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A biomimetic 3D model of hypoxia-driven cancer progression

机译:缺氧导致癌症进展的仿生3D模型

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摘要

The fate of tumors depends both on the cancer cells’ intrinsic characteristics and on the environmental conditions where the tumors reside and grow. Engineered in vitro models have led to significant advances in cancer research, allowing the investigation of cells in physiological environments and the study of disease mechanisms and processes with enhanced relevance. Here we present a biomimetic cancer model based on a collagen matrix synthesized through a biologically inspired process. We compared in this environment the responses of two breast tumor lineages characterized by different molecular patterns and opposite clinical behaviors: MCF-7 that belong to the luminal A subtype connected to an indolent course, and basal-like MDA-MB-231 connected to high-grade and aggressive disease. Cancer cells in the biomimetic matrix recreate a hypoxic environment that affects their growth dynamics and phenotypic features. Hypoxia induces apoptosis and the selection of aggressive cells that acquire expression signatures associated with glycolysis, angiogenesis, cell-matrix interaction, epithelial to mesenchymal transition and metastatic ability. In response to hypoxia MDA-MB-231 migrate on the collagen fibrils and undergo cellular senescence, while MCF-7 do not exhibit these behaviors. Our biomimetic model mimics the evolution of tumors with different grade of aggressiveness fostered by a hypoxic niche and provides a relevant technology to dissect the events involved in cancer progression.
机译:肿瘤的命运既取决于癌细胞的固有特性,也取决于肿瘤所处和生长的环境条件。工程化的体外模型已导致癌症研究的重大进展,从而可以研究生理环境中的细胞以及研究与疾病相关的疾病机制和过程。在这里,我们提出了一种仿生癌症模型,该模型基于通过生物启发过程合成的胶原蛋白基质。我们在这种环境下比较了两种乳腺癌肿瘤谱系的反应,这些谱系的特征在于分子模式不同和临床行为相反:MCF-7属于腔A型,连接于惰性进程,基底样MDA-MB-231连接于高瘤程。级和侵略性疾病。仿生基质中的癌细胞会重建低氧环境,从而影响其生长动力和表型特征。缺氧诱导凋亡和选择侵袭性细胞,这些侵袭性细胞获得与糖酵解,血管生成,细胞-基质相互作用,上皮到间充质转化和转移能力相关的表达特征。响应缺氧,MDA-MB-231在胶原蛋白原纤维上迁移并经历细胞衰老,而MCF-7没有表现出这些行为。我们的仿生模型模拟了由低氧环境促进的具有不同侵略性的肿瘤的进化,并提供了一种相关技术来剖析与癌症进展有关的事件。

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