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Probing Intracellular Biomarkers and Mediators of Cell Activation Using Nanosensors and Bioorthogonal Chemistry
Author(s) -
Jered B. Haun,
Neal K. Devaraj,
Brett Marinelli,
Hakho Lee,
Ralph Weissleder
Publication year - 2011
Publication title -
acs nano
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.554
H-Index - 382
eISSN - 1936-086X
pISSN - 1936-0851
DOI - 10.1021/nn200333m
Subject(s) - bioorthogonal chemistry , intracellular , nanomaterials , nanotechnology , biosensor , nanosensor , chemistry , cytosol , click chemistry , tetrazine , biophysics , nanoparticle , combinatorial chemistry , materials science , biochemistry , biology , organic chemistry , enzyme
Nanomaterials offer unique physical properties that make them ideal biosensors for scant cell populations. However, specific targeting of nanoparticles to intracellular proteins has been challenging. Here, we describe a technique to improve intracellular biomarker sensing using nanoparticles that is based on bioorthogonal chemistry. Using trans-cyclooctene-modified affinity ligands that are administered to semipermeabilized cells and revealed by cycloaddition reaction with tetrazine-conjugated nanoparticles, we demonstrate site-specific amplification of nanomaterial binding. We also show that this technique is capable of sensing protein biomarkers and phosho-protein signal mediators, both within the cytosol and nucleus, via magnetic or fluorescent modalities. We expect the described method will have broad applications in nanomaterial-based diagnostics and therapeutics.

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