Department of Chemical and Biomolecular Engineering , National University of Singapore , 4 Engineering Drive 4 , 117576 , Singapore.
Langmuir. 2018 Nov 27;34(47):14226-14233. doi: 10.1021/acs.langmuir.8b02991. Epub 2018 Nov 15.
Immobilized enzymes can be used to catalyze biochemical reactions in a batch process, however, it is more difficult to use them in a continuous process. Herein, we develop an enzyme immobilization technique for flexible tubing surfaces, which can be used to catalyze biochemical reactions in a continuous process. In this technique, the tubing is first treated with (3-aminopropyl)triethoxysilane at 50 °C and baked at 100 °C in vacuum to form a network of reactive amine functional group on the inner tubing surface. Subsequently, dextran polyaldehyde, a polymeric cross-linker, is used to immobilize crude protease extract and catalase for hydrolyzing casein and degrading HO, respectively, in a continuous process. The immobilized proteases are highly stable even after a long-term storage at 4 °C. After 12 weeks of storage, 90% of the original protease activity can be preserved. Meanwhile, the immobilized catalase is able to degrade 0.1% HO solution flowing at 5 μL/min. The immobilization technique is potentially useful for bioassays and industrial wastewater treatments when continuous processes are preferred.
固定化酶可用于分批式生化反应的催化,但在连续式反应中使用则较为困难。本研究开发了一种用于弹性管道表面的酶固定化技术,可用于连续式生化反应的催化。在该技术中,首先将管道在 50°C 下用(3-氨丙基)三乙氧基硅烷处理,并在 100°C 下真空烘烤,在管道内表面形成反应性胺官能团网络。随后,使用葡聚糖多醛作为聚合物交联剂,固定化粗蛋白酶提取物和过氧化氢酶,分别用于连续式水解酪蛋白和降解 HO。固定化蛋白酶在 4°C 下长期储存后仍高度稳定。储存 12 周后,仍可保留 90%的原始蛋白酶活性。同时,固定化过氧化氢酶能够降解以 5 μL/min 流速流动的 0.1%HO 溶液。当需要连续式反应时,该固定化技术在生物测定和工业废水处理方面具有应用潜力。