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Shunt Concept for Specific Active Transport Using Enzymatic Membranes: Review and Prospects

机译:特定主动运输使用酶膜的分流概念:回顾和前景。

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Artifical enzymatic membranes (AEMs) were conceived with the aim of replicating the active transport found in vivo. The shunt concept has recently emerged from the use of two enzymes catalysing two opposite reactions occurring on both parts of a porous charged membrane (+ or —) and able to specifically add/remove (or the contrary) a charged group (+ or —) on the selected molecule to be transported. Historically, the Phosphatase (P)/Kinase (K) couple (or its inverse), frequently found in nature, was selected for creating these shunts. Modelling of these transports was realized using the Nernst-Planck equation. In parallel, experimental studies were conducted proving that these shunt topologies, involving enzymatic membranes, lead to specific and active solute transports at physiological temperature and pressure. Issuing from this concept, recent technological prospects, such as the specific separation and concentration of(L) substrate from the (D/L) racemic mixture and the selective transport of neutral molecules by electrophoresis, are presented. This review presents the main results obtained using polymeric membranes linked to enzymes with the aim of replicating the active transport found in vivo.
机译:为了复制体内发现的主动转运,设想了人工酶膜(AEM)。分流概念是最近通过使用两种酶催化在多孔带电膜(+或-)的两个部分上发生的两个相反的反应而出现的,并且能够特异性地添加/去除(或相反)带电基团(+或-)。在要运输的选定分子上。从历史上看,自然界中经常发现的磷酸酶(P)/激酶(K)对(或其反向)被选择用于创建这些分流器。使用Nernst-Planck方程对这些传输进行建模。同时,进行了实验研究,证明了涉及酶膜的这些并联拓扑结构会在生理温度和压力下导致特异性和活性的溶质转运。从这个概念出发,提出了最新的技术前景,例如从(D / L)外消旋混合物中特定的(L)底物的分离和浓缩,以及通过电泳选择性迁移中性分子。这篇综述介绍了使用与酶连接的聚合物膜获得的主要结果,目的是复制体内发现的主动转运蛋白。

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