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A magnetic resonance-compatible perfusion bioreactor system for three-dimensional human mesenchymal stem cell construct development

机译:用于三维人间充质干细胞构建体开发的磁共振兼容灌注生物反应器系统

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摘要

Human mesenchymal stem cells (hMSCs) have significant potential for therapeutic tissue regeneration and repair. The creation of functional 3D constructs from hMSCs depends on the innate ability of MSCs to proliferate and differentiate, and is strongly influenced by the culture conditions. An inherent challenge in investigating 3D cellular construct development is the dynamic monitoring of the cellular and physiological environment over the course of construct formation. In this project, a novel 3D MR-compatible perfusion bioreactor using 3D poly(ethylene terephthalate) scaffolds was developed to provide such monitoring. The bioreactor system integrates cell seeding and growth, supports high density 3D tissue construct growth and facilitates repeated nuclear magnetic resonance (MR) signal acquisitions under both static and perfusion conditions. The reactor system also has the capacity to modulate macroscopic flow modes that simulates various tissue growth environments with repeated MR signal acquisition, providing the ability to gain insight into the dynamic interplay between the stem cells in the developing constructs and their microenvironment. Using ~1H MR spectroscopy and MR imaging, localized spectroscopic data as well as imaging-based T_2 and diffusion quantification were acquired from the hMSC growth construct for up to 40 days.
机译:人间充质干细胞(hMSCs)具有治疗组织再生和修复的巨大潜力。从hMSC建立功能性3D构建体取决于MSC增殖和分化的先天能力,并且受培养条件的强烈影响。研究3D细胞构建体发展的固有挑战是在构建体形成过程中动态监测细胞和生理环境。在该项目中,开发了使用3D聚对苯二甲酸乙二醇酯支架的新型3D MR兼容灌注生物反应器,以提供此类监控。生物反应器系统整合了细胞播种和生长,支持高密度3D组织构建体的生长,并促进了在静态和灌注条件下的重复核磁共振(MR)信号采集。反应器系统还具有调节宏观流动模式的能力,该模式可通过重复的MR信号采集来模拟各种组织生长环境,从而能够深入了解正在发育的构建体中的干细胞与其微环境之间的动态相互作用。使用〜1H MR光谱和MR成像,可以从hMSC生长构建物中获取长达40天的局部光谱数据以及基于成像的T_2和扩散定量。

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