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“Fishing and Hunting”—Selective Immobilization of a Recombinant Phenylalanine Ammonia-Lyase from Fermentation Media

Molecules 2019 17 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 30 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
E. W. Bell, Zsófia Molnár, Andrea Varga, Flóra Nagy, Flóra Nagy, Gábor Hornyánszky, Csaba Paizs, Csaba Paizs, Diána Balogh‐Weiser, László Poppe

Summary

This study presents a streamlined method for immobilizing industrial enzymes using magnetic nanoparticles, avoiding the costly purification steps normally required. The technique improves efficiency in enzyme-based industrial processes, though it is not directly related to microplastic research.

This article overviews the numerous immobilization methods available for various biocatalysts such as whole-cells, cell fragments, lysates or enzymes which do not require preliminary enzyme purification and introduces an advanced approach avoiding the costly and time consuming downstream processes required by immobilization of purified enzyme-based biocatalysts (such as enzyme purification by chromatographic methods and dialysis). Our approach is based on silica shell coated magnetic nanoparticles as solid carriers decorated with mixed functions having either coordinative binding ability (a metal ion complexed by a chelator anchored to the surface) or covalent bond-forming ability (an epoxide attached to the surface via a proper linker) enabling a single operation enrichment and immobilization of a recombinant phenylalanine ammonia-lyase from parsley fused to a polyhistidine affinity tag.

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