Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars.
Тип публикации: Journal Article
Дата публикации: 2015-07-16
scimago Q1
wos Q2
white level БС1
SJR: 0.763
CiteScore: 6
Impact factor: 3.9
ISSN: 07437463, 15205827
PubMed ID:
26154493
Spectroscopy
Electrochemistry
Condensed Matter Physics
General Materials Science
Surfaces and Interfaces
Краткое описание
The stability of thiol bonding on the surface of star-shaped gold nanoparticles was studied as a function of temperature in water and in a set of biologically relevant conditions. The stability was evaluated by monitoring the release of a model fluorescent dye, Bodipy-thiol (BDP-SH), from gold nanostars (GNSs) cocoated with poly(ethylene glycol) thiol (PEG-SH). The increase in the BDP-SH fluorescence emission, quenched when bound to the GNSs, was exploited to this purpose. A maximum 15% dye release in aqueous solution was found when the bulk temperature of gold nanostars solutions was increased to T = 42 °C, the maximum physiological temperature. This fraction reduces 3-5% for temperatures lower than 40 °C. Similar results were found when the temperature increase was obtained by laser excitation of the near-infrared (NIR) localized surface plasmon resonance of the GNSs, which are photothermally responsive. Besides the direct impact of temperature, an increased BDP-SH release was observed upon changing the chemical composition of the solvent from pure water to phosphate-buffered saline and culture media solutions. Moreover, also a significant fraction of PEG-SH was released from the GNS surface due to the increase in temperature. We monitored it with a different approach, that is, by using a coating of α-mercapto-ω-amino PEG labeled with tetramethylrhodamine isothiocyanate on the amino group, that after heating was separated from GNS by ultracentrifugation and the released PEG was determined by spectrofluorimetric techniques on the supernatant solution. These results suggest some specific limitations in the use of the gold-thiolate bond for coating of nanomaterials with organic compounds in biological environments. These limitations come from the duration and the intensity of the thermal treatment and from the medium composition and could also be exploited in biological media to modulate the in vivo release of drugs.
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Borzenkov M. et al. Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars. // Langmuir. 2015. Vol. 31. No. 29. pp. 8081-8091.
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Borzenkov M., Chirico G., D’Alfonso L., Sironi L., Collini M., Cabrini E., Dacarro G., Milanese C., Pallavicini P., Taglietti A., Bernhard C., Denat F. Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars. // Langmuir. 2015. Vol. 31. No. 29. pp. 8081-8091.
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TY - JOUR
DO - 10.1021/acs.langmuir.5b01473
UR - https://doi.org/10.1021/acs.langmuir.5b01473
TI - Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars.
T2 - Langmuir
AU - Borzenkov, Mykola
AU - Chirico, Giuseppe
AU - D’Alfonso, Laura
AU - Sironi, Laura
AU - Collini, Maddalena
AU - Cabrini, Elisa
AU - Dacarro, Giacomo
AU - Milanese, Chiara
AU - Pallavicini, Piersandro
AU - Taglietti, Angelo
AU - Bernhard, Claire
AU - Denat, Franck
PY - 2015
DA - 2015/07/16
PB - American Chemical Society (ACS)
SP - 8081-8091
IS - 29
VL - 31
PMID - 26154493
SN - 0743-7463
SN - 1520-5827
ER -
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BibTex (до 50 авторов)
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@article{2015_Borzenkov,
author = {Mykola Borzenkov and Giuseppe Chirico and Laura D’Alfonso and Laura Sironi and Maddalena Collini and Elisa Cabrini and Giacomo Dacarro and Chiara Milanese and Piersandro Pallavicini and Angelo Taglietti and Claire Bernhard and Franck Denat},
title = {Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars.},
journal = {Langmuir},
year = {2015},
volume = {31},
publisher = {American Chemical Society (ACS)},
month = {jul},
url = {https://doi.org/10.1021/acs.langmuir.5b01473},
number = {29},
pages = {8081--8091},
doi = {10.1021/acs.langmuir.5b01473}
}
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MLA
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Borzenkov, Mykola, et al. “Thermal and Chemical Stability of Thiol Bonding on Gold Nanostars..” Langmuir, vol. 31, no. 29, Jul. 2015, pp. 8081-8091. https://doi.org/10.1021/acs.langmuir.5b01473.
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