Functionalized silicon quantum dots tailored for targeted siRNA delivery

For RNA interference (RNAi) mediated silencing of the ABCB1 gene in Caco-2 cells biocompatible luminescent silicon quantum dots (SiQDs) were developed to serve as self-tracking transfection tool for ABCB1 siRNA. While the 2–3 nm sized SiQD core exhibits green luminescence, the QD surfaces are comple...

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Veröffentlicht in:Biochemical and biophysical research communications 2009-09, Vol.387 (1), p.164-168
Hauptverfasser: Klein, S., Zolk, O., Fromm, M.F., Schrödl, F., Neuhuber, W., Kryschi, C.
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Sprache:eng
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Zusammenfassung:For RNA interference (RNAi) mediated silencing of the ABCB1 gene in Caco-2 cells biocompatible luminescent silicon quantum dots (SiQDs) were developed to serve as self-tracking transfection tool for ABCB1 siRNA. While the 2–3 nm sized SiQD core exhibits green luminescence, the QD surfaces are completely saturated with covalently linked 2-vinylpyridine that may electrostatically bind siRNA. For down-regulating P-glycoprotein (Pgp) expression of the ABCB1 gene the SiQDs were complexed with siRNA. The cellular uptake and allocation of SiQD–siRNA complexes in Caco-2 cells were monitored using confocal laser scanning microscopy and transmission electron microscopy. The release of siRNA to the cytoplasm was verified through real-time PCR quantification of the reduced ABCB1 mRNA level. Additional evidence was obtained from time-resolved in situ fluorescence spectroscopic monitoring of the Pgp efflux dynamics in transfected Caco-2 cells which yielded significantly reduced transporter efficiencies for the Pgp substrate Rhodamine 123.
ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2009.06.144