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Molecular neuropathology of epilepsy-associated glioneuronal malformations.

机译:癫痫相关神经胶质神经元畸形的分子神经病理学。

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摘要

Glioneuronal malformations (malformations of cortical development [MCD]) include focal cortical dysplasias (FCD) as well as highly differentiated glioneuronal tumors (i.e. gangliogliomas) and constitute frequent findings in patients with pharmacoresistent focal epilepsies. Tailored resection strategies evolved as promising treatment options and allow a systematic neuropathologic and molecular biologic examination of the epileptogenic area in these patients. The histopathologic appearance and immunophenotype of glioneuronal lesions are, however, characterized by numerous similarities and suggest impaired proliferation, migration, and differentiation of neural precursor cells to play a pathogenetic role. Recent studies point toward molecular alterations within a variety of genes and pathways involved in development of the central nervous system, neuronal growth, and maturation. Compromised signaling within insulin- or reelin-transduction cascades are common findings and were associated with specific MCD entities. Unraveling pathogenic mechanisms may advance refined classification systems for epilepsy-associated malformations and open new avenues for the development of targeted treatment strategies in pharmacoresistent focal epilepsies associated with cortical malformations.
机译:胶质神经元畸形(皮质发育畸形[MCD])包括局灶性皮质发育异常(FCD)以及高度分化的神经胶质神经瘤(即神经节神经胶质瘤),并且在具有药理学意义的局灶性癫痫患者中经常出现。量身定制的切除策略演变为有前途的治疗选择,并允许对这些患者的致痫区域进行系统的神经病理学和分子生物学检查。然而,神经胶质神经元病变的组织病理学外观和免疫表型具有许多相似性,并提示神经前体细胞的增殖,迁移和分化受损,从而发挥致病作用。最近的研究指出,涉及中枢神经系统发育,神经元生长和成熟的各种基因和途径中的分子改变。胰岛素或瑞林转导级联反应中受损的信号传导是常见发现,并与特定的MCD实体相关。病原性机制的探索可能会为癫痫相关的畸形改进精细的分类系统,并为与皮质畸形相关的药物耐受性局灶性癫痫的靶向治疗策略的发展开辟新途径。

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