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通过降解原发性乳腺肿瘤球体中的内源性细胞外基质提高治疗效果。

Enhancing therapeutic efficacy through degradation of endogenous extracellular matrix in primary breast tumor spheroids.

作者信息

Lo Cicero Alessandra, Campora Simona, Lo Buglio Gabriele, Cinà Paolo, Lo Pinto Margot, Scilabra Simone Dario, Ghersi Giulio

机构信息

Department of Biological, Chemical and Pharmaceutical Sciences and Technologies (STEBICEF), University of Palermo, Italy.

Department of Biomedical Engineering Bioscience Center of the University of Cincinnati, OH, USA.

出版信息

FEBS J. 2025 Mar 17. doi: 10.1111/febs.70069.

Abstract

Solid tumors have a complex extracellular matrix (ECM) that significantly affects tumor behavior and response to therapy. Understanding the ECM's role is crucial for advancing cancer research and treatment. This study established an in vitro model using primary cells isolated from a rat breast tumor to generate three-dimensional spheroids. Monolayer cells and spheroid cultures exhibited different protein expression patterns, with primary tumor spheroids presenting an increased level of ECM-related proteins and a more complex extracellular environment. Furthermore, spheroids produce endogenous collagen type I matrix, which is the main component of the tumoral ECM. This matrix is arranged predominantly around the 3D structure, mimicking the conditions of solid tumors. Treatments with recombinant collagenases class II (acting on the linear collagen region) and class I (acting on the 3D-helix region) completely degrade collagen within the spheroid structure. Collagenase pretreatment enhances the accessibility of the anticancer drug doxorubicin to penetrate the core of spheroids and sensitize them to doxorubicin-induced cytotoxicity. Our findings highlight the importance of overcoming drug resistance in breast cancer by targeting the ECM and proposing a novel strategy for improving therapeutic outcomes in solid tumors. By employing a three-dimensional spheroid model, with an endogenous ECM, we can offer more relevant insights into tumor biology and treatment responses.

摘要

实体瘤具有复杂的细胞外基质(ECM),其显著影响肿瘤行为和对治疗的反应。了解ECM的作用对于推进癌症研究和治疗至关重要。本研究建立了一种体外模型,使用从大鼠乳腺肿瘤分离的原代细胞生成三维球体。单层细胞和球体培养物表现出不同的蛋白质表达模式,原发性肿瘤球体呈现出更高水平的ECM相关蛋白和更复杂的细胞外环境。此外,球体产生内源性I型胶原基质,这是肿瘤ECM的主要成分。这种基质主要围绕三维结构排列,模拟实体瘤的情况。用重组II类胶原酶(作用于线性胶原区域)和I类胶原酶(作用于三维螺旋区域)处理可完全降解球体结构内的胶原。胶原酶预处理增强了抗癌药物阿霉素穿透球体核心的可及性,并使它们对阿霉素诱导的细胞毒性敏感。我们的研究结果强调了通过靶向ECM克服乳腺癌耐药性的重要性,并提出了一种改善实体瘤治疗效果的新策略。通过采用具有内源性ECM的三维球体模型,我们可以为肿瘤生物学和治疗反应提供更相关的见解。

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