Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induced pluripotent stem cells (iPSCs) offer an unlimited source of patient-specific cells, which in principle can be differentiated into all disease-relevant somatic cell types to create in vitro models of the disorder of interest. Here, neuronal differentiation protocols available for this purpose and the current progress on iPSCs-based models of schizophrenia, autism spectrum disorders and bipolar disorder were reviewed. We also discuss the impact of the recently developed CRISPR/Cas9 genome editing tool in the disease modeling field. Genetically engineered mutation of disease risk alleles in well characterized reference “control” hPSCs ...
Editorial summary Our understanding of the neurobiology of psychiatric disorders remains limited, an...
Psychiatric disorders, including autism spectrum disorders and schizophrenia, are extremely heritabl...
Neuronal differentiation of induced pluripotent stem cells and direct reprogramming represent powerf...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
The polygenic and multifactorial nature of many psychiatric disorders has hampered implementation of...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Editorial summary Our understanding of the neurobiology of psychiatric disorders remains limited, an...
Psychiatric disorders, including autism spectrum disorders and schizophrenia, are extremely heritabl...
Neuronal differentiation of induced pluripotent stem cells and direct reprogramming represent powerf...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
Research into psychiatric disorders has long been hindered by the lack of appropriate models. Induc...
The polygenic and multifactorial nature of many psychiatric disorders has hampered implementation of...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified >150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Major programs in psychiatric genetics have identified 4150 risk loci for psychiatric disorders. The...
Editorial summary Our understanding of the neurobiology of psychiatric disorders remains limited, an...
Psychiatric disorders, including autism spectrum disorders and schizophrenia, are extremely heritabl...
Neuronal differentiation of induced pluripotent stem cells and direct reprogramming represent powerf...