Unified Generation of Regionalized Neural Organoids from Single-Lumen Neuroepithelium
Rao, J.; He, Z.; Loskarn, S.; Bender, A.; Jo, Y.; Lueckel, J.; Curcio, M.; Cubela, I.; Camp, G.; Treutlein, B.; Lutolf, M. P.
Show abstract
Human brain development begins with the formation of the neural tube, a neuroepithelium organized around a single continuous lumen that is patterned to specify distinct brain regions. Human pluripotent stem cell (hPSC)-derived neural organoids offer powerful models to study this process and its disruption in disease. However, most existing protocols rely on stochastic self-organization of hPSC aggregates, leading to high variability in tissue architecture and cell type composition, which limits reproducibility and fidelity to natural development. This variability has also hindered the broader adoption of brain organoid technology in translational and pharmaceutical research, where robustness and standardization are critical. Here, we present a scalable and reproducible platform that uses uniform, single-lumen neuroepithelium (SLN) as a standardized starting point for generating diverse, regionally specified neural organoids. SLNs form with high efficiency and reproducibility, can be patterned along dorso-ventral and anterior-posterior axes, and mature in suspension culture into organoids representing forebrain, midbrain, hindbrain, and neural retina. This unified and scalable approach provides a reproducible foundation for modeling human brain development, offering broad translational potential for mechanistic studies, disease modeling, and drug discovery.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Reliability of high-quantity human brain organoids for modeling microcephaly, glioma invasion, and drug screening 97%
- Enhanced Production of Mesencephalic Dopaminergic Neurons from Lineage-Restricted Human Undifferentiated Stem Cells 96%
- Bioengineered embryoids mimic post-implantation development in vitro 96%
Similar papers in this journal
- Directed Differentiation of Human Pluripotent Stem Cells into Radial Glia and Astrocytes Bypasses Neurogenesis 96%
- Self-Organizing Neural Networks in Organoids Reveal Principles of Forebrain Circuit Assembly 96%
- Developmental regulation of endothelial-to-hematopoietic transition from induced pluripotent stem cells 95%
Similar papers in this journal
- Axial Elongation of Caudalized Human Organoids Mimics Neural Tube Development 96%
- Stable iPSC-derived NKX2-1+ Lung Bud Tip Progenitor Organoids Give Rise to Airway and Alveolar Cell Types 95%
- Gastruloid-derived Primordial Germ Cell-like Cells (Gld-PGCLCs) develop dynamically within integrated tissues 95%
Similar papers in this journal
- Injectable 3D microcultures enable intracerebral transplantation of mature neurons directly reprogrammed from patient fibroblasts 97%
- Specialized signaling centers direct cell fate and spatial organization in a limb organoid model 96%
- Chronic exposure to glucocorticoids amplifies inhibitory neuron cell fate during human neurodevelopment in organoids 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.