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research article

Two-photon triggered photorelease of caged compounds from multifunctional harmonic nanoparticles

Vuilleumier, Jérémy  
•
Gaulier, Geoffrey
•
De Matos, Raphaël  
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July 5, 2019
ACS Applied Materials & Interfaces

The design of stimuli-responsive nanocarriers has raised much attention to achieve higher local concentration of therapeutics and mitigate the appearance of drug resistance. The combination of imaging properties and controlled photorelease of active molecules within the same nanoconjugate has a great potential for theranostic applications. In this study, a system for NIR light-triggered release of molecular cargos induced by the second harmonic emission from bismuth ferrite harmonic nanoparticles (BFO HNPs) is presented. Silica coated BFO HNPs were covalently conjugated to a photocaging tether based on coumarin (CM) and L-Tryptophan (Trp) as model molecular cargo. Upon femtosecond pulsed irradiation at 790 nm, Trp was efficiently released from the NPs surface in response to the harmonic emission of the nanomaterial at 395 nm. The emitted signal induced the photocleavage of the CM-Trp carbamate linkage resulting in the release of Trp, which was monitored and quantified by ultrahigh-performance liquid chromatography-mass spectrometry (UHPLC-MS). While a small fraction of the uncaging process could be attributed to the nonlinear absorption of CM derivatives, the main trigger responsible for Trp release was established as the second harmonic signal from BFO HNPs. This strategy may provide a new way for the application of functionalized HNPs in dual imaging-delivery theranostic protocols.

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Type
research article
DOI
10.1021/acsami.9b07954
Author(s)
Vuilleumier, Jérémy  
Gaulier, Geoffrey
De Matos, Raphaël  
Ortiz Trujillo, Daniel  
Menin, Laure  
Campargue, Gabriel
Mas, Christophe
Constant, Samuel
Le Dantec, Ronan
Mugnier, Yannick
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Date Issued

2019-07-05

Published in
ACS Applied Materials & Interfaces
Volume

11

Start page

27443

End page

27452

Subjects

Coumarin-based photosensitive tether

•

Harmonic nanoparticles

•

Light-triggered uncaging

•

Release quantification

•

Surface functionalization

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SCI-SB-SG  
FunderGrant Number

EU funding

NANOFIMT

Available on Infoscience
July 9, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/158966
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