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首页> 外文期刊>Current opinion in colloid & interface science >Enzyme encapsulation in nanostructured self-assembled structures: Toward biofunctional supramolecular assemblies
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Enzyme encapsulation in nanostructured self-assembled structures: Toward biofunctional supramolecular assemblies

机译:纳米结构自组装结构中的酶封装:朝向生物功能超分子组件

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Enzymes have come into use for many new applications outside their natural biological environment, taking advantage of their high efficiency and selectivity as biocatalysts. Such new application often requires encapsulation to preserve the structure and activity of the enzyme, but also to regulate and control the activity. Here, we will discuss two types of encapsulation, soft matrices consisting of polar lipid liquid crystals and hard ordered mesoporous silica matrices. For both types of matrices, the challenge is to control the pore size of the matrices and the interaction with the matrix interface. Here, the polar lipid liquid crystals offer larger flexibility than silica, but on the other hand, it is considerably more sensitive to the environment.
机译:酶已在其天然生物环境之外的许多新应用中使用,从而利用它们作为生物催化剂的高效率和选择性。 这种新应用通常需要封装来保留酶的结构和活性,而且还要调节和控制活性。 在这里,我们将讨论两种类型的封装,由极性脂质液晶和硬排序的中孔二氧化硅基质组成的软矩阵。 对于两种类型的矩阵,挑战是控制矩阵的孔径和与矩阵界面的交互。 这里,极性脂质液晶比二氧化硅提供更大的柔韧性,但另一方面,它对环境更敏感。

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