Virgen-Ortíz Jose J, Dos Santos José C S, Berenguer-Murcia Ángel, Barbosa Oveimar, Rodrigues Rafael C, Fernandez-Lafuente Roberto
CONACYT-Centro de Investigación en Alimentación y Desarrollo, A.C. (CIAD)-Consorcio CIDAM, Km. 8 Antigua Carretera a Pátzcuaro s/n, 58341 Morelia, Michoacán, Mexico.
J Mater Chem B. 2017 Sep 28;5(36):7461-7490. doi: 10.1039/c7tb01639e. Epub 2017 Sep 4.
This review discusses the possible roles of polyethylenimine (PEI) in the design of improved immobilized biocatalysts from diverse perspectives. This includes their use to activate supports and immobilize enzymes via ion exchange, as well as to improve immobilized enzymes by coating with PEI. PEI is a polymer containing primary, secondary and tertiary amino groups, having a strong anion exchange capacity under a broad range of conditions, and the capability to chemically react with different moieties on either an enzyme or a support. Also, as a multifunctional polymer, it has been modified stepwise to introduce different functionalities into the same polymer. This polymer (in combination with other anionic ones) permits the generation of "saline" environments around enzyme molecules, improving enzyme stability in the presence of hydrophobic compounds. The use of PEI as a physical glue useful to crosslink enzyme subunits in multimeric enzymes, monomeric enzymes immobilized via physical interactions or production of enzyme multilayers will be specially emphasized as new open avenues for enzyme coimmobilization. The coimmobilization of enzymes and cofactors using PEI may become one of the future developments allowed through an adequate use of this polymer and new pathways towards the design of enzyme combi-catalysts for their use in cascade reactions. Some unexplored but suggested uses derived from the properties of PEI are also proposed in the review, like the use of the buffering power of this multifunctional polymer to avoid pH gradients inside biocatalyst particles. Thus, although PEI has been a largely popular polymer in biocatalyst design, it looks like a long and in some cases almost unexplored road lies ahead.
本综述从不同角度探讨了聚乙烯亚胺(PEI)在设计改良固定化生物催化剂中的可能作用。这包括其通过离子交换用于活化载体和固定酶,以及通过用PEI包被来改善固定化酶。PEI是一种含有伯氨基、仲氨基和叔氨基的聚合物,在广泛的条件下具有很强的阴离子交换能力,并且能够与酶或载体上的不同部分发生化学反应。此外,作为一种多功能聚合物,它已被逐步改性,以便在同一聚合物中引入不同的功能基团。这种聚合物(与其他阴离子聚合物结合使用)能够在酶分子周围产生“盐溶液”环境,从而在存在疏水化合物的情况下提高酶的稳定性。特别强调将PEI用作物理胶水,用于交联多聚体酶中的酶亚基、通过物理相互作用固定的单体酶或制备酶多层膜,这是酶共固定化的新途径。利用PEI共固定化酶和辅因子可能成为未来的发展方向之一,这需要合理使用这种聚合物,并开辟新途径来设计用于级联反应的酶组合催化剂。本综述还提出了一些源于PEI特性但尚未探索的潜在用途,例如利用这种多功能聚合物的缓冲能力来避免生物催化剂颗粒内部的pH梯度。因此,尽管PEI在生物催化剂设计中一直是一种广受欢迎的聚合物,但未来的路似乎还很长,在某些情况下几乎尚未被探索。