Single rosette-based generation of uniform cortical assembloids recapitulating cellular interactions between neurons and glial cells

  • Kim, Eunjee; 
  • Kim, Yunhee; 
  • Hong, Soojung; 
  • Kim, Inha; 
  • Lee, Juhee; 
  • ... Choi, Jungmin; 
  • 외 6명
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초록

Despite recent advances, current brain organoid technologies face ongoing challenges in managing heterogeneity and representing the diverse structure and cell types of the human brain. Here, we develop a module-based cellular reconstitution technology to sequentially build uniform cortical assembloids with mature cortical structures and functional connectivity. The uniformity and maturity of the cortical assembloids are achieved by creating single-rosette-based organoids at the early stage, whose sizes were big and consistent with the treatment of Wnt and Hedgehog agonists, followed by spatial reconstitution with the Reelin-expressing neuronal layer and non-neuronal glial cells. The resulting single-rosette-based cortical assembloids are highly uniform and reproducible without significant batch effects, solving major heterogeneity issues caused by difficulties in controlling the number and size of rosettes in conventional multi-rosette organoids. Furthermore, these cortical assembloids structurally and functionally recapitulate the physiology of the human brain, including the six-layered cortical structure, functional connectivity, and dynamic cellular interplay between neurons and glial cells. Our study thus provides an innovative preclinical model to study a range of neurological disorders, understanding the pathogenesis of which requires an organoid system capable of representing the dynamic cellular interactions and the maturity of the human brain.

키워드

HUMAN BRAIN-DEVELOPMENT; PLURIPOTENT STEM-CELLS; CEREBRAL ORGANOIDS; DIVERSITY; DYNAMICS; MODELS; MATURATION; DERIVATION; IDENTITY
제목
Single rosette-based generation of uniform cortical assembloids recapitulating cellular interactions between neurons and glial cells
저자
Kim, Eunjee; Kim, Yunhee; Hong, Soojung; Kim, Inha; Lee, Juhee; Yoo, Jong-Yeon; Kim, Jihyun; Yoo, Kwangmin; Lee, Hojin; Kim, Joung-Hun; Choi, Jungmin; Shin, Kunyoo
DOI
10.1038/s41467-025-66440-1
발행일
2025-11
유형
Article
저널명
Nature Communications
권
16
호
1