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利用微流控技术制备的油包水乳液中的反向悬浮聚合法合成对人血清白蛋白具有选择性的单分散亚毫米级分子印迹颗粒。

Synthesis of Monodispersed Submillimeter-Sized Molecularly Imprinted Particles Selective for Human Serum Albumin Using Inverse Suspension Polymerization in Water-in-Oil Emulsion Prepared Using Microfluidics.

作者信息

Takimoto Kyohei, Takano Eri, Kitayama Yukiya, Takeuchi Toshifumi

机构信息

Graduate School of Engineering, Kobe University, 1-1, Rokkodai-cho, Nada-ku, Kobe 657-8501, Japan.

出版信息

Langmuir. 2015 May 5;31(17):4981-7. doi: 10.1021/acs.langmuir.5b00769. Epub 2015 Apr 20.

Abstract

We synthesized monodispersed submillimeter-sized (100 μm-1 mm) microgels by inverse suspension polymerization of water-soluble monomer species with a photoinitiator in water-in-oil (W/O) droplets formed by the microchannel. After fundamental investigations of the selection of suitable surfactants, surfactant concentration, and flow rate, we successfully prepared monodispersed submillimeter-sized W/O droplets. Because radical polymerization based on thermal initiation was not appropriated based on colloidal stability, we selected photoinitiation, which resulted in the successful synthesis of monodispersed submillimeter-sized microgels with sufficient colloidal stability. The microgel size was controlled by the flow rate of the oil phase, which maintained the monodispersity. In addition, the submillimeter-sized microgels exhibit high affinity and selective binding toward HSA utilizing molecular imprinting. We believe the monodispersed submillimeter-sized molecularly imprinted microgels can be used as affinity column packing materials without any biomolecules, such as antibodies, for sample pretreatment to remove unwanted proteins without a pump system.

摘要

我们通过在微通道形成的油包水(W/O)液滴中,使水溶性单体与光引发剂进行反向悬浮聚合,合成了单分散的亚毫米级(100μm - 1mm)微凝胶。在对合适表面活性剂的选择、表面活性剂浓度和流速进行基础研究后,我们成功制备了单分散的亚毫米级W/O液滴。由于基于热引发的自由基聚合在胶体稳定性方面不合适,我们选择了光引发,这使得成功合成了具有足够胶体稳定性的单分散亚毫米级微凝胶。微凝胶的尺寸由油相流速控制,从而保持了单分散性。此外,利用分子印迹技术,亚毫米级微凝胶对人血清白蛋白(HSA)表现出高亲和力和选择性结合。我们相信,单分散的亚毫米级分子印迹微凝胶可作为亲和柱填充材料,无需任何生物分子(如抗体),用于样品预处理,在无泵系统的情况下去除不需要的蛋白质。

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