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Preparation and characterization of a thermostable enzyme (Mn-SOD) immobilized on supermagnetic nanoparticles

机译:固定在超磁性纳米粒子上的热稳定酶(Mn-SOD)的制备和表征

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Superoxide dismutase (SOD) has been widely applied in medical treatments, cosmetic, food, agriculture, and chemical industries. In industry, the immobilization of enzymes can offer better stability, feasible continuous operations, easy separation and reusing, and significant decrease of the operation costs. However, little attention has focused on the immobilization of the SOD, as well as the immobilization of thermostable enzymes. In this study, the recombinant thermostable manganese superoxide dismutase (Mn-SOD) of Thermus thermophilus wl was purified and covalently immobilized onto supermagnetic 3-APTES-modified Fe3O4@SiO2 nanoparticles using glutaraldehyde method to prepare the Mn-SOD bound magnetic nanoparticles. The Mn-SOD nanoparticles were characterized by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, X-ray diffraction, transmission electron microscopy, and vibrating sample magnetometer analysis. The results indicated that the diameter of Mn-SOD nanoparticles was 40 (± 5) nm, and its saturation magnetization value was 27.9 emu/g without remanence or coercivity. By comparison with the free Mn-SOD, it was found that the immobilized Mn-SOD on nanoparticles exhibited better resistance to temperature, pH, metal ions, enzyme inhibitors, and detergents. The results showed that the immobilized Mn-SOD on nanoparticles could be reused ten times without significant decrease of enzymatic activity. Therefore, our study presented a novel strategy for the immobilization of thermostable Mn-SOD and for the application of thermostable enzymes.
机译:超氧化物歧化酶(SOD)已广泛应用于医疗,化妆品,食品,农业和化学工业。在工业上,酶的固定化可以提供更好的稳定性,可行的连续操作,易于分离和重复使用以及显着降低操作成本。但是,很少有注意力集中在SOD的固定化以及热稳定酶的固定化上。本研究纯化了嗜热栖热菌的重组热稳定锰超氧化物歧化酶(Mn-SOD),并将其共价固定在超磁性3-APTES修饰的Fe 3 O 4 @上戊二醛法制备SiO 2 纳米粒子,制备了Mn-SOD结合磁性纳米粒子。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳,X射线衍射,透射电子显微镜和振动样品磁强计分析对Mn-SOD纳米颗粒进行表征。结果表明,Mn-SOD纳米粒子的直径为40(±5)nm,其饱和磁化值为27.9 emu / g,没有剩磁或矫顽力。通过与游离的Mn-SOD进行比较,发现固定在纳米颗粒上的Mn-SOD对温度,pH,金属离子,酶抑制剂和去污剂表现出更好的抵抗力。结果表明,固定在纳米颗粒上的Mn-SOD可以重复使用10次,而酶活性没有明显降低。因此,我们的研究提出了一种固定化热稳定的Mn-SOD和应用热稳定酶的新策略。

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