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RESEARCH PRODUCT
Human SPG11 cerebral organoids reveal cortical neurogenesis impairment
Wenqiang FanFrancesc Pérez-brangulíIsabel Y. BuchsbaumIsabel Y. BuchsbaumSilvia CappelloDaniela GräfAnnika SchrayZacharias KohlJürgen WinklerTom BörstlerTatyana PoznerBenedikt BerningerBenedikt BerningerMartin RegensburgerBeate WinnerHimanshu K. Mishrasubject
GenotypeHereditary spastic paraplegiaNeurogenesisFluorescent Antibody TechniqueBiology03 medical and health sciencesGlycogen Synthase Kinase 3GeneticsOrganoidmedicineSpasticHumansMolecular BiologyGenetics (clinical)Allelesbeta CateninCerebral Cortex0303 health sciences030305 genetics & heredityNeurogenesisProteinsGeneral MedicineHuman brainmedicine.diseaseNeural stem cellnervous system diseasesOrganoidsmedicine.anatomical_structurePhenotypeMutationGeneral ArticleDisease SusceptibilityParaplegiaCognition DisordersNeuroscienceNeural developmentBiomarkersdescription
Abstract Spastic paraplegia gene 11(SPG11)-linked hereditary spastic paraplegia is a complex monogenic neurodegenerative disease that in addition to spastic paraplegia is characterized by childhood onset cognitive impairment, thin corpus callosum and enlarged ventricles. We have previously shown impaired proliferation of SPG11 neural progenitor cells (NPCs). For the delineation of potential defect in SPG11 brain development we employ 2D culture systems and 3D human brain organoids derived from SPG11 patients’ iPSC and controls. We reveal that an increased rate of asymmetric divisions of NPCs leads to proliferation defect, causing premature neurogenesis. Correspondingly, SPG11 organoids appeared smaller than controls and had larger ventricles as well as thinner germinal wall. Premature neurogenesis and organoid size were rescued by GSK3 inhibititors including the Food and Drug Administration-approved tideglusib. These findings shed light on the neurodevelopmental mechanisms underlying disease pathology.
year | journal | country | edition | language |
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2018-11-01 | Human Molecular Genetics |