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A selective molecularly imprinted polymer for immobilization of acetylcholinesterase (AChE): an active enzyme targeted and efficient method. | LitMetric

AI Article Synopsis

  • The study focused on immobilizing the acetylcholinesterase (AChE) enzyme onto two types of polymers, one with acetylcholine removed and the other containing acetylcholine.
  • Two methods were used for immobilization: method A involved removing acetylcholine from the polymer before enzyme attachment, while method B allowed AChE to bind to the acetylcholine-containing polymer via affinity.
  • The immobilized AChE showed a significant increase in specific activity compared to free AChE, and various experiments were conducted to evaluate the enzyme's properties, including optimal temperature, pH, thermal stability, and reusability.

Article Abstract

In the present study, we immobilized acetylcholinesterase (AChE) enzyme onto acetylcholine removed imprinted polymer and acetylcholine containing polymer. First, the polymers were produced with acetylcholine, substrate of AChE, by dispersion polymerization. Then, the enzyme was immobilized onto the polymers by using two different methods: In the first method (method A), acetylcholine was removed from the polymer, and then AChE was immobilized onto this polymer (acetylcholine removed imprinted polymer). In the second method (method B), AChE was immobilized onto acetylcholine containing polymer by affinity. In method A, enzyme-specific species (binding sites) occurred by removing acetylcholine from the polymer. The immobilized AChE reached 240% relative specific activity comparison with free AChE because the active enzyme molecules bounded onto the polymer. Transmission electron microscopy results were taken before and after immobilization of AChE for the assessment of morphological structure of polymer. Also, the experiments, which include optimum temperature (25-65 °C), optimum pH (3-10), thermal stability (4-70 °C), kinetic parameters, operational stability and reusability, were performed to determine the characteristic of the immobilized AChE.

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Source
http://dx.doi.org/10.1002/jmr.2475DOI Listing

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