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发育异常与过度生长:雷帕霉素机制靶点通路改变继发小儿脑异常的磁共振成像

Dysplasia and overgrowth: magnetic resonance imaging of pediatric brain abnormalities secondary to alterations in the mechanistic target of rapamycin pathway.

作者信息

Shrot Shai, Hwang Misun, Stafstrom Carl E, Huisman Thierry A G M, Soares Bruno P

机构信息

Division of Pediatric Radiology and Pediatric Neuroradiology, Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, 1800 Orleans Street, Zayed 4174, Baltimore, MD, 21287, USA.

Department of Diagnostic Imaging, Sheba Medical Center, 52621, Ramat-Gan, Israel.

出版信息

Neuroradiology. 2018 Feb;60(2):137-150. doi: 10.1007/s00234-017-1961-5. Epub 2017 Dec 26.

Abstract

The current classification of malformations of cortical development is based on the type of disrupted embryological process (cell proliferation, migration, or cortical organization/post-migrational development) and the resulting morphological anomalous pattern of findings. An ideal classification would include knowledge of biological pathways. It has recently been demonstrated that alterations affecting the mechanistic target of rapamycin (mTOR) signaling pathway result in diverse abnormalities such as dysplastic megalencephaly, hemimegalencephaly, ganglioglioma, dysplastic cerebellar gangliocytoma, focal cortical dysplasia type IIb, and brain lesions associated with tuberous sclerosis. We review the neuroimaging findings in brain abnormalities related to alterations in the mTOR pathway, following the emerging trend from morphology towards genetics in the classification of malformations of cortical development. This approach improves the understanding of anomalous brain development and allows precise diagnosis and potentially targeted therapies that may regulate mTOR pathway function.

摘要

目前皮质发育畸形的分类是基于胚胎发育过程中断的类型(细胞增殖、迁移或皮质组织/迁移后发育)以及由此产生的形态学异常发现模式。理想的分类应包括对生物学途径的了解。最近有研究表明,影响雷帕霉素机制靶点(mTOR)信号通路的改变会导致多种异常,如发育异常性巨脑症、半侧巨脑症、神经节胶质瘤、发育异常性小脑神经节细胞瘤、IIb型局灶性皮质发育不良以及与结节性硬化症相关的脑病变。我们按照皮质发育畸形分类从形态学向遗传学发展的新趋势,回顾了与mTOR通路改变相关的脑部异常的神经影像学表现。这种方法有助于加深对异常脑发育的理解,并实现精确诊断以及可能针对mTOR通路功能进行调控的靶向治疗。

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