Dept. of Biochemistry, Sciences & Research Branch of Islamic Azad University, Tehran, Iran.
Anal Chim Acta. 2010 Aug 24;675(2):181-4. doi: 10.1016/j.aca.2010.07.004. Epub 2010 Jul 15.
In this study, a new effective, pH and thermally stable glucose oxidase (GOX)-silver nanoparticles (AgNPs) bioconjugate was designed. AgNPs were synthesized based on the reduction of silver nitrate (AgNO(3)) by sodium borohydride (NaBH(4)) using two simple procedures. Periodic acid was used for oxidation of the GOX and emission of Lucifer yellow (LyCH) was monitored by spectrofluorometer for evaluation of the oxidation properties of the GOX. The oxidized GOX (Ox-GOX) was immobilized on AgNPs by its sugar moieties via 6-aminohexanoic acid (6AHA) as linker. A sample of the synthesized bioconjugate was loaded on 7.5% non-denaturing polyacrylamide gel electrophoresis (PAGE) to confirm its structural and physical stability. The results from enzymatic activity assay showed that the bioconjugate, GOX and Ox-GOX were similar in stability and activity in acidic and basic pH (optimum pH=7.0-8.0). Based on the results from thermal stability assay, it was found that the activity of the bioconjugate was found to be higher at lower temperatures. The V(max) of the bioconjugate, GOX, and Ox-GOX was estimated as 28.6, 6.2, and 6 IU microg(-1) enzyme and the K(m) was calculated as 2.7, 9, and 9.5 mM, respectively. It was found that the immobilization method improves the activity and stability of the GOX in different pH and temperatures. As a conclusion, the proposed method opens up the way to the development of a new bioconjugate with potential use in sensing, and many find potential applications in clinical diagnostics, medicine, and industries.
在这项研究中,设计了一种新的有效、pH 值稳定和热稳定的葡萄糖氧化酶(GOX)-银纳米粒子(AgNPs)生物缀合物。AgNPs 是通过两种简单的程序,用硼氢化钠(NaBH(4))还原硝酸银(AgNO(3))合成的。过碘酸用于氧化 GOX,并用荧光分光光度计监测 Lucifer yellow(LyCH)的发射,以评估 GOX 的氧化性质。氧化的 GOX(Ox-GOX)通过其糖部分与 6-氨基己酸(6AHA)作为连接子固定在 AgNPs 上。将合成的生物缀合物的样品加载到 7.5%非变性聚丙烯酰胺凝胶电泳(PAGE)上,以确认其结构和物理稳定性。酶活性测定的结果表明,在酸性和碱性 pH 值(最佳 pH 值=7.0-8.0)下,生物缀合物、GOX 和 Ox-GOX 具有相似的稳定性和活性。根据热稳定性测定的结果,发现生物缀合物在较低温度下的活性更高。生物缀合物、GOX 和 Ox-GOX 的 V(max)分别估计为 28.6、6.2 和 6 IU microg(-1)酶,K(m)分别计算为 2.7、9 和 9.5 mM。发现固定化方法提高了 GOX 在不同 pH 值和温度下的活性和稳定性。总之,所提出的方法为开发具有潜在传感应用的新型生物缀合物开辟了道路,在临床诊断、医学和工业中有许多潜在的应用。