Bioconjugation of Ultrabright Semiconducting Polymer Dots for Specific Cellular Targeting
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- 7 October 2010
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 132 (43), 15410-15417
- https://doi.org/10.1021/ja107196s
Abstract
Semiconducting polymer dots (Pdots) represent a new class of ultrabright fluorescent probes for biological imaging. They exhibit several important characteristics for experimentally demanding in vitro and in vivo fluorescence studies, such as their high brightness, fast emission rate, excellent photostability, nonblinking, and nontoxic feature. However, controlling the surface chemistry and bioconjugation of Pdots has been a challenging problem that prevented their widespread applications in biological studies. Here, we report a facile yet powerful conjugation method that overcomes this challenge. Our strategy for Pdot functionalization is based on entrapping heterogeneous polymer chains into a single dot, driven by hydrophobic interactions during nanoparticle formation. A small amount of amphiphilic polymer bearing functional groups is co-condensed with the majority of semiconducting polymers to modify and functionalize the nanoparticle surface for subsequent covalent conjugation to biomolecules, such as streptavidin and immunoglobulin G (IgG). The Pdot bioconjugates can effectively and specifically label cellular targets, such as cell surface marker in human breast cancer cells, without any detectable nonspecific binding. Single-particle imaging, cellular imaging, and flow cytometry experiments indicate a much higher fluorescence brightness of Pdots compared to those of Alexa dye and quantum dot probes. The successful bioconjugation of these ultrabright nanoparticles presents a novel opportunity to apply versatile semiconducting polymers to various fluorescence measurements in modern biology and biomedicine.Keywords
This publication has 31 references indexed in Scilit:
- Nanoscale 3D Tracking with Conjugated Polymer NanoparticlesJournal of the American Chemical Society, 2009
- Conjugated Polymer Nanoparticles for Two‐Photon Imaging of Endothelial Cells in a Tissue ModelAdvanced Materials, 2009
- Ratiometric Single‐Nanoparticle Oxygen Sensors for Biological ImagingAngewandte Chemie International Edition, 2009
- Multicolour self-assembled particles of fluorene-based bolaamphiphilesChemical Communications, 2009
- Multicolor Conjugated Polymer Dots for Biological Fluorescence ImagingACS Nano, 2008
- Swelling-Controlled Polymer Phase and Fluorescence Properties of Polyfluorene NanoparticlesLangmuir, 2008
- Conjugated Polymer Dots for Multiphoton Fluorescence ImagingJournal of the American Chemical Society, 2007
- Chemical Sensors Based on Amplifying Fluorescent Conjugated PolymersChemical Reviews, 2007
- High-throughput fluorescence microscopy for systems biologyNature Reviews Molecular Cell Biology, 2006
- The Fluorescent Toolbox for Assessing Protein Location and FunctionScience, 2006