Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy
Pineoblastoma is a rare pediatric cancer. Here, the authors present inactivation of Rb plus p53 via a WAP-Cre transgene induces metastatic pineoblastoma resembling human disease, and using this model, predict tricyclic antidepressants as a potential therapy for pineoblastoma, supported by their pre-...
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Nature Portfolio
2020
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oai:doaj.org-article:8d8533d286084918a97e2d6644e11fc12021-12-02T15:37:14ZModeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy10.1038/s41467-020-15585-22041-1723https://doaj.org/article/8d8533d286084918a97e2d6644e11fc12020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15585-2https://doaj.org/toc/2041-1723Pineoblastoma is a rare pediatric cancer. Here, the authors present inactivation of Rb plus p53 via a WAP-Cre transgene induces metastatic pineoblastoma resembling human disease, and using this model, predict tricyclic antidepressants as a potential therapy for pineoblastoma, supported by their pre-clinical model.Philip E. D. ChungDeena M. A. GendooRonak Ghanbari-AzarnierJeff C. LiuZhe JiangJennifer TsuiDong-Yu WangXiao XiaoBryan LiAdrian DubucDavid ShihMarc RemkeBen HoLivia GarziaYaacov Ben-DavidSeok-Gu KangSidney CroulBenjamin Haibe-KainsAnnie HuangMichael D. TaylorEldad ZacksenhausNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-19 (2020) |
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Science Q Philip E. D. Chung Deena M. A. Gendoo Ronak Ghanbari-Azarnier Jeff C. Liu Zhe Jiang Jennifer Tsui Dong-Yu Wang Xiao Xiao Bryan Li Adrian Dubuc David Shih Marc Remke Ben Ho Livia Garzia Yaacov Ben-David Seok-Gu Kang Sidney Croul Benjamin Haibe-Kains Annie Huang Michael D. Taylor Eldad Zacksenhaus Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
description |
Pineoblastoma is a rare pediatric cancer. Here, the authors present inactivation of Rb plus p53 via a WAP-Cre transgene induces metastatic pineoblastoma resembling human disease, and using this model, predict tricyclic antidepressants as a potential therapy for pineoblastoma, supported by their pre-clinical model. |
format |
article |
author |
Philip E. D. Chung Deena M. A. Gendoo Ronak Ghanbari-Azarnier Jeff C. Liu Zhe Jiang Jennifer Tsui Dong-Yu Wang Xiao Xiao Bryan Li Adrian Dubuc David Shih Marc Remke Ben Ho Livia Garzia Yaacov Ben-David Seok-Gu Kang Sidney Croul Benjamin Haibe-Kains Annie Huang Michael D. Taylor Eldad Zacksenhaus |
author_facet |
Philip E. D. Chung Deena M. A. Gendoo Ronak Ghanbari-Azarnier Jeff C. Liu Zhe Jiang Jennifer Tsui Dong-Yu Wang Xiao Xiao Bryan Li Adrian Dubuc David Shih Marc Remke Ben Ho Livia Garzia Yaacov Ben-David Seok-Gu Kang Sidney Croul Benjamin Haibe-Kains Annie Huang Michael D. Taylor Eldad Zacksenhaus |
author_sort |
Philip E. D. Chung |
title |
Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
title_short |
Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
title_full |
Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
title_fullStr |
Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
title_full_unstemmed |
Modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
title_sort |
modeling germline mutations in pineoblastoma uncovers lysosome disruption-based therapy |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/8d8533d286084918a97e2d6644e11fc1 |
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