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Human Retinal Organoid Modeling Defines Developmental Window and Therapeutic Vulnerabilities in MYCN-Amplified Retinoblastoma

Authors
 Park, Jinkyu  ;  Cui, Gang  ;  Hong, Jiyun  ;  Jeong, Han  ;  Han, Minseok  ;  Choi, Min Seok  ;  Lim, Jeong Ah  ;  Han, Sanguk  ;  Lee, Christopher Seungkyu  ;  Kim, Min  ;  Kim, Sangwoo  ;  Lee, Junwon  ;  Byeon, Suk Ho 
Citation
 INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, Vol.26(17), 2025-09 
Article Number
 8675 
Journal Title
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
ISSN
 1661-6596 
Issue Date
2025-09
MeSH
Animals ; Cell Line, Tumor ; Gene Amplification* ; Humans ; Mice ; N-Myc Proto-Oncogene Protein* / genetics ; N-Myc Proto-Oncogene Protein* / metabolism ; Organoids* / metabolism ; Organoids* / pathology ; Retina* / metabolism ; Retina* / pathology ; Retinal Neoplasms* / genetics ; Retinal Neoplasms* / metabolism ; Retinal Neoplasms* / pathology ; Retinoblastoma* / drug therapy ; Retinoblastoma* / genetics ; Retinoblastoma* / metabolism ; Retinoblastoma* / pathology ; Signal Transduction
Keywords
retinoblastoma ; MYCN amplification ; retinal organoids ; tumorigenesis ; retinal progenitor ; precision medicine
Abstract
MYCN amplification without concurrent RB1 mutations characterizes a rare yet highly aggressive subtype of retinoblastoma; however, its precise developmental origins and therapeutic vulnerabilities remain incompletely understood. Here, we modeled this subtype by lentiviral-mediated MYCN overexpression in human pluripotent stem cell-derived retinal organoids, revealing a discrete developmental window (days 70-120) during which retinal progenitors showed heightened susceptibility to transformation. Tumors arising in this period exhibited robust proliferation, expressed SOX2, and lacked CRX, consistent with origin from primitive retinal progenitors. MYCN-overexpressing organoids generated stable cell lines that reproducibly gave rise to MYCN-driven tumors when xenografted into immunodeficient mice. Transcriptomic profiling demonstrated that MYCN-overexpressing organoids closely recapitulated molecular features of patient-derived MYCN-amplified retinoblastomas, particularly through activation of MYC/E2F and mTORC1 signaling pathways. Pharmacological screening further identified distinct therapeutic vulnerabilities, demonstrating distinct subtype-specific sensitivity of MYCN-driven cells to transcriptional inhibitors (THZ1, Flavopiridol) and the cell-cycle inhibitor Volasertib, indicative of a unique oncogene-addicted state compared to RB1-deficient retinoblastoma cells. Collectively, our study elucidates the developmental and molecular mechanisms underpinning MYCN-driven retinoblastoma, establishes a robust and clinically relevant human retinal organoid platform, and highlights targeted transcriptional inhibition as a promising therapeutic approach for this aggressive pediatric cancer subtype.
Files in This Item:
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DOI
10.3390/ijms26178675
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Ophthalmology (안과학교실) > 1. Journal Papers
1. College of Medicine (의과대학) > Dept. of Biomedical Systems Informatics (의생명시스템정보학교실) > 1. Journal Papers
Yonsei Authors
Kim, Min(김민) ORCID logo https://orcid.org/0000-0003-1873-6959
Kim, Sangwoo(김상우) ORCID logo https://orcid.org/0000-0001-5356-0827
Byeon, Suk Ho(변석호) ORCID logo https://orcid.org/0000-0001-8101-0830
Lee, Christopher Seungkyu(이승규) ORCID logo https://orcid.org/0000-0001-5054-9470
Lee, Jun Won(이준원) ORCID logo https://orcid.org/0000-0003-0543-7132
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/208096
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