肝脏特异性细胞外基质实现高保真患者来源的肝癌异种移植模型。

IF 9.6 Q1 ENGINEERING, BIOMEDICAL
Biomaterials research Pub Date : 2025-08-21 eCollection Date: 2025-01-01 DOI:10.34133/bmr.0242
Su Kyeom Kim, Jungho Bae, Mi Jeong Lee, Dai Hoon Han, Seung-Woo Cho
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引用次数: 0

摘要

患者源性肿瘤异种移植(PDX)模型由于能够捕捉患者特异性肿瘤异质性和临床行为而成为肿瘤学研究的有力工具。然而,通常用于生成PDX模型的来自小鼠肿瘤的传统基质存在诸如缺乏组织特异性、高生产成本和批量质量不一致等关键限制。作为回应,我们的研究调查了脱细胞肝细胞外基质(liver ECM)作为更准确地概括天然肝脏微环境的仿生替代品的使用。我们证明,肝脏ECM富含肝脏特异性生化线索,能够在皮下和原位PDX模型中实现患者源性肝癌细胞的稳健植入、生长和转移。值得注意的是,与使用传统基质形成的模型相比,肝脏ECM建立的原位模型表现出增强的转移行为,特别是向肠道的转移。转录组学分析进一步揭示了与癌症进展相关的关键通路的激活,包括血管生成、细胞凋亡、迁移和炎症。此外,我们将肝脏ECM的应用扩展到患者来源的类器官异种移植,其显示出改善的致瘤性并保留了原始肿瘤组织的病理生理特征。总之,这些发现强调了肝脏特异性ECM作为生成生理相关PDX模型和增强临床前癌症研究的转化相关性的优越平台的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liver-Specific Extracellular Matrix Enables High-Fidelity Patient-Derived Hepatocellular Carcinoma Xenograft Models.

Patient-derived tumor xenograft (PDX) models serve as powerful tools in oncology research owing to their ability to capture patient-specific tumor heterogeneity and clinical behavior. However, the conventional matrices derived from murine tumors, commonly used to generate PDX models, suffer from key limitations such as lack of tissue specificity, high production costs, and inconsistent batch quality. In response, our study investigates the use of decellularized liver extracellular matrix (Liver ECM) as a biomimetic alternative that more accurately recapitulates the native hepatic microenvironment. We demonstrate that Liver ECM, enriched with liver-specific biochemical cues, enables robust engraftment, growth, and metastasis of patient-derived hepatocellular carcinoma cells in both subcutaneous and orthotopic PDX models. Notably, orthotopic models established with Liver ECM exhibited enhanced metastatic behavior, particularly to the intestine, compared to those formed using conventional matrices. Transcriptomic analysis further revealed activation of key pathways associated with cancer progression, including angiogenesis, apoptosis, migration, and inflammation. Additionally, we extend the application of Liver ECM to patient-derived organoid xenografts, which showed improved tumorigenicity and retained pathophysiological features of the original tumor tissue. Together, these findings underscore the potential of liver-specific ECM as a superior platform for generating physiologically relevant PDX models and enhancing the translational relevance of preclinical cancer studies.

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