Logo image
A Microfluidic Countercurrent Reactor for Accelerating Enzymatic Reactions
期刊文章   同儕審查

A Microfluidic Countercurrent Reactor for Accelerating Enzymatic Reactions

Duane S. Juang, Yi-Ren Huo, Hsin-Kai Tseng, Chih-Chen Chen, Chia-Hsien HsuChun-Cheng Lin
ChemCatChem
2023

摘要

counter current enzyme immobilization enzyme reactor microfluidics product inhibition Catalysis Physical and Theoretical Chemistry Organic Chemistry Inorganic Chemistry
Enzymes are important catalysts in biochemical reactions with superior regio, stereo, and substrate selectivity. However, enzymatic reaction systems have drawbacks including product inhibition, difficulty recycling, and poor stability. Importantly, the rate of an enzyme catalyzed reaction diminishes rapidly due to product inhibition and substrate depletion, making it difficult for many enzymes to catalyze a reaction to completion. The outcome is a mixture of unreacted substrates being present in the final reaction, necessitating additional separation steps that increase costs. This study presents a microfluidic reactor for accelerating enzyme catalyzed reactions using a countercurrent design that continuously removes products and adds fresh substrate into the reaction, allowing enzymes to operate under better reaction conditions. It demonstrates that countercurrent flow accelerates enzymatic reactions in our system up to 36 % for horseradish peroxidase and 21 % for β-glucosidase compared to cocurrent flow, and the resulting reaction solution contains highly pure product with minimal substrate contamination.

相關連結

指標

1 檢視次數

詳細資料

Logo image