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Preparation and characterization of mesoporous materials from a nonionic fluorinated surfactant: Adsorption of glucose oxidase

机译:由非离子氟化表面活性剂制备和表征介孔材料:葡萄糖氧化酶的吸附

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In this work, mesostructured silica materials prepared by using a nonionic fluorinated surfactant-based system have been used as supports for the adsorption of glucose oxidase (GOD). Prior to the enzyme adsorption, we have characterized in detail the mesoporous material and we have evidenced that the structural and textural properties of the matrix are not affected by the treatment in water at room temperature. Due to its large size, GOD is not immobilized within the mesopore but on the surface. However, the FTIR analysis shows that GOD strongly interacts with the matrix. Indeed, the vibration due to the free silanol groups (3741cm-1) progressively vanished with the increase in the GOD loading. This also shows that interactions between GOD and silica occur through hydrogen bonds between NH or C O groups of the enzyme and the surface silanol groups of the mesostructure. The quantity of adsorbed enzyme has been determined by solid state UV spectroscopy. A colorimetric method was also used to test GOD activity. Our results show that the activity of the GOD immobilized on the mesoporous material is higher than the one of GOD immobilized on a non-templated silica support.
机译:在这项工作中,通过使用基于非离子氟化表面活性剂的系统制备的介孔结构二氧化硅材料已被用作吸附葡萄糖氧化酶(GOD)的载体。在酶吸附之前,我们已对中孔材料进行了详细表征,并证明了在室温下在水中进行处理不会影响基质的结构和质地。由于它的大尺寸,GOD不是固定在中孔内而是固定在表面上。但是,FTIR分析表明,GOD与基质强烈相互作用。确实,由于游离的硅烷醇基团(3741cm-1)而引起的振动随着GOD负荷的增加而逐渐消失。这也表明GOD和二氧化硅之间的相互作用是通过酶的NH或CO基团与介观结构的表面硅烷醇基团之间的氢键发生的。吸附的酶的量已经通过固态紫外光谱法确定。比色法也用于测试GOD活性。我们的结果表明,固定在中孔材料上的GOD的活性高于固定在非模板二氧化硅载体上的GOD的活性。

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