A1 Refereed original research article in a scientific journal

Comparison of infrared-excited up-converting phosphors and europium nanoparticles as labels in a two-site immunoassay




AuthorsUkonaho T, Rantanen T, Jamsen L, Kuningas K, Pakkila H, Lovgren T, Soukka T

PublisherELSEVIER SCIENCE BV

Publication year2007

Journal:Analytica Chimica Acta

Journal name in sourceANALYTICA CHIMICA ACTA

Journal acronymANAL CHIM ACTA

Volume596

Issue1

First page 106

Last page115

Number of pages10

ISSN0003-2670

DOIhttps://doi.org/10.1016/j.aca.2007.05.060


Abstract

Research in the field of immunoassays and labels used in the detection has been recently focused on particulate reporters, which possess very high specific activity that excludes the label as a sensitivity limiting factor. However, the large size and shape of the particulate labels may produce additional problems to immunoassay performance. The aim of this work was to study with two identical non-competitive two-site immunoassays whether up-converting phosphor (UCP) particles are comparable in performance with europium(III) chelate-dyed nanoparticles as particulate labels. In addition we strived to verify the common assumption of the photostability of up-converting phosphor particles supporting their potential applicability in imaging. Detection limits in two-site immunoassay for free prostate-specific antigen (free-PSA) were 0.53 ng L-1 and 1.3 ng L-1 using two different up-converting phosphors and 0.16 ng L-1 using europium(III) nanoparticle. Large size distribution and non-specific binding of up-converting phosphor particles caused assay variation in low analyte concentrations and limited the analytical detection limit. The nonspecific binding was the major factor limiting the analytical sensitivity of the immunoassay. The results suggests the need for nanoscaled and uniformely sized UCP-particles to increace the sensitivity and applicability of up-converting phosphor particles. Anti-Stokes photoluminescence of up-converting phosphor particles did not photobleach when measured repeatedly, on the contrary, the time-resolved fluorescence of europium nanoparticles photobleached relatively rapidly. (c) 2007 Elsevier B.V. All rights reserved.




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