Susana
Cristóbal Barragán
Stockholm University
Estocolmo, SueciaPublicaciones en colaboración con investigadores/as de Stockholm University (26)
2019
2017
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Surface proteomics on nanoparticles: A step to simplify the rapid prototyping of nanoparticles
Nanoscale Horizons, Vol. 2, Núm. 1, pp. 55-64
2016
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Dose-dependent autophagic effect of titanium dioxide nanoparticles in human HaCaT cells at non-cytotoxic levels
Journal of Nanobiotechnology, Vol. 14, Núm. 1
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Proteomic analyses of early response of unicellular eukaryotic microorganism Tetrahymena thermophila exposed to TiO2 particles
Nanotoxicology, Vol. 10, Núm. 5, pp. 542-556
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Shotgun proteomics to unravel marine mussel (Mytilus edulis) response to long-term exposure to low salinity and propranolol in a Baltic Sea microcosm
Journal of Proteomics, Vol. 137, pp. 97-106
2015
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Assessment of functionalized iron oxide nanoparticles in vitro: Introduction to integrated nanoimpact index
Environmental Science: Nano, Vol. 2, Núm. 4, pp. 380-394
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Proteomic and lipidomic analysis of primary mouse hepatocytes exposed to metal and metal oxide nanoparticles
Journal of Integrated OMICS, Vol. 5, Núm. 1, pp. 44-57
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Shotgun analysis of the marine mussel Mytilus edulis hemolymph proteome and mapping the innate immunity elements
Proteomics, Vol. 15, Núm. 23-24, pp. 4021-4029
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Vascular toxicity of ultra-small TiO2 nanoparticles and single walled carbon nanotubes in vitro and in vivo
Biomaterials, Vol. 63, pp. 1-13
2014
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Folding of aquaporin 1: Multiple evidence that helix 3 can shift out of the membrane core
Protein Science, Vol. 23, Núm. 7, pp. 981-992
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The effects of engineered nanoparticles on the cellular structure and growth of Saccharomyces cerevisiae
Nanotoxicology, Vol. 8, Núm. 4, pp. 363-373
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The positive inside rule is stronger when followed by a transmembrane helix
Journal of Molecular Biology, Vol. 426, Núm. 16, pp. 2982-2991
2013
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Membrane protein shaving with thermolysin can be used to evaluate topology predictors
Proteomics, Vol. 13, Núm. 9, pp. 1467-1480
2011
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Quantitative subproteomic analysis of age-related changes in mouse liver peroxisomes by iTRAQ LC-MS/MS
Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences, Vol. 879, Núm. 30, pp. 3393-3400
2010
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Membrane Insertion of Marginally Hydrophobic Transmembrane Helices Depends on Sequence Context
Journal of Molecular Biology, Vol. 396, Núm. 1, pp. 221-229
2009
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Peroxisomal proteomics: Biomonitoring in mussels after the Prestige's oil spill
Marine Pollution Bulletin, Vol. 58, Núm. 12, pp. 1815-1826
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Proteomic analysis of mussels exposed to fresh and weathered Prestige's oil
Journal of Proteomics and Bioinformatics, Vol. 2, Núm. 6, pp. 255-261
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Proteomic study on gender differences in aging kidney of mice
Proteome Science, Vol. 7
2008
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Proteomics-based method for risk assessment of peroxisome proliferating pollutants in the marine environment.
Methods in molecular biology (Clifton, N.J.), Vol. 410, pp. 123-135
2007
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Peroxisomal proteomic approach for protein profiling in blue mussels (Mytilus edulis) exposed to crude oil
Biomarkers, Vol. 12, Núm. 1, pp. 47-60