Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University , 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Phys Chem B. 2011 Sep 1;115(34):10335-45. doi: 10.1021/jp203632g. Epub 2011 Aug 4.
An oxidative enzyme, horseradish peroxidase (HRP), was immobilized on phosphorus- and/or calcium-modified MCM-41 mesoporous silicas with suitable pore diameters. Structural analyses by means of XRD and nitrogen adsorption confirmed that the P- and/or Ca-modified MCM-41 materials retained their structural quality even after the modification or the enzyme immobilization. Detailed studies of the adsorption behaviors and characterization using FT-IR spectroscopy and zeta potential measurements revealed that the P and Ca atoms attached on the silica surface provided increased uptake of HRP molecules, which is attributable to the more negatively charged surface or strong interatomic interactions between these atoms and the functional groups of the enzyme. In particular, P-modified MCM-41 showed an improved adsorption capacity in a short adsorption period and over a wide pH range without denaturation of the protein structure, in which the largest HRP adsorption capacity was 154 mg/g. Furthermore, HRP immobilized on P-modified MCM-41 showed higher enzymatic activity and reusability in the oxidation of 1,2-diaminobenzene in an organic solvent at a temperature of 37 °C than that immobilized on the parent MCM-41. This enhancement in enzymatic activity can be related to the structural integrity of loaded HRP molecules and the strong adsorption on the P-MCM-41 surface. This work thus demonstrates that mesoporous silica bearing P and/or Ca atoms can provide a surface environment suitable for enzyme immobilization.
一种氧化酶,辣根过氧化物酶(HRP),被固定在磷和/或钙改性的介孔 MCM-41 介孔硅上,具有合适的孔径。通过 XRD 和氮气吸附的结构分析证实,即使在改性或酶固定化后,P 和/或 Ca 改性的 MCM-41 材料也保留了其结构质量。使用傅里叶变换红外光谱和动电电势测量的吸附行为和特征的详细研究表明,附着在硅表面上的 P 和 Ca 原子提供了 HRP 分子的增加摄取,这归因于表面带更多负电荷或这些原子与酶的官能团之间的强原子间相互作用。特别是,P 改性的 MCM-41 在短吸附期和较宽的 pH 范围内显示出改善的吸附能力,而蛋白质结构不会变性,其中最大的 HRP 吸附容量为 154mg/g。此外,在 37°C 的有机溶剂中,固定在 P 改性的 MCM-41 上的 HRP 在 1,2-二氨基苯的氧化中表现出比固定在母体 MCM-41 上更高的酶活性和可重复使用性。这种酶活性的增强可以与负载的 HRP 分子的结构完整性和在 P-MCM-41 表面上的强吸附有关。这项工作因此表明,负载 P 和/或 Ca 原子的介孔硅可以提供适合酶固定化的表面环境。