Dottermusch Matthias, Sumisławski Piotr, Krevet Julia, Middelkamp Maximilian, Voß Hannah, Siebels Bente, Bartsch Harald, Sotlar Karl, Meyer Peter, Frank Stephan, Korshunov Andrey, Glatzel Markus, Schüller Ulrich, Neumann Julia E
Center for Molecular Neurobiology (ZMNH), University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Institute of Neuropathology, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Oncogenesis. 2021 Nov 16;10(11):78. doi: 10.1038/s41389-021-00369-0.
Intraocular medulloepithelioma (IO-MEPL) is a rare embryonal ocular neoplasm, prevalently occurring in children. IO-MEPLs share histomorphological features with CNS embryonal tumors with multilayered rosettes (ETMRs), referred to as intracranial medulloepitheliomas. While Sonic hedgehog (SHH) and WNT signaling pathways are crucial for ETMR pathogenesis, the impact of these pathways on human IO-MEPL development is unclear. Gene expression analyses of human embryonal tumor samples revealed similar gene expression patterns and significant overrepresentation of SHH and WNT target genes in both IO-MEPL and ETMR. In order to unravel the function of Shh and Wnt signaling for IO-MEPL pathogenesis in vivo, both pathways were activated in retinal precursor cells in a time point specific manner. Shh and Wnt co-activation in early Sox2- or Rax-expressing precursor cells resulted in infiltrative ocular lesions that displayed extraretinal expansion. Histomorphological, immunohistochemical, and molecular features showed a strong concordance with human IO-MEPL. We demonstrate a relevant role of WNT and SHH signaling in IO-MEPL and report the first mouse model to generate tumor-like lesions with features of IO-MEPL. The presented data may be fundamental for comprehending IO-MEPL initiation and developing targeted therapeutic approaches.
眼内髓上皮瘤(IO-MEPL)是一种罕见的胚胎性眼肿瘤,多见于儿童。IO-MEPL与具有多层玫瑰花结的中枢神经系统胚胎肿瘤(ETMR)具有共同的组织形态学特征,后者被称为颅内髓上皮瘤。虽然 Sonic hedgehog(SHH)和WNT信号通路对ETMR发病机制至关重要,但这些通路对人类IO-MEPL发育的影响尚不清楚。对人类胚胎肿瘤样本的基因表达分析显示,IO-MEPL和ETMR具有相似的基因表达模式,且SHH和WNT靶基因显著富集。为了在体内揭示Shh和Wnt信号通路对IO-MEPL发病机制的作用,在视网膜前体细胞中以时间点特异性方式激活这两条信号通路。在早期表达Sox2或Rax的前体细胞中同时激活Shh和Wnt,导致浸润性眼部病变,并表现出视网膜外扩展。组织形态学、免疫组化和分子特征与人类IO-MEPL高度一致。我们证明了WNT和SHH信号通路在IO-MEPL中的相关作用,并报告了首个生成具有IO-MEPL特征的肿瘤样病变的小鼠模型。所呈现的数据可能是理解IO-MEPL发病机制和开发靶向治疗方法的基础。