Related Experiment Video
Updated: Apr 2, 2026

A Scalable Balz-Schiemann Reaction Protocol in a Continuous Flow Reactor
Published on: February 10, 2023
Dual Flow Reactor Approach for the Chemoenzymatic Production of Chenodeoxycholic Acid, a Precursor to Ursodeoxycholic
Bing-Yi Yang1, Ya-Jing Liu1, Jiang Pan1,2
1Laboratory of Biocatalysis and Synthetic Biotechnology, State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.
Abstract:
Chenodeoxycholic acid, a precursor to ursodeoxycholic acid, can be synthesized from inexpensive cholic acid through a two-step chemoenzymatic route. Here, a dual flow reactor system was developed to intensify this process. First, a packed-bed reactor with coimmobilized enzymes achieved complete conversion of 50 mM cholic acid to 12-oxochenodeoxycholic acid, achieving a space-time yield of 5831 g·L-1·d-1, significantly surpassing the batch mode (1632 g·L-1·d-1). Subsequently, a PTFE flow reactor facilitated the Wolff-Kishner-Huang reduction, producing chenodeoxycholic acid with a space-time yield of 3629 g·L-1·d-1, outperforming the batch mode (1555 g·L-1·d-1). This work highlights a safe and efficient platform for chemoenzymatic chenodeoxycholic acid synthesis and provides a generalizable strategy for industrial bile acid production.
More Related Videos
Related Concept Videos
Upstream Processing
Production of Organic Acids
Production of Antibiotics

