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The Rapid Fabrication of Hydrogel Microfluidic Chip for Cell Capture Culture and Metabolites Detection

机译:用于细胞捕获培养和代谢物检测的水凝胶微流控芯片的快速制备

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The microfluidic chip with well-defined structure is an important platform for cell research.The existing techniques for chip fabrication especially in cell biology and tissue engineering have many defects,for example,poor processing precision,high processing cost,as well as sophisticated manufacturing procedure.Thus,fabrication of simple and practicable microfluidic chip with highly efficient cell control ability and low-cost is turned to be the main target for bioengineering application.Poly(ethylene glycol) (PEG) is a hydrophilic polymer.Substituting terminal hydroxyl groups with acrylates,forming poly(ethylene glycol) diacrylate (PEGDA),allows the polymer to be cross-linked to form a three-dimensional polymer network.Meanwhile the use of photopolymerization can realize precise and temporal control of polymerization for formation of complex shapes.Herein,we utilize PEGDA hydrogel’s highly tunable characteristic,using photopolymerization method to obtain desirable micro-structure.Each chip has four of uniform micro-structures,which can carry multiple parallel experiments at the same time.We also add 2-Hydroxyethyl Methacrylate (HEMA) to the PEGDA prepolymer in order to increase the cell adhesion capacity of the microchip surface for cell culture.The experimental results showed that this method can achieve double-layer cell culture with short time treatment.Cells can be well captured and cultured in the hydrogel microfluidic chip with excellent activity.The hydrogel microfluidic chip has the potential of practicable application once large-scale preparation is accomplished.
机译:结构明确的微流控芯片是细胞研究的重要平台。现有的芯片制造技术,尤其是细胞生物学和组织工程领域的芯片制造技术,存在加工精度低,加工成本高,制造工艺复杂等缺陷。因此,以高效的细胞控制能力和低成本制造简单实用的微流控芯片成为生物工程应用的主要目标。聚乙二醇(PEG)是一种亲水性聚合物。用丙烯酸酯取代末端羟基形成聚乙二醇二丙烯酸酯(PEGDA),可以使聚合物交联形成三维聚合物网络。同时,使用光致聚合可以实现精确和时间控制的聚合,以形成复杂的形状。我们利用PEGDA水凝胶的高度可调特性,通过光聚合方法获得所需的微结构。 h芯片具有四个均匀的微结构,可以同时进行多个平行实验。我们还向PEGDA预聚物中添加了甲基丙烯酸2-羟乙酯(HEMA),以提高微芯片表面用于细胞培养的细胞粘附能力实验结果表明,该方法可实现短时处理的双层细胞培养,可在水凝胶微流控芯片中很好地捕获和培养细胞,具有优异的活性,一旦大规模应用,该水凝胶微流控芯片具有实际应用的潜力准备工作完成。

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