Abstract Background Lissencephaly, or smooth brain, is a severe congenital brain malformation that is thought to be associated with impaired neuronal migration during corticogenesis. However, the exact etiology of lissencephaly in humans remains unknown. Research on congenital diseases is limited by the shortage of clinically derived resources, especially for rare pediatric diseases. The research on lissencephaly is further limited because gyration in humans is more evolved than that in model animals such as mice. To overcome these limitations, we generated induced pluripotent stem cells (iPSCs) from the umbilical cord and peripheral blood of two lissencephaly patients with different clinical s...
Human induced pluripotent stem cells (iPSCs) have opened new possibilities to recapitulate disease m...
International audienceOur purpose was to investigate genes and molecular mechanisms involved in pati...
Background: Mucopolysaccharidosis type I-Hurler (MPS1-H) is a severe genetic lysosomal storage disor...
Abstract Background Lissencephaly, or smooth brain, i...
Lissencephaly comprises a spectrum of brain malformations due to impaired neuronal migration in the ...
The restricted availability of suitable in vitro models that can reliably represent complex human br...
Classical lissencephaly is a genetic neurological disorder associated with mental retardation and in...
Mutations in the α-1a Tubulin (TUBA1A) gene have recently been found to cause cortical malformations...
International audienceLissencephalies are congenital malformations responsible for epilepsy and ment...
The discovery of resetting human somatic cells via introduction of four transcription factors into a...
Studying human brain development and disorders is very challenging. In the absence of comparable mod...
We have recently reported a missense mutation in exon 4 of the tubulin alpha 1A (Tuba1a) gene in a h...
The causal relationship between a disease and the underlyinggenetic defect are commonly studied in a...
We have recently reported a missense mutation in exon 4 of the tubulin alpha 1A (Tuba1a) gene in a h...
International audienceCerebral cortical development involves a complex series of highly regulated st...
Human induced pluripotent stem cells (iPSCs) have opened new possibilities to recapitulate disease m...
International audienceOur purpose was to investigate genes and molecular mechanisms involved in pati...
Background: Mucopolysaccharidosis type I-Hurler (MPS1-H) is a severe genetic lysosomal storage disor...
Abstract Background Lissencephaly, or smooth brain, i...
Lissencephaly comprises a spectrum of brain malformations due to impaired neuronal migration in the ...
The restricted availability of suitable in vitro models that can reliably represent complex human br...
Classical lissencephaly is a genetic neurological disorder associated with mental retardation and in...
Mutations in the α-1a Tubulin (TUBA1A) gene have recently been found to cause cortical malformations...
International audienceLissencephalies are congenital malformations responsible for epilepsy and ment...
The discovery of resetting human somatic cells via introduction of four transcription factors into a...
Studying human brain development and disorders is very challenging. In the absence of comparable mod...
We have recently reported a missense mutation in exon 4 of the tubulin alpha 1A (Tuba1a) gene in a h...
The causal relationship between a disease and the underlyinggenetic defect are commonly studied in a...
We have recently reported a missense mutation in exon 4 of the tubulin alpha 1A (Tuba1a) gene in a h...
International audienceCerebral cortical development involves a complex series of highly regulated st...
Human induced pluripotent stem cells (iPSCs) have opened new possibilities to recapitulate disease m...
International audienceOur purpose was to investigate genes and molecular mechanisms involved in pati...
Background: Mucopolysaccharidosis type I-Hurler (MPS1-H) is a severe genetic lysosomal storage disor...