4.8 Article

Optically Encoded Semiconducting Polymer Dots with Single-Wavelength Excitation for Barcoding and Tracking of Single Cells

Journal

ANALYTICAL CHEMISTRY
Volume 89, Issue 11, Pages 6233-6239

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.7b01214

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Funding

  1. NIH [R21CA186798, R01MH113333]
  2. University of Washington

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Multiplexed optical encoding is emerging as a powerful technique for high throughput cellular analysis and molecular assays. Most of the developed optical barcodes, however, either suffer from large particle size or are incompatible with most commercial optical instruments. Here, a new type of nanoscale fluorescent barcode (Pdot barcodes) was prepared from semiconducting polymers. The Pdot barcodes possess the merits of small size (similar to 20 nm in diameter), narrow emission bands (full-width-at-half-maximum (fwhm) of 30-40 nm), three color emissions (blue, green, and red) under single-wavelength excitation, a high brightness, good pH and thermal stability, and efficient cellular uptake. The Pdot barcodes were prepared using a three-color and six-intensity encoding strategy; for ratiometric readout of the barcodes, one of the colors might be used as an internal reference. We used the Pdot barcodes to label 20 sets of cancer cells and then distinguished and identified each set based on the Pdot barcodes using flow cytometry. We also monitored and tracked single cells labeled with different Pdot barcodes, even through rounds of cell division. These results suggest Pdot barcodes are strong candidates for discriminating different labeled cell and for long-term cell tracking.

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