Self-organizing neuruloids model developmental aspects of Huntington’s disease in the ectodermal compartment
Autor: | Tomomi Haremaki, Tiago Rito, Jakob J. Metzger, Fred Etoc, Ali H Brivanlou, M. Zeeshan Ozair |
---|---|
Rok vydání: | 2019 |
Předmět: |
Telencephalon
Neurogenesis Cell Culture Techniques Biomedical Engineering Bioengineering Biology Fibroblast growth factor Bone morphogenetic protein Applied Microbiology and Biotechnology Cell Line 03 medical and health sciences 0302 clinical medicine Ectoderm Huntingtin Protein Humans Progenitor cell Neurulation Embryonic Stem Cells 030304 developmental biology 0303 health sciences Wnt signaling pathway Neural crest Cell Differentiation Embryonic stem cell Huntington Disease Molecular Medicine Neuroscience 030217 neurology & neurosurgery Biotechnology |
Zdroj: | Nature Biotechnology. 37:1198-1208 |
ISSN: | 1546-1696 1087-0156 |
Popis: | Harnessing the potential of human embryonic stem cells to mimic normal and aberrant development with standardized models is a pressing challenge. Here we use micropattern technology to recapitulate early human neurulation in large numbers of nearly identical structures called neuruloids. Dual-SMAD inhibition followed by bone morphogenic protein 4 stimulation induced self-organization of neuruloids harboring neural progenitors, neural crest, sensory placode and epidermis. Single-cell transcriptomics unveiled the precise identities and timing of fate specification. Investigation of the molecular mechanism of neuruloid self-organization revealed a pulse of pSMAD1 at the edge that induced epidermis, whose juxtaposition to central neural fates specifies neural crest and placodes, modulated by fibroblast growth factor and Wnt. Neuruloids provide a unique opportunity to study the developmental aspects of human diseases. Using isogenic Huntington’s disease human embryonic stem cells and deep neural network analysis, we show how specific phenotypic signatures arise in our model of early human development as a consequence of mutant huntingtin protein, outlining an approach for phenotypic drug screening. Micropatterning generates the four ectodermal cell types of human neurulation. |
Databáze: | OpenAIRE |
Externí odkaz: |