Endo Suguru, Ozawa Tomohiro, Inomata Tomohiko, Masuda Hideki
Graduate School of Engineering, Nagoya Institute of Technology.
Faculty of Engineering, Aichi Institute of Technology.
Yakugaku Zasshi. 2024;144(6):643-650. doi: 10.1248/yakushi.23-00197-3.
Inspired by the mechanism by which microorganisms utilize siderophores to ingest iron, four different Fe complexes of typical artificial siderophore ligands containing catecholate and/or hydroxamate groups, K[Fe-L], K[Fe-L], K[Fe-L], and [Fe-L], were prepared. They were modified on an Au substrate surface (Fe-L/Au) and applied as microorganism immobilization devices for fast, sensitive, selective detection of microorganisms, where HL, HL, HL, and HL denote the tri-catecholate, biscatecholate-monohydroxamate, monocatecholate-bishydroxamate, and tri-hydroxamate type of artificial siderophores, respectively. Their adsorption properties for the several microorganisms were investigated using scanning electron microscopy (SEM), quartz crystal microbalance (QCM), and electric impedance spectroscopy (EIS) methods. The artificial siderophore-iron complexes modified on the Au substrates Fe-L/Au, Fe-L/Au, Fe-L/Au, and Fe-L/Au showed specific microorganism immobilization behavior with selectivity based on the structure of the artificial siderophores. Their specificities corresponded well with the structural characteristics of natural siderophores that microorganisms release from the cell and/or use to take up an iron. These findings suggest that release and uptake are achieved through specific interactions between the artificial siderophore-Fe complexes and receptors on the cell surfaces of microorganisms. This study revealed that Fe-L/Au systems have specific potential to serve as effective immobilization probes of microorganisms for rapid, selective detection and identification of a variety of microorganisms.
受微生物利用铁载体摄取铁的机制启发,制备了四种含有儿茶酚和/或异羟肟酸基团的典型人工铁载体配体的不同铁配合物,即K[Fe-L]、K[Fe-L]、K[Fe-L]和[Fe-L]。它们被修饰在金基底表面(Fe-L/Au),并用作微生物固定装置,用于快速、灵敏、选择性地检测微生物,其中HL、HL、HL和HL分别表示三儿茶酚型、二儿茶酚-单异羟肟酸型、单儿茶酚-二异羟肟酸型和三异羟肟酸型人工铁载体。使用扫描电子显微镜(SEM)、石英晶体微天平(QCM)和电阻抗谱(EIS)方法研究了它们对几种微生物的吸附特性。修饰在金基底Fe-L/Au、Fe-L/Au、Fe-L/Au和Fe-L/Au上的人工铁载体-铁配合物表现出基于人工铁载体结构的具有选择性的特定微生物固定行为。它们的特异性与微生物从细胞中释放和/或用于摄取铁的天然铁载体的结构特征非常吻合。这些发现表明,释放和摄取是通过人工铁载体-Fe配合物与微生物细胞表面受体之间的特异性相互作用实现的。这项研究表明,Fe-L/Au系统具有作为微生物有效固定探针的特定潜力,可用于快速、选择性地检测和鉴定多种微生物。