| Literature DB >> 26309767 |
Po-Fu Chen1, Chien-Liang Liu2, Wei-Kuan Lin1, Kuan-Chieh Chen1, Pi-Tai Chou2, Shi-Wei Chu3.
Abstract
Insulin-gold nanoclusters exhibit outstanding biocompatibility, photostability, and fluorescence quantum efficiency. However, they have never been used in superresolution microscopy, which requires nonlinear switching or saturation of fluorescence. Here we examine the fluorescence and stimulated emission depletion properties of gold nanoclusters. Their bleaching rate is very slow, demonstrating superior photostability. Surprisingly, however, the best depletion efficiency is less than 70%, whereas the depletion intensity requirement is much higher than the expectation from a simple two-level model. Fluorescence lifetime measurement revealed two distinct lifetime components, which indicate intersystem and reverse intersystem crossing during excitation. Based on population dynamic calculation, excellent agreement of the maximal depletion efficiency is found. Our work not only features the first examination of STED with metallic clusters, but also reveals the significance of molecular transition dynamics when considering a STED labeling.Entities:
Keywords: (160.1435) Biomaterials; (160.2540) Fluorescent and luminescent materials; (160.4236) Nanomaterials; (180.1790) Confocal microscopy; (250.6715) Switching
Year: 2015 PMID: 26309767 PMCID: PMC4541531 DOI: 10.1364/BOE.6.003066
Source DB: PubMed Journal: Biomed Opt Express ISSN: 2156-7085 Impact factor: 3.732