Khmelnitsky Y L, Gladilin A K, Roubailo V L, Martinek K, Levashov A V
A. N. Bakh Institute of Biochemistry, Moscow, Russia.
Eur J Biochem. 1992 Jun 15;206(3):737-45. doi: 10.1111/j.1432-1033.1992.tb16980.x.
A new microheterogeneous non-aqueous medium for enzymatic reactions, based on reversed micelles of a polymeric surfactant, was suggested. The surfactant termed CEPEI, was synthesized by successive alkylation of poly(ethyleneimine) with cetyl bromide and ethyl bromide and was found to be able to solubilize considerable amounts of water in benzene/n-butanol mixtures. The hydrodynamic radius of polymeric-reversed micelles was estimated to be in the range 22-51 nm, depending on the water content of the system, as determined by means of the quasi-elastic laser-light scattering. Polymeric reversed micelles were capable of solubilizing enzymes (alpha-chymotrypsin and laccase) in nonpolar solvents with retention of catalytic activity. Due to the strong buffering properties of CEPEI over a wide pH range, it could maintain any adjusted pH inside hydrated reversed micelles. It was found that catalytic behavior of enzymes entrapped in polymeric reversed micelles was rather insensitive to the pH of the buffer solution introduced into the system as an aqueous component, but determined mostly by acid-base properties of the polymeric surfactant itself. Both catalytic activity and stability of entrapped alpha-chymotrypsin and laccase were found to increase with increasing water content of the system. Under certain conditions, the entrapment of alpha-chymotrypsin into CEPEI reversed micelles resulted in a considerable increase in catalytic activity and stability as compared to aqueous solution. CEPEI reversed micelles were demonstrated to be promising enzyme carriers for use in membrane reactors. Owing to the large dimensions of CEPEI reversed micelles, they are effectively kept back by a semipermeable membrane, thus allowing an easy separation of the reaction product and convenient recovery of the enzyme.
有人提出了一种基于聚合物表面活性剂反胶束的新型微非均相非水酶促反应介质。这种名为CEPEI的表面活性剂是通过用十六烷基溴和乙基溴对聚乙烯亚胺进行连续烷基化反应合成的,发现它能够在苯/正丁醇混合物中溶解大量的水。通过准弹性激光光散射测定,聚合物反胶束的流体动力学半径估计在22 - 51纳米范围内,这取决于体系的含水量。聚合物反胶束能够在非极性溶剂中溶解酶(α-胰凝乳蛋白酶和漆酶)并保留催化活性。由于CEPEI在很宽的pH范围内具有很强的缓冲性能,它能够维持水合反胶束内部任何调节好的pH值。结果发现,包裹在聚合物反胶束中的酶的催化行为对作为水相成分引入体系的缓冲溶液的pH值相当不敏感,而主要由聚合物表面活性剂本身的酸碱性质决定。包裹的α-胰凝乳蛋白酶和漆酶的催化活性和稳定性都随着体系含水量的增加而提高。在某些条件下,与水溶液相比,将α-胰凝乳蛋白酶包裹到CEPEI反胶束中会导致催化活性和稳定性显著提高。CEPEI反胶束被证明是用于膜反应器的有前途的酶载体。由于CEPEI反胶束尺寸较大,它们能被半透膜有效地截留,从而便于分离反应产物并方便地回收酶。