Publicaciones Google Scholar de
1980 a
2024
Título |
Fuente |
Fecha |
Metabolomics and Biochemical Benefits of Multivitamin and Multimineral Supplementation in Healthy Individuals: A Pilot Study |
Foods 13 (14), 2207 , 2024 |
2024 |
Use of probiotics in preventing and treating excess weight and obesity. A systematic review |
Obesity Science & Practice 10 (3), e759 , 2024 |
2024 |
Evidence of the Beneficial Impact of Three Probiotic-Based Food Supplements on the Composition and Metabolic Activity of the Intestinal Microbiota in Healthy Individuals: An Ex … |
Nutrients 15 (24), 5077 , 2023 |
2023 |
Ciudad, MJ; Collado, L. Evidence of the Beneficial Impact of Three Probiotic-Based Food Supplements on the Composition and Metabolic Activity of the Intestinal Microbiota in … |
|
2023 |
Metataxonomic and metabolomic evidence of biofilm homeostasis disruption related to caries: An in vitro study |
Molecular Oral Microbiology 37 (2), 81-96 , 2022 |
2022 |
Strategies to combat caries by maintaining the integrity of biofilm and homeostasis during the rapid phase of supragingival plaque formation |
Antibiotics 11 (7), 880 , 2022 |
2022 |
Ciudad, MJ; Collado, L |
Strategies to combat caries by maintaining the integrity of biofilm and … , 2022 |
2022 |
Proteomic analysis of Fusobacterium nucleatum growth in biofilm versus planktonic state |
Molecular Oral Microbiology 35 (4), 168-180 , 2020 |
2020 |
Biofilm formation on dental implants with different surface micro‐topography: An in vitro study |
Clinical Oral Implants Research 30 (8), 725-734 , 2019 |
2019 |
Gene expression of Porphyromonas gingivalis ATCC 33277 when growing in an in vitro multispecies biofilm |
PLoS One 14 (8), e0221234 , 2019 |
2019 |
Comparative gene expression analysis of planktonic Porphyromonas gingivalis ATCC 33277 in the presence of a growing biofilm versus planktonic cells |
BMC: BioMed Central , 2019 |
2019 |
Comparative gene expression analysis of planktonic Porphyromonas gingivalis ATCC 33277 in the presence of a growing biofilm versus planktonic cells |
BMC microbiology 19, 1-11 , 2019 |
2019 |
Topographic characterization of multispecies biofilms growing on dental implant surfaces: An in vitro model |
Clinical oral implants research 30 (3), 229-241 , 2019 |
2019 |
In vitro biofilm formation on different ceramic biomaterial surfaces: Coating with two bactericidal glasses |
Dental Materials 35 (6), 883-892 , 2019 |
2019 |
Antibacterial Effects of Toothpastes Evaluated in an In Vitro Biofilm Model. |
Oral Health & Preventive Dentistry 15 (3) , 2017 |
2017 |
Aggregatibacter actinomycetemcomitans Growth in Biofilm versus Planktonic State: Differential Expression of Proteins |
Journal of proteome research 16 (9), 3158-3167 , 2017 |
2017 |
Response to antiseptic agents of periodontal pathogens in in vitro biofilms on titanium and zirconium surfaces |
Dental Materials 33 (4), 446-453 , 2017 |
2017 |
Comparative gene expression analysis of Porphyromonas gingivalis ATCC 33277 in planktonic and biofilms states |
PloS one 12 (4), e0174669 , 2017 |
2017 |
Proteomics Unravels Extracellular Vesicles as Carriers of Classical Cytoplasmic Proteins in Candida albicans |
Journal of proteome research 14 (1), 142-153 , 2015 |
2015 |
Characterization and application of a flow system for in vitro multispecies oral biofilm formation |
Journal of Periodontal Research 49 (3), 323-332 , 2014 |
2014 |
An in vitro biofilm model associated to dental implants: Structural and quantitative analysis of in vitro biofilm formation on different dental implant surfaces |
Elsevier , 2014 |
2014 |
Quantitative real‐time PCR combined with propidium monoazide for the selective quantification of viable periodontal pathogens in an in vitro subgingival biofilm … |
Journal of Periodontal Research 49 (1), 20-28 , 2014 |
2014 |
An in vitro biofilm model associated to dental implants: Structural and quantitative analysis of in vitro biofilm formation on different dental implant surfaces |
Dental Materials 30 (10), 1161-1171 , 2014 |
2014 |
Validation of ATP bioluminescence as a tool to assess antimicrobial effects of mouthrinses in an in vitro subgingival-biofilm model |
Medicina oral, patologia oral y cirugia bucal 18 (1), e86 , 2013 |
2013 |
Analysis of viable vs. dead Aggregatibacter actinomycetemcomitans and Porphyromonas gingivalis using selective quantitative real‐time PCR with propidium … |
Journal of Periodontal Research 48 (2), 213-220 , 2013 |
2013 |
Probiotic effects of orally administered Lactobacillus reuteri ‐containing tablets on the subgingival and salivary microbiota in patients with gingivitis. A randomized … |
Journal of clinical periodontology 39 (8), 736-744 , 2012 |
2012 |
Structure, viability and bacterial kinetics of an in vitro biofilm model using six bacteria from the subgingival microbiota |
Journal of periodontal research 46 (2), 252-260 , 2011 |
2011 |
Analysis of Candida albicans plasma membrane proteome |
Proteomics 9 (20), 4770-4786 , 2009 |
2009 |
Análisis proteómico de proteínas de membrana ancladas a glicosilfosfatidilinositol en Candida albicans |
Proteómica: revista de la Sociedad Española de Proteómica 1, 88-88 , 2008 |
2008 |
Role of the PhoP-PhoQ System in the Virulence of Erwinia chrysanthemi Strain 3937: Involvement in Sensitivity to Plant Antimicrobial Peptides, Survival at Acid pH … |
Journal of bacteriology 187 (6), 2157-2162 , 2005 |
2005 |
Interacciones moleculares entre Erwinia chrysanthemi, agente causal de la podredumbre blanda, y sus plantas hospedadoras |
Phytoma España (España) , 2005 |
2005 |
The Erwinia chrysanthemi phoP‐phoQ operon plays an important role in growth at low pH, virulence and bacterial survival in plant tissue |
Molecular microbiology 49 (2), 347-357 , 2003 |
2003 |
The ybiT Gene of Erwinia chrysanthemi Codes for a Putative ABC Transporter and Is Involved in Competitiveness against Endophytic Bacteria during Infection |
Applied and Environmental Microbiology 68 (4), 1624-1630 , 2002 |
2002 |
Genes implicados en la adaptación de Erwinia chrysanthemi al microambiente de la planta |
Universidad Politécnica de Madrid , 2002 |
2002 |
Relative Effects on Virulence of Mutations in the sap, pel , and hrp Loci of Erwinia chrysanthemi |
Molecular plant-microbe interactions 14 (3), 386-393 , 2001 |
2001 |
Molecular Interactions Between Erwinia and their Hosts |
Plant Pathogenic Bacteria: Proceedings of the 10th International Conference … , 2001 |
2001 |
Bacterial resistance to host defence: Common features between animal and plant pathogenic bacteria |
BIOLOGY OF PLANT-MICROBE INTERACTIONS, VOL 2, 314-318 , 2000 |
2000 |
Evidence Against a Direct Antimicrobial Role of H 2 O 2 in the Infection of Plants by Erwinia chrysanthemi |
Molecular plant-microbe interactions 13 (4), 421-429 , 2000 |
2000 |