Leif Robert C, Vallarino Lidia M, Becker Margie C, Yang Sean
Newport Instruments, San Diego, CA, USA.
Cytometry A. 2006 Aug 1;69(8):767-78. doi: 10.1002/cyto.a.20321.
This review compares the chemical and physical properties of lanthanide ion complexes and of other narrow-emitting species that can be used as labels for cytometry. A series of luminescent lanthanide ion macrocyclic complexes, Quantum Dyes, which do not release or exchange their central lanthanide ion, do accept energy transfer from ligands, and are capable of covalent binding to macromolecules, including proteins and nucleic acids, is described and their properties are discussed. Two methods are described for increasing the luminescence intensity of lanthanide ion complexes, which intrinsically is not as high as that of standard fluorophores or quantum dots. One method consists of adding a complex of a second lanthanide ion in a micellar solution (columinescence); the other method produces dry preparations by evaporation of a homogeneous solution containing an added complex of a second lanthanide ion or an excess of an unbound antenna ligand. Both methods involve the Resonance Energy Transfer Enhanced Luminescence, RETEL, effect as the mechanism for the luminescence enhancement.
本综述比较了镧系离子配合物以及其他可作为细胞计数标记物的窄发射物种的化学和物理性质。描述了一系列发光镧系离子大环配合物——量子染料,它们不会释放或交换其中心镧系离子,能接受来自配体的能量转移,并且能够与包括蛋白质和核酸在内的大分子共价结合,并讨论了它们的性质。文中描述了两种提高镧系离子配合物发光强度的方法,镧系离子配合物本身的发光强度不如标准荧光团或量子点高。一种方法是在胶束溶液中加入第二种镧系离子的配合物(共发光);另一种方法是通过蒸发含有添加的第二种镧系离子配合物或过量未结合天线配体的均匀溶液来制备干制剂。这两种方法都涉及共振能量转移增强发光(RETEL)效应,作为发光增强的机制。