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Integrating 3D cell culture of PC12 cells with microchip-based electrochemical detection

机译:用微芯片基电化学检测整合PC12细胞3D细胞培养物

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Developing in vitro cell culture models that accurately mimic in vivo processes in a manner that also enables near real-time analysis of neurotransmitters is an important research area. New technologies being developed such as 3D scaffolds for cell culture and 3D printed microfluidics provide an opportunity for such advancements. In this work, PC12 cells were used as a model system and they were immobilized onto a 3D scaffold of polystyrene (PS) fibers. These fibers were created by electrospinning onto PS sheets, which were laser cut and, after cell seeding, inserted into a 3D printed microfluidic device. The 3D printed device was designed with threads for connecting commercial fittings (to integrate automated pumps and a 4-port injection system) and a steel pin for simple coupling with PDMS/polystyrene analytical devices. A straight PDMS channel was used for simple (and continuous) flow-based detection by sealing onto a PS base containing an embedded gold array working electrode and a platinum pseudo-reference. Electrochemical detection of stimulated catecholamine release was demonstrated. The insert-based system was then integrated with a bilayer valving PDMS device (for microchip electrophoresis) sealed onto a PS base (with electrodes for electrochemical detection). This base was embedded with a Pd decoupler (for grounding the separation voltage and adsorbing hydrogen) and a 33 mm carbon fiber working electrode for in-channel detection. PC12 cells were stimulated in the 3D cell culture device, and the valving/electrophoresis microchip was able to separate and detect dopamine and norepinephrine release. This work demonstrates the ability to integrate 3D cell scaffolds with microchip-based analysis for detection of multiple analytes released from cells.
机译:在体外细胞培养模型中培养体内过程中的体外细胞培养模型,这种方式也能够在神经递质的近实时分析附近的方式进行了一种重要的研究区域。正在开发的新技术,如用于细胞培养和3D印刷的微流体的3D支架,为这种进步提供了机会。在这项工作中,将PC12细胞用作模型系统,将它们固定在聚苯乙烯(PS)纤维的3D支架上。通过静电纺丝到PS片材上产生这些纤维,该薄膜是激光切割的,并且在细胞播种后插入3D印刷的微流体装置。 3D印刷装置设计有用于连接商用配件的螺纹(以集成自动泵和4端口注射系统)和钢销,用于与PDMS /聚苯乙烯分析装置简单的耦合。通过密封包含嵌入金阵列工作电极和铂伪参考的PS基座上,使用直的PDMS通道用于简单(和连续的)流动检测。证实了刺激的儿茶酚胺释放的电化学检测。然后将基于插入式的系统与密封在PS基座上的双层阀门(用于微芯片电泳)集成(用于电化学检测)。该碱基嵌入PD去耦(用于接地分离电压和吸附氢)和33mm碳纤维工作电极,用于进入通道检测。在3D细胞培养装置中刺激PC12细胞,并且阀/电泳微芯片能够分离和检测多巴胺和去甲肾上腺素释放。这项工作证明了与基于微芯片的分析集成了3D细胞支架的能力,以检测从细胞释放的多个分析物。

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