2013
DOI: 10.1085/jgp.1424oia31
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Biocompatible fluorescent silicon nanocrystals for single-molecule tracking and fluorescence imaging

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Cited by 6 publications
(11 citation statements)
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“…SiQDs have been used for tracking transferrin receptor activity in rat kidney cells by conjugating the SiQDs to transferrin. This method allowed tracking individual transferrin molecules for 10‐fold longer compared with fluorescent dyes (Nishimura et al ., 2013). SiQDs have also been used for imaging water flea embryos, as SiQDs were localised in the gut, yolk sac and eye lenses (D'Amora et al ., 2019).…”
Section: Fluorescent Nanoparticles In Biological Researchmentioning
confidence: 99%
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“…SiQDs have been used for tracking transferrin receptor activity in rat kidney cells by conjugating the SiQDs to transferrin. This method allowed tracking individual transferrin molecules for 10‐fold longer compared with fluorescent dyes (Nishimura et al ., 2013). SiQDs have also been used for imaging water flea embryos, as SiQDs were localised in the gut, yolk sac and eye lenses (D'Amora et al ., 2019).…”
Section: Fluorescent Nanoparticles In Biological Researchmentioning
confidence: 99%
“…Generally, fluorescence excitation is achieved with a light source or radioactive energy (Liu et al ., 2010). Light sources that have been used include continuous wave (CW) or pulsed lasers (Whiteside et al ., 2009), Hg lamps (Whiteside et al ., 2009; Nishimura et al ., 2013), Xe lamps (Ma et al ., 2008; Cayuela et al ., 2013; Brandt et al ., 2015) and LEDs (Minnaar & Anderson, 2019; Minnaar et al ., 2019). Additionally, FNP fluorescence can be achieved indirectly via excitation of another chromophore and subsequent FRET between the chromophore and the FNP (Chou & Dennis, 2015; Afsari et al ., 2016; Goryacheva et al ., 2017 b ).…”
Section: Quantification Of Fnpsmentioning
confidence: 99%
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“…Silicon nanoparticles (SiNPs) are being used in the manufacture of finest sensors and nanoprobes for various bioimaging applications. These nanoparticles are highly porous with high surface area to volume ratio and possess unique chemical, biodegradable, electrical, and optical properties [72,73]. The product of biodegradation of silicon nanomaterials, for instance, orthosilicic acid is congenial with tissues in the body.…”
Section: Silicon-based Nanomaterialsmentioning
confidence: 99%