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Microfluidic chip containing porous gradient for chemotaxis study

机译:含多孔梯度的微流控芯片,用于趋化性研究

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We have developed a new porous gradient microfluidic device based on in situ Gtn-HPA/CMC-Tyr hydrogel that comprises gelatin hydroxyphenylpropionic acid (Gtn-HPA) conjugate and carboxymethyl cellulose tyramine (CMC-Tyr) conjugate. The device is fabricated using a soft lithographic technique, in which microstructures were patterned on a thin layer of polydimethylsiloxane (PDMS) using a polymeric mold. Human fibrosarcoma cells (HT1080) were employed as invasive cancer cell model. Porosity gradients were generated by flowing pore etching fluid in the gradient generator network. Results suggested that spatial control of the porosity can be obtained, which mimics the 3-dimensional microenvironment in vivo for cell-based screening applications including real time chemotaxis, cytotoxicity, and continuous drug-response monitoring. A chemoattractant gradient is then generated and cell migration is monitored in real time using fluorescence microscopy. The viability of cells was evaluated using calcien AM stain. Herein, we successfully monitored the chemotactic responses of cancer cells, confirmed the validity of using in situ porous hydrogels as a construction material for a microchemotaxis device, and demonstrated the potential of the hydrogel with tunable porosity based microfluidic device in biological experiments. This device will also be practical in controlling the chemical and mechanical properties of the surroundings during the fonnation of tissue engineered constructs.
机译:我们已经开发了一种基于原位Gtn-HPA / CMC-Tyr水凝胶的新型多孔梯度微流体装置,该装置包括明胶羟苯基丙酸(Gtn-HPA)共轭物和羧甲基纤维素酪胺(CMC-Tyr)共轭物。使用软光刻技术制造该设备,其中使用聚合物模具在聚二甲基硅氧烷(PDMS)薄层上对微结构进行图案化。人纤维肉瘤细胞(HT1080)被用作侵袭性癌细胞模型。孔隙率梯度是通过使孔隙蚀刻液在梯度生成器网络中流动来生成的。结果表明,可以获得孔隙度的空间控制,该空间模拟了体内3维微环境,用于基于细胞的筛选应用,包括实时趋化性,细胞毒性和连续药物反应监测。然后产生趋化因子梯度,并使用荧光显微镜实时监测细胞迁移。使用钙化AM染色评估细胞的活力。在这里,我们成功地监测了癌细胞的趋化反应,证实了使用原位多孔水凝胶作为微趋化装置的构建材料的有效性,并证明了基于可调节孔隙率的微流体装置在生物实验中的潜力。该装置在组织工程化构造体的形成过程中在控制周围环境的化学和机械性质方面也将是实用的。

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