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Biological Implications of Polymeric Microdevices for Live Cell Assays

机译:聚合物微器件对活细胞测定的生物学意义

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Lab-on-a-chip technologies have the potential to deliver significant technological advances in modern biomedicine, through the ability to provide appropriate low-cost microenvironments for screening cells. However, to date, few studies have investigated the suitability of poly(dim-ethylsiloxane) (PDMS) for live cell culture. Here, we describe an inexpensive method for production of reusable, optical-grade PDMS microculture chips which provide a static and self-contained microwell system analogous to conventional polystyrene multiwell plates. We use these structures to probe the effects of PDMS upon live cell culture bioassays, using time-lapse fluorescence imaging to explore the toxicity of the substrate. We use three model systems to explore the efficacy of the micro-structured devices: (i) live cell culture, (ii) adenoviral gene delivery to mammalian cells, and (iii) gravity enforced formation of multicellular tumor spheroids (MCTS). Results show that PDMS is nontoxic to cells, as their viability and growth characteristic in PDMS-based platforms is comparable to that of their polystyrene counterparts.
机译:通过提供适当的低成本微环境来筛选细胞,片上实验室技术有潜力在现代生物医学领域取得重大技术进步。然而,迄今为止,很少有研究调查聚(二甲基-乙基硅氧烷)(PDMS)对活细胞培养的适用性。在这里,我们描述了一种廉价的生产可重复使用的光学级PDMS微培养芯片的方法,该芯片可提供类似于常规聚苯乙烯多孔板的静态且自包含的微孔系统。我们使用这些结构来探测PDMS对活细胞培养生物测定的影响,使用延时荧光成像来探索底物的毒性。我们使用三个模型系统来探索微结构设备的功效:(i)活细胞培养,(ii)腺病毒基因传递至哺乳动物细胞,以及(iii)重力强制形成的多细胞肿瘤球体(MCTS)。结果表明,PDMS对细胞无毒,因为其在PDMS平台上的生存能力和生长特性与聚苯乙烯相当。

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