PO.TB10.12 · 肿瘤生物学
模拟ECM的可调控三维水凝胶用于构建尤因肉瘤模型
ECM mimicking tunable 3D hydrogels to model Ewing sarcoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
细胞外基质(ECM)作为肿瘤进展和转移的关键调控因子日益受到重视。尽管ECM对肿瘤命运具有强烈影响,但其在实体瘤微环境中的特征仍描述不足。尤因肉瘤(EwS)是一种侵袭性的骨与软组织恶性肿瘤,好发于青少年和青年,其进展可能特别依赖于ECM介导的信号。在此,我们提出一种合成的三维(3D)水凝胶模型,旨在重现EwS肿瘤微环境的关键生化特征。我们以聚乙二醇(PEG)为骨架,用ECM来源的整合素结合肽对其进行功能化修饰,构建了包含来自胶原蛋白I(collagen I)、纤连蛋白(fibronectin)以及肿瘤相关糖蛋白tenascin-C(TNC)基序的水凝胶。TNC来源肽在EwS肿瘤中呈异质性分布,将其引入平台可实现对ECM异质性的可控调节。包裹于这些水凝胶中的CHLA10人EwS细胞表现出肽依赖性的增殖,以及ECM相关基因和基质重塑基因表达的改变,凸显了包括TNC在内的ECM蛋白在影响细胞状态中的作用。重要的是,这些水凝胶采用sortase可降解交联剂设计,能够温和且生物正交地回收活细胞用于转录组学和功能分析——这相较于传统的生物材料系统是一项进步。这一模块化的3D系统提供了一个生理相关、无需动物的模型,用于研究肉瘤与ECM的相互作用,并识别ECM调控的肿瘤适应和转移机制。我们的研究结果表明,ECM异质性(尤其是TNC富集)可能是EwS进展的关键驱动因素,并凸显了生物材料平台在揭示肿瘤微环境中治疗靶点方面的潜力。
查看英文原文 English abstract
The extracellular matrix (ECM) is increasingly recognized as a critical regulator of tumor progression and metastasis. Despite its strong influence on tumor fate, the ECM remains poorly characterized within the solid tumor microenvironment. Ewing sarcoma (EwS), an aggressive bone and soft tissue malignancy affecting adolescents and young adults, may be particularly dependent on ECM-mediated cues for progression. Here, we present a synthetic three-dimensional (3D) hydrogel model designed to recapitulate key biochemical features of the EwS tumor microenvironment. Using a polyethylene glycol (PEG) backbone functionalized with ECM-derived integrin-binding peptides, we engineered hydrogels incorporating motifs from collagen I, fibronectin, and the tumor-associated glycoprotein tenascin-C (TNC). Incorporation of TNC-derived peptides, which are heterogeneously distributed in EwS tumors, enabled controlled ECM heterogeneity within the platform. CHLA10 human EwS cells encapsulated in these hydrogels exhibited peptide-dependent proliferation and altered expression of ECM-related and matrix-remodeling genes, highlighting the role of ECM proteins including TNC in influencing cell state. Importantly, the hydrogels were designed with sortase-degradable crosslinkers, enabling gentle and bioorthogonal retrieval of viable cells for transcriptomic and functional analyses-an advance over traditional biomaterial-based systems. This modular 3D system provides a physiologically relevant, animal-free model to study sarcoma-ECM interactions and identify ECM-regulated mechanisms of tumor adaptation and metastasis. Our findings demonstrate that ECM heterogeneity, particularly TNC enrichment, may be a key driver of EwS progression and highlight the potential of biomaterial platforms in uncovering therapeutic targets within the tumor microenvironment.
利益披露 Disclosure
A. Jha, None..
C. DeForest, None..
E. Lawlor, None.