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Catalytic Saloplastics: Alkaline Phosphatase Immobilized and Stabilized in Compacted Polyelectrolyte Complexes

机译:催化saloplastics:在压实的聚电解质复合物中固定和稳定的碱性磷酸酶

摘要

Novel biochemically active compact polyelectrolyte complexes (CoPECs) are obtained through a simple coprecipitation and compaction procedure. As shown for the system composed of poly(acrylic acid) (PAA) and poly(allylamine) (PAH) as polyelectrolytes and alkaline phosphatase (ALP) as enzyme, the enzyme can be firmly immobilized into these materials. The ALP not only remains active in these materials, but the matrix also enhances the specific activity of the enzyme while protecting it from deactivation at higher temperature. The presence of the matrix allows fine control and substantial enhancement of reaction rates by varying the salt concentration of the contacting solution or temperature. The excellent reusability, together with the ease of co-immobilizing other useful components, such as magnetic particles, allowing facile handling of the CoPECs, makes these materials interesting candidates for variable scaffolds for the immobilization of enzymes for small- and large-scale enzyme-catalyzed processes.
机译:通过简单的共沉淀和压实程序可获得新型的生化活性紧密聚电解质复合物(CoPEC)。如由聚(丙烯酸)(PAA)和聚(烯丙胺)(PAH)作为聚电解质和碱性磷酸酶(ALP)作为酶组成的系统所示,该酶可以牢固地固定在这些材料中。 ALP不仅在这些材料中保持活性,而且基质还增强了酶的比活性,同时保护了它在高温下不失活。基质的存在可以通过改变接触溶液的盐浓度或温度来进行精细控制并显着提高反应速率。出色的可重复使用性,以及易于共固定其他有用成分(例如磁性颗粒)的便利性,使得可以轻松处理CoPEC,这些材料成为固定支架的小支架材料的候选材料,这些支架可固定小型和大型酶-催化过程。

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