Department of Chemistry, University of New Orleans, New Orleans, Louisiana 70148, United States.
J Am Chem Soc. 2011 Feb 23;133(7):2028-30. doi: 10.1021/ja109348d. Epub 2011 Jan 31.
The paper describes the development of highly sensitive particle-based fluorescence resonance energy transfer (FRET) probes that do not use molecular fluorophores as donors and acceptors. In these probes, CdSe/ZnS luminescent quantum dots (QDs) were capped with multiple histidine-containing peptides to increase their aqueous solubility while maintaining their high emission quantum yield and spectral properties. The peptide-modified QDs (QD-His) were covalently attached to carboxyl-modified polystyrene (PS) microspheres to form highly emitting PS microspheres (QD-PS). Gold nanoparticles (AuNPs) were then covalently attached to the QD-PS surface to form AuNP-QD-PS composite microspheres that were used as FRET probes. Attachment of AuNPs to QD-PS completely quenched the QD emission through FRET interactions. The emission of QD-PS was restored when the AuNPs were removed from the surface by thiol ligand displacement. The new AuNP-QD-PS FRET platform is simple to prepare and highly stable, and it opens many new possibilities for carrying out FRET assays on microparticle-based platforms and in microarrays. The versatility of these assays could be greatly increased by replacing the linkers between the QDs and AuNPs with ones that selectively respond to specific cleaving agents or enzymes.
本文描述了高度灵敏的基于粒子的荧光共振能量转移(FRET)探针的开发,这些探针不使用分子荧光团作为供体和受体。在这些探针中,CdSe/ZnS 发光量子点(QDs)被多个含有组氨酸的肽封闭,以增加其水溶性,同时保持其高发射量子产率和光谱特性。肽修饰的 QDs(QD-His)通过共价键连接到羧基修饰的聚苯乙烯(PS)微球上,形成高发射 PS 微球(QD-PS)。然后,金纳米粒子(AuNPs)通过共价键连接到 QD-PS 表面,形成 AuNP-QD-PS 复合微球,用作 FRET 探针。AuNPs 与 QD-PS 的附着通过 FRET 相互作用完全猝灭了 QD 的发射。当通过硫醇配体置换从表面去除 AuNPs 时,QD-PS 的发射得到恢复。新的 AuNP-QD-PS FRET 平台制备简单且高度稳定,为在基于微粒的平台和微阵列上进行 FRET 分析开辟了许多新的可能性。通过用选择性响应特定切割剂或酶的连接子替换 QDs 和 AuNPs 之间的连接子,可以大大增加这些分析的多功能性。