Suppr超能文献

体细胞基因传递忠实地概括了高危肉瘤的分子谱。

Somatic gene delivery faithfully recapitulates a molecular spectrum of high-risk sarcomas.

作者信息

Imle Roland, Blösel Daniel, Kommoss Felix K F, Placke Sara, Stutheit-Zhao Eric, Blume Christina, Lupar Dmitry, Schmitt Lukas, Winter Claudia, Wagner Lena, von Eicke Malte, Walzer Hannah, Förderer Julia, Laier Stephanie, Hertwig Michael, Peterziel Heike, Oehme Ina, Scheuerman Sophia, Seitz Christian M, Geyer Florian H, Cidre-Aranaz Florencia, Grünewald Thomas G P, Vokuhl Christian, Chudasama Priya, Scholl Claudia, Schmidt Claudia, Günther Patrick, Sill Martin, Jones Kevin B, Pfister Stefan M, Autry Robert J, Banito Ana

机构信息

Soft-tissue sarcoma research group, German Cancer Research Center (DKFZ), Heidelberg, Germany.

Hopp Children's Cancer Center Heidelberg (KiTZ), Heidelberg, Germany.

出版信息

Nat Commun. 2025 Jun 16;16(1):5283. doi: 10.1038/s41467-025-60519-5.

Abstract

A major challenge hampering therapeutic advancements for high-risk sarcoma patients is the broad spectrum of molecularly distinct sarcoma types and the corresponding lack of suitable model systems. Here we describe the development of a genetically-controlled, yet versatile mouse modeling platform allowing delivery of different genetic lesions by muscle electroporation (EPO) in wildtype mice. This EPO-GEMM (EPO-based genetically engineered mouse model) platform allows the generation of ten genetically distinct sarcomas on an isogenic background, including the first model of ETV6::NTRK3-driven sarcoma. Comprehensive histological and molecular profiling reveals that this mouse sarcoma cohort recapitulates a spectrum of molecularly diverse sarcomas with gene fusions acting as major determinants of sarcoma biology. Integrative cross-species analyses show faithful recapitulation of human sarcoma subtypes, including expression of relevant immunotherapy targets. Comparison of syngeneic allografting methods enables reliable preservation and scalability of sarcoma-EPO-GEMMs for preclinical treatment trials, such as NTRK inhibitor therapy in an immunocompetent background.

摘要

阻碍高危肉瘤患者治疗进展的一个主要挑战是分子特征各异的肉瘤类型繁多,以及相应地缺乏合适的模型系统。在此,我们描述了一种基因可控但用途广泛的小鼠建模平台的开发,该平台可通过肌肉电穿孔(EPO)在野生型小鼠中传递不同的基因损伤。这种EPO-GEMM(基于EPO的基因工程小鼠模型)平台能够在同基因背景下生成十种基因不同的肉瘤,包括首个ETV6::NTRK3驱动的肉瘤模型。全面的组织学和分子分析表明,这个小鼠肉瘤队列概括了一系列分子多样的肉瘤,基因融合是肉瘤生物学的主要决定因素。综合跨物种分析显示,该模型忠实地再现了人类肉瘤亚型,包括相关免疫治疗靶点的表达。对同基因移植方法的比较能够可靠地保存肉瘤-EPO-GEMM并实现其可扩展性,用于临床前治疗试验,如在免疫健全背景下进行NTRK抑制剂治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ed1/12170903/08661b43ec79/41467_2025_60519_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验