Inken Dreyer
2 Papers
Inken Dreyer is an academic researcher. The author has contributed to research in topics: Autism & Autism spectrum disorder. The author has an hindex of 2, co-authored 2 publications.
Chat about Author
Papers
Heart defects and other features of the 22q11 distal deletion syndrome.
Christina Fagerberg,Jesper Graakjaer,Ulrike D. Heinl,Lilian Bomme Ousager,Inken Dreyer,Maria Kirchhoff,Anders Aamann Rasmussen,Charlotte K. Lautrup,Niels H Birkebaek,Keld E. Sørensen +9 more
TL;DR: The most frequent features in 22q11 distal deletion are developmental delay or learning disability, short stature, microcephalus, premature birth with low birth weight, and congenital heart malformation ranging from minor anomalies to complex malformations.
42
NCKAP1 Disruptive Variants Lead to a Neurodevelopmental Disorder with Core Features of Autism.
Hui Guo,Hui Guo,Qiumeng Zhang,Rujia Dai,Rujia Dai,Bin Yu,Kendra Hoekzema,Jieqiong Tan,Senwei Tan,Xiangbin Jia,Wendy K. Chung,Rebecca Hernan,Fowzan S. Alkuraya,Ahood Alsulaiman,Mohammad A. Al-Muhaizea,Gaetan Lesca,Linda Pons,Audrey Labalme,Linda Laux,Emily Bryant,Natasha J Brown,Elena Savva,Samantha Ayres,Dhamidhu Eratne,Hilde Peeters,Frédéric Bilan,Lucile Letienne-Cejudo,Brigitte Gilbert-Dussardier,Inge Lore Ruiz-Arana,Jenny Meylan Merlini,Alexia Boizot,Lucia Bartoloni,Federico Santoni,Danielle Karlowicz,Marie T. McDonald,Huidan Wu,Zhengmao Hu,Guodong Chen,Jianjun Ou,Charlotte Brasch-Andersen,Christina Fagerberg,Inken Dreyer,Anne chun-hui Tsai,Anne chun-hui Tsai,Valerie Slegesky,Rose B. McGee,Brina Daniels,Elizabeth A. Sellars,Lori A. Carpenter,Bradley Schaefer,Maria J. Guillen Sacoto,Amber Begtrup,Rhonda E. Schnur,Sumit Punj,Ingrid M. Wentzensen,Lindsay Rhodes,Qian Pan,Raphael Bernier,Chao Chen,Evan E. Eichler,Kun Xia,Kun Xia +61 more
TL;DR: Mouse in utero electroporation experiments reveal that Nckap1 loss of function promotes neuronal migration during early cortical development, and data support a role for disruptive NCKAP1 variants in neurodevelopmental delay/autism, possibly by interfering with neuronal migration early in cortical development.