Single-cell MultiOmics and spatial transcriptomics demonstrate neuroblastoma developmental plasticity

Publication date

2025-09-08

Authors

Xu, Yunyun
Lou, Daohua
Chen, Ping
Li, Gang
Usoskin, Dimtry
Pan, Jian
Li, Fang
Huang, Shungen
Hess, Caroline
Tang, Ruze

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Supervisors

Document Type

Article

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cc_by

Abstract

Neuroblastoma, the most prevalent extracranial pediatric solid tumor, arises from neural crest progeny cells. It exhibits substantial developmental plasticity and intratumoral heterogeneity, leading to survival rates below 50% in high-risk cases. The regulatory mechanisms underlying this plasticity remain largely elusive. In this integrative study, we used single-cell MultiOmics from a mouse spontaneous tumor model and spatial transcriptomics from human patient samples to dissect the transcriptional and epigenetic landscapes that govern developmental states in neuroblastoma. We identified developmental intermediate states in high-risk neuroblastomas critical for malignant transitions and uncovered extensive epigenetic priming with latent capacity for diverse state transitions. Furthermore, we mapped enhancer gene regulatory networks (eGRNs) and tumor microenvironments sustaining these aggressive states. State transitions and malignancy could be interfered with by targeting transcription factors controlling the eGRNs.

Keywords

development, developmental plasticity, epigenetic priming, gene regulatory network, intermediate state, intratumoral heterogeneity, microenvironment, neuroblastoma, single-cell MultiOmics, spatial transcriptomics, Molecular Biology, General Biochemistry,Genetics and Molecular Biology, Developmental Biology, Cell Biology

Citation

Xu, Y, Lou, D, Chen, P, Li, G, Usoskin, D, Pan, J, Li, F, Huang, S, Hess, C, Tang, R, Hu, X, Yu, J, Arceo, M, de Krijger, R R, Tischler, A S, Schlisio, S, Ernfors, P, Hu, Y & Wang, J 2025, 'Single-cell MultiOmics and spatial transcriptomics demonstrate neuroblastoma developmental plasticity', Developmental Cell, vol. 60, no. 17, pp. 2248-2263.e11. https://doi.org/10.1016/j.devcel.2025.04.013