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Brain Organoids as Model Systems for Genetic Neurodevelopmental Disorders. | LitMetric

AI Article Synopsis

  • Neurodevelopmental disorders (NDDs) affect central nervous system development, leading to issues like motor function impairments and learning difficulties, often accompanied by conditions like epilepsy.
  • Advances in DNA sequencing have uncovered genetic factors in many NDDs, but studying these requires patient-derived brain tissues, which are difficult to access.
  • Innovations in stem cell technology and genome editing have enabled the creation of 3D cerebral organoids, providing new ways to model human brain development and investigate disorders such as autism and epileptic encephalopathies.

Article Abstract

Neurodevelopmental disorders (NDDs) are a group of disorders in which the development of the central nervous system (CNS) is disturbed, resulting in different neurological and neuropsychiatric features, such as impaired motor function, learning, language or non-verbal communication. Frequent comorbidities include epilepsy and movement disorders. Advances in DNA sequencing technologies revealed identifiable genetic causes in an increasingly large proportion of NDDs, highlighting the need of experimental approaches to investigate the defective genes and the molecular pathways implicated in abnormal brain development. However, targeted approaches to investigate specific molecular defects and their implications in human brain dysfunction are prevented by limited access to patient-derived brain tissues. In this context, advances of both stem cell technologies and genome editing strategies during the last decade led to the generation of three-dimensional (3D) -models of cerebral organoids, holding the potential to recapitulate precise stages of human brain development with the aim of personalized diagnostic and therapeutic approaches. Recent progresses allowed to generate 3D-structures of both neuronal and non-neuronal cell types and develop either whole-brain or region-specific cerebral organoids in order to investigate key brain developmental processes, such as neuronal cell morphogenesis, migration and connectivity. In this review, we summarized emerging methodological approaches in the field of brain organoid technologies and their application to dissect disease mechanisms underlying an array of pediatric brain developmental disorders, with a particular focus on autism spectrum disorders (ASDs) and epileptic encephalopathies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7586734PMC
http://dx.doi.org/10.3389/fcell.2020.590119DOI Listing

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