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Toxoplasmosis and intestinal protozoa

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Toxoplasmosis y Protozoos intestinales

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WGS analysis and molecular resistance mechanisms of azithromycin-resistant (MIC >2 mg/L) Neisseria gonorrhoeae isolates in Europe from 2009 to 2014

4. Jacobsson S, Golparian D, Cole M, Spiteri G, Martin I, Bergheim T, Borrego MJ, Crowley B, Crucitti T, Van Dam AP, Hoffmann S, Jeverica S, Kohl P, Mlynarczyk-Bonikowska B, Pakarna G, Stary A, Stefanelli P, Pavlik P, Tzelepi E, Abad R, Harris SR, Unemo M. “WGS analysis and molecular resistance mechanisms of azithromycin-resistant (MIC >2 mg/L) Neisseria gonorrhoeae isolates in Europe from 2009 to 2014.” J. Antimicrob. Chemother. (2016) 71 (11): 3109-3116.

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Predicted Strain Coverage of a New Meningococcal Multicomponent Vaccine (4CMenB) in Spain: Analysis of the Differences with Other European Countrie

5. Abad R, Medina V, Stella M, Boccadifuoco G, Comanducci M, Bambini S, Muzzi A, Vázquez JA. “Predicted Strain Coverage of a New Meningococcal Multicomponent Vaccine (4CMenB) in Spain: Analysis of the Differences with Other European Countries.” PLoS One. 2016 Mar 7;11(3):e0150721.

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A large portion of MATS negative meningococcal strains from Spain are killed by sera from adolescents and infants immunized with 4CMenB

6. Abad R, Biolchi A, Moschioni M, Giuliani MM, Pizza M, Vázquez JA. “A large portion of MATS negative meningococcal strains from Spain are killed by sera from adolescents and infants immunized with 4CMenB”. Clin Vaccine Immunol. 2015 April; 22(4): 357-60.

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Serogroup W meningococcal disease: global spread and currently affecting the southern cone in Latin America

7. Abad R, López EL, Debbag R, Vázquez JA. “Serogroup W meningococcal disease: global spread and currently affecting the southern cone in Latin America”. Epidemiol Infect. 2014 Dec; 142(12): 2461-2470.

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Effectiveness of meningococcal serogroup C vaccine programme

8. Borrow R, Abad R, Trotter C, van der Klis FRM, Vázquez JA. “Effectiveness of meningococcal serogroup C vaccine programmes”. Vaccine. 2013 Sept 23; 31 (41): 4477-4486.

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Target Gene sequencing to define the susceptibility of Neisseria meningitidis to ciprofloxacin

9. E. Hong, S.T. Hedberg, R. Abad, C. Fazio, R. Enríquez, A-E. Deghmane, K.A. Jolley, P. Stefanelli, M. Unemo, J.A. Vázquez, F.J. Veyrier, M.K. Taha. “Target Gene sequencing to define the susceptibility of Neisseria meningitidis to ciprofloxacin”. Antimicrob Agents Chemoter 2013 April; 57 (4): 1961-1964.

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A Q Fever Outbreak with a High Rate of Abortions at a Dairy Goat Farm: Coxiella burnetii Shedding, Environmental Contamination, and Viability

3. Álvarez-Alonso R, Basterretxea M, Barandika JF, Hurtado A, Idiazabal J, Jado I, Beraza X, Montes M, Liendo P, García-Pérez AL. A Q Fever Outbreak with a High Rate of Abortions at a Dairy Goat Farm: Coxiella burnetii Shedding, Environmental Contamination, and Viability. Appl Environ Microbiol. 2018 Oct 1;84(20).

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Irruptive mammal host populations shape tularemia epidemiology.

4. Luque-Larena, Juan J.; Mougeot, Francois; Arroyo, Beatriz; Dolors Vidal, Ma; Rodriguez-Pastor, Ruth; Escudero, Raquel; Anda, Pedro; Lambin, Xavier. Irruptive mammal host populations shape tularemia epidemiology. Plos Pathogens. 13 - 11, Public Library Science, 01/11/2017.

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Content with Investigacion Toxoplasmosis y Protozoos intestinales .

List of staff

Información adicional

Our group carries out research studies in the diagnosis, reference and epidemiology of zoonoses and emerging diseases, both indigenous and imported, caused by protozoa. Coordinates the study in the human field with the relevance of the animal field and the environment (One Health initiative), with special interest in Toxoplasmosis, a highly prevalent zoonosis (WHO lists it as the 3rd food-borne zoonosis in Europe), presents a complex epidemiological cycle and causes neurological, ocular and systemic symptoms. We carry out diagnostic and characterization studies of Toxoplasma gondii from human and animal cases, to obtain greater epidemiological information and analyze the possible relationship with virulence and pathology.

Cryptosporidium, Giardia, Blastocystis and Entamoeba histolytica cause gastrointestinal diseases, affecting children, immunosuppressed people and travelers. They can cause outbreaks.  We develop diagnostic and characterization studies of isolates from humans and animals, from different areas and countries, to establish the presence of the main species and genotypes and the epidemiological situation. We are beginning the study of associations between these parasites and the intestinal microbiota.

The pathogenic Free-Living Amoebas, Acanthamoeba, Naegleria fowleri and Balamuthia mandrillaris, cause emerging diseases, highlighting the importance of the environment in transmission. They cause underdiagnosed neurological and ocular cases. The diagnostic and genotyping study of human and animal isolates that we are carrying out aims to establish the real prevalence, transmission routes and epidemiology.

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