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2008-AdvMat-Highly Emissive Self-assembled Organic Nanopartic__ les
DOI: 10.1002/adma.200701601
Highly Emissive Self-assembled Organic Nanoparticles having Dual
Color Capacity for Targeted Immunofluorescence Labeling**
By Hyong-Jun Kim, Jiseok Lee, Tae-Hoon Kim, Taek Seung Lee, and Jinsang Kim*
Immunofluorescence labeling is a very important analytical
technique for probing the structure of living cells. Such labeling
is conventionally carried out by using fluorescent organic dyes.
However, some drawbacks including a limited range of light
emission and particularly poor photo-stability[1] have limited
the usage of organic dyes. After the introduction of semicon-
ducting quantum dots[2,3] many research groups have investi-
gated inorganic quantum dots[4] for immunofluorescence
labeling due to their high quantum yield,[5] high molar extinc-
tion coefficients, broad absorption with narrow light emission,
and good photo physical and chemical stability.[6–9] Despite the
promising properties of semiconducting quantum dots for
immunofluorescence labeling, cyto-toxicity is a critical problem
in any live-cell or animal experiments.[10,11] Alternative choices
are dye-loaded latex particles and dye-doped silica colloids
having improved photostability compared to conventional dye
molecules. However, dye-loaded beads also have a critical limit
of brightness due to self-quenching when high density of dyes
present at the nanoparticle surface. In this context, developing
highly emissive, biocompatible, and chemically readily modifi-
able luminescent materials is strongly desired.
Recently, a few papers have been published reporting con-
jugated organic small molecules that showed higher quantum
yield in the solid state than in solution.[12–16] In other words,
self-quenching does not exist in these unique molecules. It has
opened a new possibility to develop non-toxic organic nano-
particles with enhanced emission for various applications in-
cluding immunofluorescence labeling. The reason for the lower
quantumyield in solution of someof thesemolecu
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