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Search: WFRF:(Gallina Maria Elena)

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  • Chan, Yang-Hsiang, et al. (author)
  • Reversible Photoswitching of Spiropyran-Conjugated Semiconducting Polymer Dots
  • 2012
  • In: Analytical Chemistry. - : American Chemical Society (ACS). - 0003-2700 .- 1520-6882. ; 84:21, s. 9431-9438
  • Journal article (peer-reviewed)abstract
    • Semiconducting polymer dots (Pdots) recently have emerged as a new class of ultrabright fluorescent probes with promising applications in biological detection and imaging. We developed photoswitchable Pdots by conjugating photochromic spiropyran molecules onto poly[9,9-dioctylfluorenyl-2,7-diyl)-co-1,4-benzo-{2,1′-3}-thiadiazole)] (PFBT). The modulation of fluorescence was achieved by ultraviolet irradiation, which converted spiropyran into its visible-absorbing merocyanine form. The merocyanine efficiently quenched the fluorescence of PFBT via Förster resonance energy transfer (FRET). We then reversed the quenching by subsequent irradiation with visible light to get back the fluorescence of PFBT. This FRET-based photomodulation of Pdot fluorescence could be repeated multiple times. We next conjugated biomolecules onto the surface of these photoswitchable Pdots and demonstrated their specific cellular and subcellular labeling to different types of cells without any noticeable nonspecific binding. We anticipate these photoswitchable and biocompatible Pdots will be useful in developing bioimaging techniques in the future.
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3.
  • Rong, Yu, et al. (author)
  • Multicolor Fluorescent Semiconducting Polymer Dots with Narrow Emissions and High Brightness
  • 2013
  • In: ACS Nano. - : American Chemical Society. - 1936-0851 .- 1936-086X. ; 7:1, s. 376-384
  • Journal article (peer-reviewed)abstract
    • Fluorescent semiconducting polymer dots (Pdots) have attracted great interest because of their superior characteristics as fluorescent probes, such as high fluorescence brightness, fast radiative rates, and excellent photostability. However, currently available Pdots generally exhibit broad emission spectra, which significantly limit their usefulness in many biological applications Involving multiplex detections. Here, we describe the design and development of multicolor narrow emissive Pdots based on different boron dipyrromethene (BODIPY) units. BODIPY-containing semiconducting polymers emitting at multiple wavelengths were synthesized and used as precursors for preparing the Pdots, where intraparticle energy transfer led to highly bright, narrow emissions. The emission full width at half-maximum of the resulting Pdots varies from 40 to 55 nm, which is 15-2 times narrower than those of conventional semiconducting polymer dots. BODIPY 520 Pdots were about an order of magnitude brighter than commercial Qdot 525 under identical laser excitation conditions. Fluorescence imaging and flow cytometry experiments indicate that the narrow emissions from these bright Pdots are promising for multiplexed biological detections.
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  • Result 1-4 of 4
Type of publication
journal article (4)
Type of content
peer-reviewed (4)
Author/Editor
Zhang, Xuanjun (4)
Chan, Yang-Hsiang (4)
Gallina, Maria Elena (4)
Wu, I-Che (4)
Chiu, Daniel T (4)
Sun, Wei (3)
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Ye, Fangmao (3)
Jin, Yuhui (2)
Rong, Yu (2)
Wu, Changfeng (2)
Yu, Jiangbo (2)
Uvdal, Kajsa (1)
Zhang, Yong (1)
Zeigler, Maxwell (1)
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University
Linköping University (4)
Language
English (4)
Research subject (UKÄ/SCB)
Natural sciences (2)

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