Stem Cell Reports · 2015 · 94 citations · 72 references
Cerebral OrganoidSocial SciencesNeurological Disease PhenotypesNeurologyHpsc-derived NeuronsNeurological FunctionNeuropathologyStem CellsMolecular NeuroscienceRegional IdentityNeurodegenerationNeuroimaging BiomarkersNeurodegenerative DiseasesAmyotrophic Lateral SclerosisNeuroanatomyCulture SystemNeuroscienceMedicineNeural Stem Cell
The CNS contains many diverse neuronal subtypes, and most neurological diseases target specific subtypes. However, the mechanism of neuronal subtype specificity of disease phenotypes remains elusive. Although in vitro disease models employing human pluripotent stem cells (PSCs) have great potential to clarify the association of neuronal subtypes with disease, it is currently difficult to compare various PSC-derived subtypes. This is due to the limited number of subtypes whose induction is established, and different cultivation protocols for each subtype. Here, we report a culture system to control the regional identity of PSC-derived neurons along the anteroposterior (A-P) and dorsoventral (D-V) axes. This system was successfully used to obtain various neuronal subtypes based on the same protocol. Furthermore, we reproduced subtype-specific phenotypes of amyotrophic lateral sclerosis (ALS) and Alzheimer's disease (AD) by comparing the obtained subtypes. Therefore, our culture system provides new opportunities for modeling neurological diseases with PSCs.
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Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors
Kazutoshi Takahashi, Koji Tanabe, Mari Ohnuki et al. · Cell · 2007 · 19.9K citations
Tissue Engineering, Regenerative Medicine, Defined Factors +14
Phases of Aβ-deposition in the human brain and its relevance for the development of AD
Dietmar Rudolf Thal, Udo Rüb, M Orantes et al. · Neurology · 2002 · 3.3K citations