Biomolecular Photonics Group, University Hospital Jena, Teichgraben 8, 07743 Jena, Germany.
Nanotechnology. 2010 Feb 5;21(5):055501. doi: 10.1088/0957-4484/21/5/055501. Epub 2009 Dec 21.
In this study, we describe the design of new ratiometric fluorescent nanosensors, whose architecture is based on a gold core surrounded by a poly(vinyl alcohol)-polyacetal shell. To the gold core, indicator dyes and reference dyes are attached via a cysteine linker. This nanosensor architecture is flexible with regards to the number and types of fluorophore linkages possible. The robust poly(vinyl alcohol)-polyacetal shell protects the fluorophores linked to the core from non-specific interactions with intracellular proteins. The nanosensors developed in this way are biocompatible and can be easily incorporated into mammalian cells without the use of transfection agents. Here, we show the application of these nanosensors for intracellular pH and sodium ion measurements.
在这项研究中,我们描述了新型比率荧光纳米传感器的设计,其结构基于金核,周围是聚(聚乙烯醇)-聚缩醛壳。金核通过半胱氨酸连接子连接指示剂染料和参比染料。这种纳米传感器结构在可能的荧光团连接数量和类型方面具有灵活性。坚固的聚(聚乙烯醇)-聚缩醛壳保护与核心相连的荧光团免受与细胞内蛋白质的非特异性相互作用。以这种方式开发的纳米传感器具有生物相容性,无需转染剂即可轻松整合到哺乳动物细胞中。在这里,我们展示了这些纳米传感器在细胞内 pH 值和钠离子测量中的应用。