16 resultados para gold ores
Filtro por publicador
- Aberdeen University (3)
- Acceda, el repositorio institucional de la Universidad de Las Palmas de Gran Canaria. España (1)
- AMS Tesi di Dottorato - Alm@DL - Università di Bologna (4)
- AMS Tesi di Laurea - Alm@DL - Università di Bologna (1)
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- Archimer: Archive de l'Institut francais de recherche pour l'exploitation de la mer (1)
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- Brock University, Canada (3)
- Bucknell University Digital Commons - Pensilvania - USA (2)
- CentAUR: Central Archive University of Reading - UK (39)
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- Claremont University Consortium, United States (2)
- Cochin University of Science & Technology (CUSAT), India (5)
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- Digitale Sammlungen - Goethe-Universität Frankfurt am Main (14)
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- Duke University (1)
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- INSTITUTO DE PESQUISAS ENERGÉTICAS E NUCLEARES (IPEN) - Repositório Digital da Produção Técnico Científica - BibliotecaTerezine Arantes Ferra (4)
- Instituto Politécnico do Porto, Portugal (7)
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- Memoria Académica - FaHCE, UNLP - Argentina (3)
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- Universidade do Minho (4)
- Universidade Federal do Pará (4)
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- Université de Lausanne, Switzerland (19)
- Université de Montréal, Canada (2)
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- University of Connecticut - USA (1)
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Resumo:
This work presents the first application of total-reflection X-ray fluorescence (TXRF) spectrometry, a new and powerful alternative analytical method, to evaluation of the bioaccumulation kinetics of gold nanorods (GNRs) in various tissues upon intravenous administration in mice. The analytical parameters for developed methodology by TXRF were evaluated by means of the parallel analysis of bovine liver certified reference material samples (BCR-185R) doped with 10 μg/g gold. The average values (n = 5) achieved for gold measurements in lyophilized tissue weight were as follows: recovery 99.7%, expanded uncertainty (k = 2) 7%, repeatability 1.7%, detection limit 112 ng/g, and quantification limit 370 ng/g. The GNR bioaccumulation kinetics was analyzed in several vital mammalian organs such as liver, spleen, brain, and lung at different times. Additionally, urine samples were analyzed to study the kinetics of elimination of the GNRs by this excretion route. The main achievement was clearly differentiating two kinds of behaviors. GNRs were quickly bioaccumulated by highly vascular filtration organs such as liver and spleen, while GNRs do not show a bioaccumulation rates in brain and lung for the period of time investigated. In parallel, urine also shows a lack of GNR accumulation. TXRF has proven to be a powerful, versatile, and precise analytical technique for the evaluation of GNRs content in biological systems and, in a more general way, for any kind of metallic nanoparticles.