Microfluidic production of polyacrylic acid functionalized PEG microgels for efficient biomolecular conjugation

Yoon Choi, Su-Ryeon Park, Sei-Jung Lee, Chang-Hyung Choi
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Abstract

We present a double emulsion drop-based microfluidic approach to produce uniform polyacrylic acid functionalized polyethylene glycol (PAA-PEG) microgels. By utilizing double emulsion drops as templates, we produce monodisperse microgels by rapid photopolymerization of the inner prepolymer drop consisting of polyacrylic acid (PAA) and polyethylene glycol diacrylate (PEGDA), followed by dewetting the oil layer when they disperse into an aqueous media. The size control of the PAA-PEG microgels with a broad range is achieved by tuning the flow rate of each phase; the uniformity of the microgels is maintained even when the flow rate changes. The results show rapid R-phycoerythrin (R-PE) coupling with the microgels’ carboxylate with minimal non-specific adsorption, demonstrating highly efficient and reliable biomolecular conjugation within PAA-PEG microgels.
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用于高效生物分子偶联的聚丙烯酸功能化聚乙二醇微凝胶的微流控生产
我们提出了一种基于双乳液滴的微流体方法来生产均匀的聚丙烯酸官能化聚乙二醇(PAA-PEG)微凝胶。通过使用双乳液液滴作为模板,我们通过快速光聚合由聚丙烯酸(PAA)和聚乙二醇二丙烯酸酯(PEGDA)组成的内部预聚物液滴,然后在它们分散到水性介质中时对油层进行润湿,来生产单分散微凝胶。宽范围PAA-PEG微凝胶的尺寸控制是通过调节每相的流速来实现的;即使当流速改变时,微凝胶的均匀性也得以保持。结果表明,R-藻红蛋白(R-PE)与微凝胶的羧酸盐快速偶联,非特异性吸附最小,在PAA-PEG微凝胶中表现出高效可靠的生物分子偶联。
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