Publication Type Journal Article
Title Quantitative ratiometric phosphorescence hypoxia-sensing nanoprobes based on quantum dots/Ir(III) glycerol monoolein cubic-phase nanoparticles
Authors Jiajun Liu Youshen Wu Yao Yu Ke Li Yuanyuan Ji Daocheng Wu Miguel Brown Gary Goodwin
Groups G1 G2
Journal BIOSENSORS \& BIOELECTRONICS
Year 2017
Month December
Volume 98
Number
Pages 119-125
Abstract A novel protocol is developed to prepare quantum dot (QD)/Ir(III) complex glycerol monoolein (GMO) cubic-phase nanoparticles (Qd/Ir GMCPNPs) as hypoxia nanoprobes, in which hypoxia probe Tris [1-phenylisoquinoline-C2, N] Iridium(III) [Ir(piq)(3)] and the reference QDs are separately loaded at hydrophilic and hydrophobic channels to avoid interference. Qd/Ir GMCPNPs were nearly spherical in shape, with an average size of 20-30 nm. Their phosphorescence spectra showed that nanoprobes have a wide excited wave length range of 360-500 nm, which is suitable for different types of measurement instruments. When the oxygen content decreased from 21\% to 1\%, the luminescent intensity ratio of Qd/Ir GMCPNPs in the solution and cells increased 4-fold and 2.8-fold, respectively, with an acceptable linear relationship. Particularly, extensive preliminary quantitative ratiometric oxygen sensing and long tumor imaging monitoring can be achieved with these nanoprobes.
DOI http://dx.doi.org/10.1016/j.bios.2017.06.043
ISBN
Publisher
Book Title
ISSN 0956-5663
EISSN 1873-4235
Conference Name
Bibtex ID ISI:000407538300017
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