Amani Vladimir, Donson Andrew M, Lummus Seth C, Prince Eric W, Griesinger Andrea M, Witt Davis A, Hankinson Todd C, Handler Michael H, Dorris Kathleen, Vibhakar Rajeev, Foreman Nicholas K, Hoffman Lindsey M
Morgan Adams Foundation Pediatric Brain Tumor Research Program; Department of Pathology; and Department of Neurosurgery, University of Colorado Anschutz Medical Campus; and Children's Hospital Colorado, Aurora, Colorado.
J Neuropathol Exp Neurol. 2017 Jul 1;76(7):595-604. doi: 10.1093/jnen/nlx040.
Ependymoma (EPN) is a common brain tumor of childhood that, despite standard surgery and radiation therapy, has a relapse rate of 50%. Clinical trials have been unsuccessful in improving outcome by addition of chemotherapy, and identification of novel therapeutics has been hampered by a lack of in vitro and in vivo models. We describe 2 unique EPN cell lines (811 and 928) derived from recurrent intracranial metastases. Both cell lines harbor the high-risk chromosome 1q gain (1q+) and a derivative chromosome 6, and both are classified as molecular group A according to transcriptomic analysis. Transcriptional enrichment of extracellular matrix-related genes was a common signature of corresponding primary tumors and cell lines in both monolayer and 3D formats. EPN cell lines, when cultured in 3D format, clustered closer to the primary tumors with better fidelity of EPN-specific transcripts than when grown as a monolayer. Additionally, 3D culture revealed ependymal rosette formation and cilia-related ontologies, similar to in situ tumors. Our data confirm the validity of the 811 and 928 cell lines as representative models of intracranial, posterior fossa 1q+ EPN, which holds potential to advance translational science for patients affected by this tumor.
室管膜瘤(EPN)是一种常见的儿童脑肿瘤,尽管采用了标准的手术和放射治疗,但其复发率仍为50%。通过添加化疗来改善预后的临床试验并未成功,并且由于缺乏体外和体内模型,新型治疗方法的鉴定受到了阻碍。我们描述了两种源自复发性颅内转移瘤的独特EPN细胞系(811和928)。这两种细胞系都具有高危的1号染色体增益(1q+)和一条衍生的6号染色体,并且根据转录组分析均被归类为分子A组。细胞外基质相关基因的转录富集是相应原发性肿瘤和细胞系在单层和三维(3D)形式下的共同特征。EPN细胞系在以3D形式培养时,比单层生长时更接近原发性肿瘤聚集,且EPN特异性转录本的保真度更高。此外,3D培养显示出室管膜玫瑰花结形成和与纤毛相关的本体,类似于原位肿瘤。我们的数据证实了811和928细胞系作为颅内后颅窝1q+ EPN代表性模型的有效性,这对于推进受该肿瘤影响患者的转化科学具有潜力。