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Dive into the research topics where Antonio R. Montoro Bustos is active.

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Featured researches published by Antonio R. Montoro Bustos.


Analytical and Bioanalytical Chemistry | 2013

Mass spectrometry for the characterisation of nanoparticles.

Antonio R. Montoro Bustos; Jorge Ruiz Encinar; Alfredo Sanz-Medel

Mass spectrometry (MS) has gained much importance in recent years as a powerful tool for reliable analytical characterisation of nanoparticles (NPs). The outstanding capabilities of different MS-based techniques including elemental and molecular detection and their coupling with different separation techniques and mechanisms are outlined herein. Examples of highly valuable elemental and molecular information for a more complete characterisation of NPs are given. Some selected applications illustrate the analytical potential of MS for NP sizing and quantitative assessment of the size distribution as well.


ACS Nano | 2017

Separation, Sizing, and Quantitation of Engineered Nanoparticles in an Organism Model Using Inductively Coupled Plasma Mass Spectrometry and Image Analysis.

Monique E. Johnson; Shannon K. Hanna; Antonio R. Montoro Bustos; Christopher M. Sims; Lindsay C. C. Elliott; Akshay Lingayat; Adrian C. Johnston; Babak Nikoobakht; John T. Elliott; R. David Holbrook; Keana C. Scott; Karen E. Murphy; Elijah J. Petersen; Lee L. Yu; Bryant C. Nelson

For environmental studies assessing uptake of orally ingested engineered nanoparticles (ENPs), a key step in ensuring accurate quantification of ingested ENPs is efficient separation of the organism from ENPs that are either nonspecifically adsorbed to the organism and/or suspended in the dispersion following exposure. Here, we measure the uptake of 30 and 60 nm gold nanoparticles (AuNPs) by the nematode, Caenorhabditis elegans, using a sucrose density gradient centrifugation protocol to remove noningested AuNPs. Both conventional inductively coupled plasma mass spectrometry (ICP-MS) and single particle (sp)ICP-MS are utilized to measure the total mass and size distribution, respectively, of ingested AuNPs. Scanning electron microscopy/energy-dispersive X-ray spectroscopy (SEM/EDS) imaging confirmed that traditional nematode washing procedures were ineffective at removing excess suspended and/or adsorbed AuNPs after exposure. Water rinsing procedures had AuNP removal efficiencies ranging from 57 to 97% and 22 to 83%, while the sucrose density gradient procedure had removal efficiencies of 100 and 93 to 98%, respectively, for the 30 and 60 nm AuNP exposure conditions. Quantification of total Au uptake was performed following acidic digestion of nonexposed and Au-exposed nematodes, whereas an alkaline digestion procedure was optimized for the liberation of ingested AuNPs for spICP-MS characterization. Size distributions and particle number concentrations were determined for AuNPs ingested by nematodes with corresponding confirmation of nematode uptake via high-pressure freezing/freeze substitution resin preparation and large-area SEM imaging. Methods for the separation and in vivo quantification of ENPs in multicellular organisms will facilitate robust studies of ENP uptake, biotransformation, and hazard assessment in the environment.


Biosensors and Bioelectronics | 2012

Elemental and molecular detection for Quantum Dots-based immunoassays: a critical appraisal.

Antonio R. Montoro Bustos; Laura Trapiella-Alfonso; Jorge Ruiz Encinar; José M. Costa-Fernández; Rosario Pereiro; Alfredo Sanz-Medel


Nanoscale | 2011

New integrated elemental and molecular strategies as a diagnostic tool for the quality of water soluble quantum dots and their bioconjugates

Laura Trapiella-Alfonso; Antonio R. Montoro Bustos; Jorge Ruiz Encinar; José M. Costa-Fernández; Rosario Pereiro; Alfredo Sanz-Medel


Analytica Chimica Acta | 2015

Sensitive targeted multiple protein quantification based on elemental detection of Quantum Dots

Antonio R. Montoro Bustos; Marta Garcia-Cortes; Héctor González-Iglesias; Jorge Ruiz Encinar; José M. Costa-Fernández; Miguel Coca-Prados; Alfredo Sanz-Medel


Electrochimica Acta | 2015

Voltammetric determination of size and particle concentration of Cd-based quantum dots

Daniel Martín-Yerga; Diego Bouzas-Ramos; Mario Menéndez-Miranda; Antonio R. Montoro Bustos; Jorge Ruiz Encinar; José M. Costa-Fernández; Alfredo Sanz-Medel; Agustín Costa-García


Chemical Communications | 2009

Elemental mass spectrometry: a powerful tool for an accurate characterisation at elemental level of quantum dots

Antonio R. Montoro Bustos; Jorge Ruiz Encinar; María Teresa Fernández-Argüelles; José M. Costa-Fernández; Alfredo Sanz-Medel


Special Publication (NIST SP) - 1200-21 | 2016

Characterization of nanoparticle suspensions using single particle inductively coupled plasma mass spectrometry

Karen E. Murphy; Jingyu Liu; Antonio R. Montoro Bustos; Monique E. Johnson; Michael R. Winchester


Special Publication (NIST SP) - 1200-24 | 2017

Sucrose density gradient centrifugation for efficient separation of engineered nanoparticles from a model organism, Caenorhabditis elegans | NIST

Monique E. Johnson; Antonio R. Montoro Bustos; Elijah J. Petersen; Shannon K. Hanna; Karen E. Murphy; Lee L. Yu; Bryant C. Nelson; Michael R. Winchester


Journal of Research of the National Institute of Standards and Technology | 2017

NanoUV-VIS: An Interactive Visualization Tool for Monitoring the Evolution of Optical Properties of Nanoparticles Throughout Synthesis Reactions

Bryan Calderón-Jiménez; Gabriel F. Sarmanho; Karen E. Murphy; Antonio R. Montoro Bustos; Jose R. Vega-Baudrit

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Monique E. Johnson

National Institute of Standards and Technology

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Karen E. Murphy

National Institute of Standards and Technology

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Bryant C. Nelson

National Institute of Standards and Technology

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Elijah J. Petersen

National Institute of Standards and Technology

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Lee L. Yu

National Institute of Standards and Technology

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Michael R. Winchester

National Institute of Standards and Technology

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