Article ID Journal Published Year Pages File Type
636014 Journal of Membrane Science 2011 7 Pages PDF
Abstract

Cephalexin is an important and widely used semi-synthetic antibiotic. Cephalexin is traditionally produced by a 10-step chemical synthesis. An enzymatic synthesis for Cephalexin has been developed, and offers several advantages over the classical route. 7-Amino-3-desacetoxicephalosporanic acid and d-phenylglycine amide were used as initial substrates for the enzymatic synthesis of Cephalexin with liquid penicillin G acylase. In situ extraction was achieved with a supported liquid membrane (SLM) with strip dispersion system that used commercially available hollow fiber modules and the carrier Aliquat 336. The maximum yield of Cephalexin was increased from 32% to 42% when in situ removal was conducted using two hollow-fiber modules and an organic membrane solution containing 10 wt% Aliquat 336. Enzyme stability experiments were preformed and showed that the organic membrane solution did not significantly deactivate the enzyme. The final recovery of Cephalexin from aqueous stripping solutions was achieved using complexing agents. The combination of SLM and complexation can prevent enzyme deactivation, which commonly occurs when complexation is conducted in enzymatic reaction mixtures.

Research highlights▶ In situ removal of Cephalexin by SLMs with strip dispersion has been achieved. ▶ The maximum yield was increased from 32% to 42% with limited membrane area. ▶ The organic membrane solution did not significantly deactivate the liquid enzyme. ▶ SLM with complexation from the strip solution allowed for no enzyme deactivation. ▶ The recovered substance matched the FT-IR spectra of pure Cephalexin monohydrate.

Related Topics
Physical Sciences and Engineering Chemical Engineering Filtration and Separation
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