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A Three-dimensional Tissue Culture Model to Study Primary Human Bone Marrow and its Malignancies

机译:研究人原发性骨髓及其恶性肿瘤的三维组织培养模型

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摘要

Tissue culture has been an invaluable tool to study many aspects of cell function, from normal development to disease. Conventional cell culture methods rely on the ability of cells either to attach to a solid substratum of a tissue culture dish or to grow in suspension in liquid medium. Multiple immortal cell lines have been created and grown using such approaches, however, these methods frequently fail when primary cells need to be grown ex vivo. Such failure has been attributed to the absence of the appropriate extracellular matrix components of the tissue microenvironment from the standard systems where tissue culture plastic is used as a surface for cell growth. Extracellular matrix is an integral component of the tissue microenvironment and its presence is crucial for the maintenance of physiological functions such as cell polarization, survival, and proliferation. Here we present a 3-dimensional tissue culture method where primary bone marrow cells are grown in extracellular matrix formulated to recapitulate the microenvironment of the human bone (rBM system). Embedded in the extracellular matrix, cells are supplied with nutrients through the medium supplemented with human plasma, thus providing a comprehensive system where cell survival and proliferation can be sustained for up to 30 days while maintaining the cellular composition of the primary tissue. Using the rBM system we have successfully grown primary bone marrow cells from normal donors and patients with amyloidosis, and various hematological malignancies. The rBM system allows for direct, in-matrix real time visualization of the cell behavior and evaluation of preclinical efficacy of novel therapeutics. Moreover, cells can be isolated from the rBM and subsequently used for in vivo transplantation, cell sorting, flow cytometry, and nucleic acid and protein analysis. Taken together, the rBM method provides a reliable system for the growth of primary bone marrow cells under physiological conditions.
机译:组织培养一直是研究细胞功能从正常发育到疾病的许多方面的宝贵工具。常规的细胞培养方法依赖于细胞附着于组织培养皿的固体基质或在液体培养基中悬浮生长的能力。已经使用这种方法创建并生长了多个永生细胞系,但是,当需要离体生长原代细胞时,这些方法经常会失败。这种失败归因于标准系统中缺少组织微环境的适当细胞外基质成分,在这些系统中,组织培养塑料被用作细胞生长的表面。细胞外基质是组织微环境必不可少的组成部分,其存在对于维持生理功能(例如细胞极化,存活和增殖)至关重要。在这里,我们介绍了一种3维组织培养方法,其中原代骨髓细胞在细胞外基质中生长以配制人类骨骼的微环境(rBM系统)。嵌入细胞外基质的细胞通过补充了人类血浆的培养基为细胞提供营养,从而提供了一个全面的系统,在此系统中,细胞存活和增殖可以维持长达30天,同时又保持了主要组织的细胞组成。使用rBM系统,我们已经成功地培养了正常供体和淀粉样变性病以及各种血液系统恶性肿瘤患者的原代骨髓细胞。 rBM系统可实现细胞行为的直接,矩阵内实时可视化,并可评估新型疗法的临床前疗效。此外,可以从rBM中分离细胞,然后将其用于体内移植,细胞分选,流式细胞术以及核酸和蛋白质分析。综上所述,rBM方法为生理条件下原代骨髓细胞的生长提供了可靠的系统。

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