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在一种针对H3K27M改变的弥漫性内在脑桥胶质瘤的三维疾病模型中,多细胞肿瘤-基质相互作用概括了治疗反应和人类致癌信号传导的各个方面。

Multicellular tumor-stromal interactions recapitulate aspects of therapeutic response and human oncogenic signaling in a 3D disease model for H3K27M-altered DIPG.

作者信息

Upreti Meenakshi, Petrosyan Astgik, Thornton Matthew E, Hovsepyan Anahit, Fernandez G Esteban, Koos David S, Byrum Stephanie D, Mackintosh Samuel G, Al-Husseini Jacob K, Porras Tania, Ha Joseph, Tackett Alan J, Zhang Miqin, Johal Malkiat S, Erdreich-Epstein Anat, Durham Susan, Krieger Mark D, Margol Ashley S, Grubbs Brendan H, Chambers Timothy C, Asgharzadeh Shahab, Moats Rex A, Chiarelli Peter A

机构信息

Division of Neurosurgery, Children's Hospital Los Angeles, Los Angeles, CA, USA.

The Saban Research Institute, Children's Hospital Los Angeles, Los Angeles, CA, USA.

出版信息

Oncogene. 2025 Sep 6. doi: 10.1038/s41388-025-03533-7.

Abstract

It has become evident from decades of clinical trials that multimodal therapeutic approaches with focus on cell intrinsic and microenvironmental cues are needed to improve understanding and treat the rare, inoperable, and ultimately fatal diffuse intrinsic pontine glioma (DIPG), now categorized as a diffuse midline glioma. In this study we report the development and characterization of an in vitro system utilizing 3D Tumor Tissue Analogs (TTA), designed to replicate the intricate DIPG microenvironment. The innate ability of fluorescently labeled human brain endothelial cells, microglia, and patient-derived DIPG cell lines to self-assemble has been exploited to generate multicellular 3D TTAs that mimic tissue-like microstructures, enabling an in- depth exploration of the spatio-temporal dynamics between neoplastic and stromal cells. The 3D-TTA model recapitulates clinical patterns of DIPG growth, evidenced by resistance to chemotherapy, HDAC and proteasome inhibitors, as well as sensitization to the antibody-activated innate immune microenvironment including complement proteins and surrounding microglia. Multimodal fluorescence imaging platforms integrated with high-throughput omics revealed that alterations in tumor cell motility and growth in the 3D-TTA model compared to tumor cell only spheroids correlated with specific transcriptomic and proteomic changes. STAT3, ITGA5, LGALS1, SOD2, MVP, and CLIC1, associated with microenvironment signaling, DNA replication, and immune regulation, were identified as potential novel targets in the 3D model. The results indicate that the 3D TTA platform developed here represents a powerful tool for preclinical studies, paving the way for identification/validation of tissue specific biomarkers and novel drug targets, thus advancing disease management strategies for DIPG in children.

摘要

数十年来的临床试验已表明,需要采用聚焦于细胞内在和微环境线索的多模式治疗方法,以增进对罕见、无法手术且最终致命的弥漫性脑桥内生型胶质瘤(DIPG,现归类为弥漫性中线胶质瘤)的了解并进行治疗。在本研究中,我们报告了一种利用3D肿瘤组织模拟物(TTA)的体外系统的开发和特性,该系统旨在复制复杂的DIPG微环境。已利用荧光标记的人脑内皮细胞、小胶质细胞和患者来源的DIPG细胞系的自组装先天能力,生成模仿组织样微观结构的多细胞3D TTA,从而能够深入探索肿瘤细胞与基质细胞之间的时空动态。3D-TTA模型概括了DIPG生长的临床模式,表现为对化疗、HDAC和蛋白酶体抑制剂有抗性,以及对包括补体蛋白和周围小胶质细胞在内的抗体激活的先天免疫微环境敏感。与高通量组学相结合的多模式荧光成像平台显示,与仅肿瘤细胞球体相比,3D-TTA模型中肿瘤细胞运动性和生长的改变与特定的转录组和蛋白质组变化相关。与微环境信号传导、DNA复制和免疫调节相关的STAT3、ITGA5、LGALS1、SOD2、MVP和CLIC1被确定为3D模型中的潜在新靶点。结果表明,此处开发的3D TTA平台是临床前研究的有力工具,为鉴定/验证组织特异性生物标志物和新的药物靶点铺平了道路,从而推进了儿童DIPG的疾病管理策略。

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