Kinetic resolution of racemic naproxen methyl ester by magnetic and non-magnetic cross-linked lipase aggregates

被引:9
作者
Salgin, Sema [1 ]
Cakal, Mustafa [1 ]
Salgin, Ugur [1 ]
机构
[1] Sivas Cumhuriyet Univ, Dept Chem Engn, Fac Engn, TR-58140 Sivas, Turkey
关键词
CLEAs; kinetic resolution; lipase; magnetic CLEAs; naproxen methyl ester; CANDIDA-RUGOSA LIPASE; COMBI-CLEAS; NANOPARTICLES; HYDROLYSIS; SEPARATION;
D O I
10.1080/10826068.2019.1679178
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
In this study, the non-magnetic and the magnetic cross-linked enzyme aggregates (CLEAs) from Candida rugosa lipase were synthesized to catalyze the kinetic resolution reaction of naproxen methyl ester (NME). Magnetic iron oxide nanoparticles (MIONPs) were produced through co-precipitation method and their surfaces were modified by silanization reaction. The MIONPs were used as a platform to synthesize the magnetic CLEAs (M-CLEAs). The biocatalysts and MIONPs synthesized were characterized by FTIR spectroscopy and SEM analysis. The kinetic resolution of racemic NME was studied in aqueous buffer solution/isooctane biphasic system to compare the performance of M-CLEAs and CLEAs. The effects of reaction parameters such as temperature, pH, stirring rate on the enantiomeric excess of the substrate (ee(s)%) were investigated in a batch reactor system. The activity recovery of CRL enzyme in CLEAs was higher than M-CLEAs. Compared with M-CLEAs, CLEAs biocatalysts had previously reached ee(s)% values. Although both biocatalysts showed similar cavity structure from SEM analysis, the lower performance of M-CLEAs may be due to the different microenvironments of M-CLEAs from CLEAs. However, the reusability performance of M-CLEAs was higher than that of CLEAs. The optimal reaction conditions for M-CLEAs and CLEAs were found to be 37 degrees C, pH 7.5, and 300 rpm.
引用
收藏
页码:148 / 155
页数:8
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