Study on intracellular delivery of liposome encapsulated quantum dots using advanced fluorescence microscopy

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Kristina Bruun
Carsten Hille
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[1] University of Potsdam,Physical Chemistry, Institute of Chemistry
[2] Technical University of Applied Sciences Wildau,undefined
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Scientific Reports | / 9卷
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Quantum dots increasingly gain popularity for in vivo applications. However, their delivery and accumulation into cells can be challenging and there is still lack of detailed information. Thereby, the application of advanced fluorescence techniques can expand the portfolio of useful parameters for a more comprehensive evaluation. Here, we encapsulated hydrophilic quantum dots into liposomes for studying cellular uptake of these so-called lipodots into living cells. First, we investigated photophysical properties of free quantum dots and lipodots observing changes in the fluorescence decay time and translational diffusion behaviour. In comparison to empty liposomes, lipodots exhibited an altered zeta potential, whereas their hydrodynamic size did not change. Fluorescence lifetime imaging microscopy (FLIM) and fluorescence correlation spectroscopy (FCS), both combined with two-photon excitation (2P), were used to investigate the interaction behaviour of lipodots with an insect epithelial tissue. In contrast to the application of free quantum dots, their successful delivery into the cytosol of salivary gland duct cells could be observed when applying lipodots. Lipodots with different lipid compositions and surface charges did not result in considerable differences in the intracellular labelling pattern, luminescence decay time and diffusion behaviour. However, quantum dot degradation after intracellular accumulation could be assumed from reduced luminescence decay times and blue-shifted luminescence signals. In addition to single diffusing quantum dots, possible intracellular clustering of quantum dots could be assumed from increased diffusion times. Thus, by using a simple and manageable liposome carrier system, 2P-FLIM and 2P-FCS recording protocols could be tested, which are promising for investigating the fate of quantum dots during cellular interaction.
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  • [41] Levenson RM(2013)Liposome encapsulation of fluorescent nanoparticles: Quantum dots and silica nanoparticles J. Am. Chem. Soc. 135 2871-792
  • [42] Chung LWK(2013)Entrapment in phospholipid vesicles quenches photoactivity of quantum dots Analyst 138 782-37
  • [43] Nie S(2014)Measurement of the diffusion coefficients of fluorescence beads and quantum dots by using fluorescence correlation spectroscopy Small 10 473-46
  • [44] Smith AM(2016)Liposome–Quantum Dot Complexes Enable Multiplexed Detection of Attomolar DNAs without Target Amplification Int. J. Mol. Sci. 17 8525-10382
  • [45] Dave S(2019)Probing site-exclusive binding of aqueous QDs and their organelle-dependent dynamics in live cells by single molecule spectroscopy J. Nanobiotechnology 17 35-815
  • [46] Nie S(2013)Fluorescence Lifetime Imaging and FRET-Induced Intracellular Redistribution of Tat-Conjugated Quantum Dot Nanoparticles through Interaction with a Phthalocyanine Photosensitiser Anal. Bioanal. Chem. 405 033104-65
  • [47] True L(1994)Fluorescence-Lifetime Imaging Microscopy for Visualization of Quantum Dots’ Endocytic Pathway J. Morphol. 220 10377-1924
  • [48] Gao X(2006)Uptake and distribution of carboxylated quantum dots in human mesenchymal stem cells: cell growing density matters Rev. Sci. Instrum. 77 809-2008
  • [49] Freeman R(2000)Time-resolved fluorescence microscopy for quantitative Ca Proc. Natl. Acad. Sci. USA 97 2251-49
  • [50] Hu X(1986) imaging in living cells Biophys. J. 49 1915-317