整合去细胞化基质的三维自组装平台概括了体内肿瘤表型和异质性。

IF 12.5 1区 医学 Q1 ONCOLOGY
Michael J Buckenmeyer, Elizabeth A Brooks, Madison S Taylor, Ireolu K Orenuga, Liping Yang, Ronald J Holewinski, Thomas J Meyer, Melissa Galloux, Marcial Garmendia-Cedillos, Thomas J Pohida, Thorkell Andresson, Brad St Croix, Matthew T Wolf
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引用次数: 0

摘要

三维(3D)体外细胞培养模型是研究肿瘤微环境(TME)的宝贵工具。然而,分析关键基质元素,如细胞外基质(ECM)的影响仍然是一个挑战。在这里,我们开发了一个无水凝胶的自组装平台,建立了富含ecm的3D“基质球”,以反卷积癌细胞- ecm相互作用。小鼠和人类结直肠癌(CRC)基质球积极加入微克量的脱细胞小肠黏膜下ECM,与传统配方如Matrigel相比,其蛋白质组学模拟CRC肿瘤ECM。在亚胶凝浓度下,溶解的ECM在5天内被CRC细胞组织成细胞间基质样区域,表现出与CRC临床病理相似的形态。基质球具有与恶性肿瘤、脂质代谢和免疫调节相关的ecm依赖性转录和细胞因子谱。用scRNA测序对模型进行基准测试表明,与传统的ecm -差球体相比,MatriSpheres与体内肿瘤细胞的相关性增强。这种简单的方法使肿瘤特异性组织形态发生,促进细胞- ecm通信,以提高疾病建模应用的保真度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 3D Self-Assembly Platform Integrating Decellularized Matrix Recapitulates In Vivo Tumor Phenotypes and Heterogeneity.

Three-dimensional (3D) in vitro cell culture models are invaluable tools for investigating the tumor microenvironment. However, analyzing the impact of critical stromal elements, such as extracellular matrix (ECM), remains a challenge. In this study, we developed a hydrogel-free self-assembly platform to establish ECM-rich 3D "MatriSpheres" to deconvolute cancer cell-ECM interactions. Mouse and human colorectal cancer MatriSpheres actively incorporated microgram quantities of decellularized small intestine submucosa ECM, which proteomically mimicked colorectal cancer tumor ECM compared with traditional formulations like Matrigel. Solubilized ECM, at subgelation concentrations, was organized by colorectal cancer cells into intercellular stroma-like regions within 5 days, displaying morphologic similarity to colorectal cancer clinical pathology. MatriSpheres featured ECM-dependent transcriptional and cytokine profiles associated with malignancy, lipid metabolism, and immunoregulation. Model benchmarking with single-cell RNA sequencing demonstrated that MatriSpheres enhanced correlation with in vivo tumor cells over traditional ECM-poor spheroids. This facile approach enables tumor-specific tissue morphogenesis, promoting cell-ECM communication to improve fidelity for disease modeling applications. Significance: MatriSpheres provide a hydrogel-free 3D platform for decoupling the influence of heterogeneous extracellular matrix components on tumor biology and can broadly facilitate high-throughput drug discovery and screening applications. See related commentary by Ernst and De Wever, p. 1568.

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来源期刊
Cancer research
Cancer research 医学-肿瘤学
CiteScore
16.10
自引率
0.90%
发文量
7677
审稿时长
2.5 months
期刊介绍: Cancer Research, published by the American Association for Cancer Research (AACR), is a journal that focuses on impactful original studies, reviews, and opinion pieces relevant to the broad cancer research community. Manuscripts that present conceptual or technological advances leading to insights into cancer biology are particularly sought after. The journal also places emphasis on convergence science, which involves bridging multiple distinct areas of cancer research. With primary subsections including Cancer Biology, Cancer Immunology, Cancer Metabolism and Molecular Mechanisms, Translational Cancer Biology, Cancer Landscapes, and Convergence Science, Cancer Research has a comprehensive scope. It is published twice a month and has one volume per year, with a print ISSN of 0008-5472 and an online ISSN of 1538-7445. Cancer Research is abstracted and/or indexed in various databases and platforms, including BIOSIS Previews (R) Database, MEDLINE, Current Contents/Life Sciences, Current Contents/Clinical Medicine, Science Citation Index, Scopus, and Web of Science.
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