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酶-聚合物缀合物的可逆超分子表面附着用于设计生物催化过滤膜。

Reversible Supramolecular Surface Attachment of Enzyme-Polymer Conjugates for the Design of Biocatalytic Filtration Membranes.

机构信息

School of Life Sciences, University of Applied Sciences and Arts Northwestern Switzerland, Gründenstrasse 40, Muttenz CH-4132 (Switzerland).

School of the Environment, Nanjing University, 210093 Nanjing (China).

出版信息

Angew Chem Int Ed Engl. 2015 Dec 1;54(49):14800-4. doi: 10.1002/anie.201507020. Epub 2015 Oct 13.

Abstract

To be used successfully in continuous reactor systems, enzymes must either be retained using filtration membranes or immobilized on a solid component of the reactor. Whereas the first approach requires large amounts of energy, the second approach is limited by the low temporal stability of enzymes under operational conditions. To circumvent these major stumbling blocks, we have developed a strategy that enables the reversible supramolecular immobilization of bioactive enzyme-polymer conjugates at the surface of filtration membranes. The polymer is produced through a reversible addition-fragmentation transfer method; it contains multiple adamantyl moieties that are used to bind the resulting conjugate at the surface of the membrane which has surface-immobilized cyclodextrin macrocycles. This supramolecular modification is stable under operational conditions and allows for efficient biocatalysis, and can be reversed by competitive host-guest interactions.

摘要

为了在连续反应器系统中成功使用,酶必须通过过滤膜进行保留,或者固定在反应器的固体成分上。虽然第一种方法需要大量的能量,但第二种方法受到操作条件下酶的低时间稳定性的限制。为了规避这些主要障碍,我们开发了一种策略,使生物活性酶-聚合物缀合物能够在过滤膜表面可逆地超分子固定。聚合物是通过可逆加成-断裂转移方法生产的;它包含多个金刚烷基部分,用于将所得的缀合物键合到表面固定有环糊精大环的膜表面上。这种超分子修饰在操作条件下稳定,允许有效的生物催化,并可以通过竞争性主客体相互作用逆转。

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