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首页> 外文期刊>Enzyme and Microbial Technology >Improvement of the stability of glucose oxidase via encapsulation in sodiun alginate-cellulose sulfate-poly(methylene-co-guanidine) capsules
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Improvement of the stability of glucose oxidase via encapsulation in sodiun alginate-cellulose sulfate-poly(methylene-co-guanidine) capsules

机译:通过封装在藻酸钠-硫酸纤维素-聚乙烯-共胍)胶囊中改善葡萄糖氧化酶的稳定性

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摘要

Encapsulation of glucose oxidase (GOD) in polyelectrolyte complex capsules and its influence on properties of the enzyme is reported. The immobilization of GOD in the capsules made of sodium alginate (SA), cellulose sulfate (CS), poly(methylene-co-guanidine) (PMCG), CaCl2 and NaCl (GOD-SA-CS/PMCG capsules) was achieved using a one-step highly reproducible encapsulation protocol which was monitored by a Electrospray Ionization-Mass Spectrometry (ESI-MS). A leakage of the enzyme from the capsules was negligible. Encapsulated GOD exhibited higher thermostability, wider range of pH optimum and improved storage stability in comparison with free GOD. The 92% retained activity by the encapsulated GOD after 45 biooxidation cycles was markedly higher than that of the GOD entrapped in calcium pectate gel beads showing no activity after 12 cycles. Optimization of conditions of oxygen supplementation resulted in increased oxygen availability within the GOD-SA-CS/PMCG capsules. Oxygen supplementation was accompanied with a mild decrease in the mechanical resistance of the SA-CS/PMCG capsules.
机译:报道了葡萄糖氧化酶(GOD)在聚电解质复合物胶囊中的封装及其对酶性能的影响。将GOD固定在藻酸钠(SA),硫酸纤维素(CS),聚亚甲基-共胍(PM​​CG),CaCl2和NaCl(GOD-SA-CS / PMCG胶囊)制成的胶囊中一步可高度重现的封装方案,可通过电喷雾电离质谱法(ESI-MS)进行监控。酶从胶囊中的渗漏可以忽略不计。与游离的GOD相比,封装的GOD表现出更高的热稳定性,最适的pH值范围和改善的存储稳定性。在45个生物氧化循环后,被封装的GOD保留的92%的活性明显高于在12个循环后未显示活性的果胶钙凝胶珠粒中包裹的GOD的保留活性。氧气补充条件的优化导致GOD-SA-CS / PMCG胶囊内的氧气供应增加。补充氧气会导致SA-CS / PMCG胶囊的机械阻力出现轻度降低。

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