CdSe quantum dots for two-photon fluorescence thermal imaging

The technological development of quantum dots has ushered in a new era in fluorescence bioimaging, which was propelled with the advent of novel multiphoton fluorescence microscopes. Here, the potential use of CdSe quantum dots has been evaluated as fluorescent nanothermometers for two-photon fluores...

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Detalles Bibliográficos
Autores: Martínez Maestro, Laura, Rodríguez, Emma, Rodríguez, Francisco, Iglesias de La Cruz, María del Carmen, Juarranz, Angeles, Naccache, Rafik, Vetrone, Fiorenzo, Jaque, Daniel, Capobianco, John, Solé, José
Tipo de recurso: artículo
Fecha de publicación:2010
País:España
Institución:Universidad Complutense de Madrid (UCM)
Repositorio:Docta Complutense
Idioma:inglés
OAI Identifier:oai:docta.ucm.es:20.500.14352/97448
Acceso en línea:https://hdl.handle.net/20.500.14352/97448
Access Level:acceso abierto
Palabra clave:535
Óptica (Física)
2209.14 Propiedades Ópticas de Los Sólidos
Descripción
Sumario:The technological development of quantum dots has ushered in a new era in fluorescence bioimaging, which was propelled with the advent of novel multiphoton fluorescence microscopes. Here, the potential use of CdSe quantum dots has been evaluated as fluorescent nanothermometers for two-photon fluorescence microscopy. In addition to the enhancement in spatial resolution inherent to any multiphoton excitation processes, two-photon (near-infrared) excitation leads to a temperature sensitivity of the emission intensity much higher than that achieved under one-photon (visible) excitation. The peak emission wavelength is also temperature sensitive, providing an additional approach for thermal imaging, which is particularly interesting for systems where nanoparticles are not homogeneously dispersed. On the basis of these superior thermal sensitivity properties of the two-photon excited fluorescence, we have demonstrated the ability of CdSe quantum dots to image a temperature gradient artificially created in a biocompatible fluid (phosphate-buffered saline) and also their ability to measure an intracellular temperature increase externally induced in a single living cell.