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Study of Bi-Enzyme Immobilization onto Layered Double Hydroxides Nanomaterials for Histamine Biosensor Application

机译:用于组胺生物传感器的层状双氢氧化物纳米材料上双酶固定化的研究

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摘要

In this work, we present the development of a hybrid biomembrane based on the immobilization of diamine oxidase (DAO) into LDH thin films for histamine detection. The LDHs preselected as host matrixes are: hydrotalcites (Mg_2Al(CO_3)_(0.5)(OH)_6), lowaite (Mg_4Fe(OH)_(10)Cl) and hydrocalumite (Ca_2Al(OH)_6Cl). The immobilized probes were characterized by atomic force microscopy (AFM) and attenuated total reflection infrared spectroscopy (IR-ATR mode). The analysis of these results shows that the immobilization of DAO occurs with all type of selected LDH and is stable after a 7 day-immersion in phosphate buffer solution. The LDH incorporating magnesium or calcium divalent cations present high-quality surface topology for DAO immobilization and the ability to keep the enzyme in a well conformation for biogenic amines catabolism and histamine detection.
机译:在这项工作中,我们介绍了基于将二胺氧化酶(DAO)固定在LDH薄膜中用于组胺检测的杂化生物膜的开发。预先选定为主体基质的LDH为:水滑石(Mg_2Al(CO_3)_(0.5)(OH)_6),低铝矾土(Mg_4Fe(OH)_(10)Cl)和水铝钙石(Ca_2Al(OH)_6Cl)。固定的探针通过原子力显微镜(AFM)和衰减全反射红外光谱(IR-ATR模式)进行表征。对这些结果的分析表明,DAO的固定发生在所有类型的所选LDH上,并且在磷酸盐缓冲液中浸泡7天后稳定。结合了镁或钙二价阳离子的LDH为DAO固定化提供了高质量的表面拓扑结构,并具有使酶保持良好构象的能力,可用于生物胺分解代谢和组胺检测。

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