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首页> 外文期刊>Tissue engineering, Part C. Methods >Endosteal and Perivascular Subniches in a 3D Bone Marrow Model for Multiple Myeloma
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Endosteal and Perivascular Subniches in a 3D Bone Marrow Model for Multiple Myeloma

机译:多个骨髓瘤的3D骨髓模型中的内科和血管亚基

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摘要

The bone marrow microenvironment is the preferred location of multiple myeloma, supporting tumor growth and development. It is composed of a collection of interacting subniches, including the endosteal and perivascular niche. Current in vitro models mimic either of these subniches. By developing a model combining both niches, this study aims to further enhance the ability to culture primary myeloma cells in vitro. Also, the dependency of myeloma cells on each niche was studied. A 3D bone marrow model containing two subniches was created using 3D bioprinting technology. We used a bioprintable pasty calcium phosphate cement (CPC) scaffold with seeded osteogenic multipotent mesenchymal stromal cells (O-MSCs) to model the endosteal niche, and Matrigel containing both endothelial progenitor cells (EPCs) and MSCs to model the perivascular niche. Within the model containing one or both of the niches, primary CD138(+) myeloma cells were cultured and analyzed for both survival and proliferation. The 3D bone marrow model with combined subniches significantly increasing the proliferation of CD138(+) myeloma cells compared to both environments separately. The developed model showed an essential role of the perivascular niche over the endosteal niche in supporting myeloma cells. The developed model can be used to study the expansion of primary myeloma cells and their interactions with varying bone marrow subniches.
机译:骨髓微环境是多发性骨髓瘤的优选位置,支持肿瘤生长和发育。它由一系列相互作用的亚基,包括内皮和大脑血管龛。目前的体外模型模仿这些亚基。通过开发组合占卜素的模型,本研究旨在进一步增强体外培养原发性骨髓瘤细胞的能力。此外,研究了骨髓瘤细胞对每个地基对每个地基的依赖性。使用3D BioPlint技术创建包含两个亚基的3D骨髓模型。我们使用了一种生物可禁的牧草磷酸钙水泥(CPC)支架与种子骨质发生的多能的间充质细胞(O-MSCs)来模拟内皮内的Niche和含有内皮祖细胞(EPC)和MSCs的基质胶,以模拟血管外的Niche。在含有一个或两种核性的模型内,培养并分析培养和分析骨髓瘤细胞的原发性CD138(+)骨髓瘤细胞。三维骨髓模型与合并亚基显着增加了与两种环境的CD138(+)骨髓瘤细胞的增殖。开发模型显示血管内的Niche对支持骨髓瘤细胞的内皮内的基团的重要作用。开发的模型可用于研究原发性骨髓瘤细胞的扩展及其与不同骨髓亚基的相互作用。

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