학술논문

The Autism Spectrum Disorders Stem Cell Resource at Children's Hospital of Orange County: Implications for Disease Modeling and Drug Discovery.
Document Type
article
Source
Stem cells translational medicine. 3(11)
Subject
Neurons
Cell Line
Stem Cells
Humans
Child Development Disorders
Pervasive
Cell Differentiation
Action Potentials
Multifactorial Inheritance
Models
Biological
Adolescent
Child
Child
Preschool
Tissue Banks
Female
Male
Induced Pluripotent Stem Cells
Neural Stem Cells
Autism spectrum disorder
Differentiation
Disease modeling
Induced pluripotent stem cells
Neural stem cell
Neuron
Brain Disorders
Neurosciences
Mental Health
Autism
Intellectual and Developmental Disabilities (IDD)
Stem Cell Research - Induced Pluripotent Stem Cell - Human
Regenerative Medicine
Stem Cell Research
Stem Cell Research - Induced Pluripotent Stem Cell
Pediatric
2.1 Biological and endogenous factors
Aetiology
Generic health relevance
Neurological
Mental health
Biochemistry and Cell Biology
Medical Biotechnology
Clinical Sciences
Language
Abstract
The autism spectrum disorders (ASDs) comprise a set of neurodevelopmental disorders that are, at best, poorly understood but are the fastest growing developmental disorders in the United States. Because animal models of polygenic disorders such as the ASDs are difficult to validate, the derivation of induced pluripotent stem cells (iPSCs) by somatic cell reprogramming offers an alternative strategy for identifying the cellular mechanisms contributing to ASDs and the development of new treatment options. Access to statistically relevant numbers of ASD patient cell lines, however, is still a limiting factor for the field. We describe a new resource with more than 200 cell lines (fibroblasts, iPSC clones, neural stem cells, glia) from unaffected volunteers and patients with a wide range of clinical ASD diagnoses, including fragile X syndrome. We have shown that both normal and ASD-specific iPSCs can be differentiated toward a neural stem cell phenotype and terminally differentiated into action-potential firing neurons and glia. The ability to evaluate and compare data from a number of different cell lines will facilitate greater insight into the cause or causes and biology of the ASDs and will be extremely useful for uncovering new therapeutic and diagnostic targets. Some drug treatments have already shown promise in reversing the neurobiological abnormalities in iPSC-based models of ASD-associated diseases. The ASD Stem Cell Resource at the Children's Hospital of Orange County will continue expanding its collection and make all lines available on request with the goal of advancing the use of ASD patient cells as disease models by the scientific community.