Click and release: fluoride cleavable linker for mild bioorthogonal separation

Herein, we present a water dispersable, magnetic nanoparticle supported "click and release" system. The cleavable linker has been synthesized by using a strain-promoted copper-free "click" reagent to establish the specific link and a fluoride cleavable silane moiety for mild clea...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2016-01, Vol.52 (5), p.938-941
Hauptverfasser: Schneider, Elia M, Zeltner, Martin, Zlateski, Vladimir, Grass, Robert N, Stark, Wendelin J
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container_issue 5
container_start_page 938
container_title Chemical communications (Cambridge, England)
container_volume 52
creator Schneider, Elia M
Zeltner, Martin
Zlateski, Vladimir
Grass, Robert N
Stark, Wendelin J
description Herein, we present a water dispersable, magnetic nanoparticle supported "click and release" system. The cleavable linker has been synthesized by using a strain-promoted copper-free "click" reagent to establish the specific link and a fluoride cleavable silane moiety for mild cleavage. Small organic molecules, azide-bearing dyes and functionalized enzymes have been bound to the magnetic particle and released in a bioorthogonal way. A water dispersable, magnetic nanoparticle supported, bioorthogonal "click and release" system has been synthesized.
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source MEDLINE; Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Animals
Azides - chemistry
Azides - isolation & purification
Cattle
Chymotrypsin - chemistry
Chymotrypsin - isolation & purification
Chymotrypsin - metabolism
Cleavage
Click Chemistry
Dyes
Enzymes
Fluorescent Dyes - chemistry
Fluorescent Dyes - isolation & purification
Fluorides
Fluorides - chemistry
Magnetite Nanoparticles - chemistry
Nanostructure
Organic chemistry
Reagents
Silanes
Silanes - chemistry
Water - chemistry
title Click and release: fluoride cleavable linker for mild bioorthogonal separation
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