Flyscan opportunities in medicine: the case of quantum rattle based on gold quantum dots

Author:

Esteve Emmanuel,Reguer Solenn,Boissiere Cédric,Chanéac Corinne,Lugo Gustavo,Jouanneau Chantal,Mocuta Cristian,Thiaudière Dominique,Leclercq Nicolas,Leyh Bernard,Greisch Jean-François,Berthault Julien,Daudon Michel,Ronco Pierre,Bazin Dominique

Abstract

The new rapid scan method, Flyscan mode, implemented on the DiffAbs beamline at Synchrotron SOLEIL, allows fast micro-X-ray fluorescence data acquisition. It paves the way for applications in the biomedical field where a large amount of data is needed to generate meaningful information for the clinician. This study presents a complete set of data acquired after injection of gold-cluster-enriched mesoporous silica nanospheres, used as potential theranostic vectors, into rats. While classical X-ray fluorescence investigations (using step-by-step acquisitions) are based on a limited number of samples (approximately one per day at the DiffAbs beamline), the Flyscan mode has enabled gathering information on the interaction of nanometer-scale vectors in different organs such as liver, spleen and kidney at the micrometer scale, for five rats, in only a single five-day synchrotron shift. Moreover, numerous X-ray absorption near-edge structure spectra, which are beam-time-consuming taking into account the low concentration of these theranostic vectors, were collected.

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

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