Immobilization of horseradish peroxidase on multi-armed magnetic graphene oxide composite : improvement of loading amount and catalytic activity / Junhui Rong, Zijuan Zhou, Yun Wang, Juan Han, Chunmei Li, Wenli Zhang, Liang Ni.
Sažetak

In this study, a novel type of multi-armed polymer (poyltehylene glycol, PEG) magnetic graphene oxide (GO) composite (GO@Fe3O4@6arm-PEG-NH2) has been synthesized as a support for immobilization of horseradish peroxidase (HRP) for the first time. The loading amount of HRP was relatively high (186.34 mg/g) due to the surface of carrier material containing a large amount of amino groups from 6arm-PEG-NH2, but degradation rate of phenols was also much higher (95.4 %), which is attributed to the synergistic effect between the free HRP (45.4 %) and the support material of GO@Fe3O4@6arm-PEG-NH2 (13.6 %). Compared with the free enzyme, thermal, storage and operational stability of the immobilized HRP improved. The immobilized HRP still retained over 68.1 % activity after being reused 8 times. These results suggest that the multi-armed magnetic composite has good application prospect for enzyme immobilization.; U ovom je radu po prvi puta sintetiziran novi tip zvjezdastog kompozita polietilen glikola (PEG) s grafen oksidom (GO@Fe3O4@6arm-PEG-NH2), te je upotrijebljen kao podloga za imobilizaciju peroksidaze iz hrena. Udjel peroksidaze iz hrena na kompozitu bio je relativno velik (186,34 mg/g) zbog velikog broja amino skupina iz 6arm-PEG-NH2 prisutnih na površini nosača. Brzina razgradnje fenolnih spojeva bila je bitno veća (95,4 %) zbog sinergijskog učinka slobodne peroksidaze (45,4 %) i podloge (13,6 %). Nakon imobilizacije povećala se toplinska stabilnost, te su se produljili vrijeme trajanja i iskoristivost enzima u usporedbi sa slobodnim enzimom. Imobilizirana peroksidaza je zadržala više od 68,1 % aktivnosti i nakon što je upotrijebljena osam puta. Rezultati pokazuju da se zvjezdasti magnetizirani kompozit može uspješno primijeniti za imobilizaciju enzima.