High cellular plasticity state of medulloblastoma local recurrence and distant dissemination.

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Tác giả: Xuan Chen, Craig Daniels, Kaiwen Deng, Zejun Duan, Zhaoyang Feng, Yu Gao, Chunyu Gu, Dongming Han, Tao Jiang, Yifei Jiang, Wei Jin, Chunde Li, Jiankang Li, Shuaicheng Li, Wenxing Li, Yanong Li, Fei Liu, Hailong Liu, Yong-Qiang Liu, Zijia Liu, Mingxu Ma, Xueling Qi, Xiaoguang Qiu, Olivier Saulnier, Yanfeng Shi, Yu Su, Youliang Sun, Michael D Taylor, Yu Tian, Dongyang Wang, Wei Wang, Zeyuan John Wang, Ziwei Wang, Tao Yang, Chunjiang Yu, Xinguang Yu, Hongyu Yuan, Jiao Zhang, Jing Zhang, Junping Zhang, Mingshan Zhang, Yahui Zhao, Zitong Zhao

Ngôn ngữ: eng

Ký hiệu phân loại: 956.5 *East central Turkey

Thông tin xuất bản: United States : Cell reports. Medicine , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 678705

Medulloblastoma (MB), a heterogeneous pediatric brain tumor, poses challenges in the treatment of tumor recurrence and dissemination. To characterize cellular diversity and genetic features, we comprehensively analyzed single-cell/nucleus RNA sequencing (sc/snRNA-seq), single-nucleus assay for transposase-accessible chromatin sequencing (snATAC-seq), and spatial transcriptomics profiles and identified distinct cellular populations in SHH (sonic hedgehog) and Group_3 subgroups, with varying proportions in local recurrence or dissemination. Local recurrence showed higher cycling tumor cell enrichment, whereas disseminated lesions had a relatively notable presence of differentiated subsets. Chromosomal alteration evaluation revealed distinct genetic subclones during MB progression, such as chr7q gain and chr11 loss in Group_3 disseminations. A subpopulation termed "high cellular plasticity (HCP)" emerged during MB progression and was associated with increased dividing potential and chromatin accessibility, contributing to recurrence. Inhibiting HCP-associated markers, like protein tyrosine phosphatase receptor type Z1 (PTPRZ1), efficiently suppressed MB progression in preclinical models. These findings address critical gaps in understanding the cellular diversity, chromosomal alterations, and biological dynamics of recurrent MB, offering potential therapeutic insights.
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