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多重平行灌注微生物反应器及三维干细胞培养在毒性测试中的应用。

Application of multiple parallel perfused microbioreactors and three-dimensional stem cell culture for toxicity testing.

作者信息

Cui Z F, Xu X, Trainor N, Triffitt J T, Urban J P G, Tirlapur U K

机构信息

Department of Engineering Science, Oxford University, Oxford, UK.

出版信息

Toxicol In Vitro. 2007 Oct;21(7):1318-24. doi: 10.1016/j.tiv.2007.05.015. Epub 2007 Jun 10.

Abstract

In this study, a multiple parallel perfused microbioreactor platform, TissueFlex, was developed which can be used to perform cell and tissue culture under almost uniform and precisely controlled environment in a mid-throughput and parallel manner. These microbioreactors were used to culture human bone marrow cells (hBMCs) in three-dimensional (3D) scaffolds and also in two-dimensional (2D) monolayer for comparison for upto 7 days. Several scaffolding materials were evaluated for this purpose in terms of easiness in handling, ability to support the hBMC growth, and feasibility for non-destructive optical assays. The feasibility and efficacy of using the developed 3D-hBMCs-based model tissue-constructs cultured in TissueFlex microbioreactors for drug evaluation and toxicity testing was then studied. As a demonstration case study, the cultured cells were challenged with two chemicals, trimethoprim and pyrimethamine, both known to be harmful to cellular activities, with different protocols. Cytotoxicity in terms of cell viability and growth was determined using the AlamarBlue assay. The 3D spatial variations in cell morphology and cell survival were also monitored using 3D optical imaging using non-linear multiphoton microscopy. The results show that (i) the data obtained from 3D hBMCs culture and from (2D) monolayer cultures on the effect of the tested chemicals on cell growth are significantly different, and that (ii) the perfused microbioreactor technology could provide a highly controlled and prolonged cell culture environment for testing of various drugs and chemicals. The outcome of this study demonstrated the feasibility and potentials of the using 3D stem cell based model tissues in TissueFlex microbioreactors for drug evaluation and toxicity testing of chemicals as an efficient and standardized alternative testing method.

摘要

在本研究中,开发了一种多平行灌注微生物反应器平台TissueFlex,可用于在几乎均匀且精确控制的环境中以中通量和并行方式进行细胞和组织培养。这些微生物反应器用于在三维(3D)支架中培养人骨髓细胞(hBMC),也用于二维(2D)单层培养以作比较,培养时间长达7天。为此,评估了几种支架材料在操作简便性、支持hBMC生长的能力以及无损光学检测的可行性方面的表现。然后研究了在TissueFlex微生物反应器中培养的基于3D-hBMC的模型组织构建体用于药物评估和毒性测试的可行性和有效性。作为一个示范案例研究,用两种已知对细胞活性有害的化学物质甲氧苄啶和乙胺嘧啶,以不同方案对培养的细胞进行挑战。使用AlamarBlue检测法测定细胞活力和生长方面的细胞毒性。还使用非线性多光子显微镜的3D光学成像监测细胞形态和细胞存活的3D空间变化。结果表明:(i)从3D hBMC培养和(2D)单层培养获得的关于受试化学物质对细胞生长影响的数据存在显著差异;(ii)灌注微生物反应器技术可为各种药物和化学物质的测试提供高度可控且延长的细胞培养环境。本研究结果证明了在TissueFlex微生物反应器中使用基于3D干细胞的模型组织进行药物评估和化学物质毒性测试作为一种高效且标准化的替代测试方法的可行性和潜力。

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