Department of Radiology, Lucile Packard Children's Hospital, Stanford University, 300 Pasteur Drive, Stanford, CA, 94304, USA.
Pediatr Radiol. 2020 Dec;50(13):1974-1987. doi: 10.1007/s00247-020-04674-5. Epub 2020 Nov 30.
The increase in understanding of molecular biology and recent advances in genetic testing have caused rapid growth in knowledge of genetic causes of malformations of cortical development. Imaging diagnosis of malformations of cortical development can be made prenatally in a large subset of fetuses based on the presence of specific deviations from the normal pattern of development, characteristic imaging features, and associated non-central-nervous-system (CNS) abnormalities. In this review the authors discuss the role of four key cell molecules/molecular pathways in corticogenesis that are frequently implicated in complex prenatally diagnosed malformations of cortical development. The authors also list the currently described genes causing defects in these molecules/molecular pathways when mutated, and the constellation of imaging findings resultant of such defects.
对分子生物学的认识不断提高,以及遗传检测的最新进展,使得人们对皮质发育畸形的遗传原因有了快速的认识。基于特定的发育模式偏离、特征性成像特征以及相关的非中枢神经系统(CNS)异常,成像诊断可在很大一部分胎儿中对皮质发育畸形进行产前诊断。在这篇综述中,作者讨论了经常与复杂的产前诊断的皮质发育畸形有关的皮质发生中四个关键的细胞分子/分子途径的作用。作者还列出了目前描述的导致这些分子/分子途径缺陷的基因突变时的相关基因,以及这些缺陷导致的成像结果的特征。