable supply of neural organoids for biomedical research.

키워드

Organoids; Cryopreservation; Oxidative stress; Cell proliferation; Neuron protection; Neurogenesis; EMBRYONIC STEM-CELLS; SURVIVAL RATE; INHIBITION
제목
Targeting Oxidative Stress during the Post-Thawing Recovery Window Improves Cryopreservation Outcomes in Human Neural Organoids
저자
Kwon, Yejin; Shin, Aeri; Kim, Garam; Sun, Woong
DOI
10.15283/ijsc26007
발행일
2026-05-26
유형
Article; Early Access
저널명
International Journal of Stem Cells