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Microfluidic reactors based on rechargeable catalytic porous supports: Heterogeneous enzymatic catalysis via reversible hostguest interactions

机译:基于可充电催化多孔载体的微流体反应器:通过可逆的客体相互作用进行非均相酶催化

摘要

We report on the fabrication of a microfluidic device in which the reservoir contains a porous surface with enzymatic catalytic activity provided by the reversible immobilization of horseradish peroxidase onto micrometer size pores. The porous functional reservoir was obtained by the Breath Figures approach by casting in a moist environment a solution containing a mixture of high molecular weight polystyrene (HPS) and a poly(styrene-co-cyclodextrin based styrene) (P(S-co-SCD)) statistical copolymer. The pores enriched in CD were employed to immobilize horseradish peroxidase (previously modified with adamantane) by hostguest interactions (HRP-Ada). These surfaces exhibit catalytic activity that remains stable during several reaction cycles. Moreover, the porous platforms could be recovered by using free water-soluble β-CD with detergents. An excess of β-CD/TritonX100 in solution disrupts the interactions between HRP-Ada and the CD-modified substrate thus allowing us to recover the employed enzyme and reuse the platform.
机译:我们报道了一种微流体装置的制造,其中所述储层包含具有通过将辣根过氧化物酶可逆地固定在微米尺寸的孔上而提供的酶催化活性的多孔表面。通过在潮湿环境中浇铸含有高分子量聚苯乙烯(HPS)和聚(苯乙烯-共-环糊精基苯乙烯)(P(S-co-SCD)混合物的溶液))统计共聚物。通过客体相互作用(HRP-Ada),将富含CD的孔用于固定辣根过氧化物酶(以前用金刚烷修饰)。这些表面表现出在几个反应循环中保持稳定的催化活性。此外,可以通过使用带有洗涤剂的游离水溶性β-CD来回收多孔平台。溶液中过量的β-CD/ TritonX100会破坏HRP-Ada与CD修饰的底物之间的相互作用,从而使我们能够回收所用的酶并重新使用该平台。

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