Person:
Pérez Sancho, Marta

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First Name
Marta
Last Name
Pérez Sancho
Affiliation
Universidad Complutense de Madrid
Faculty / Institute
Veterinaria
Department
Sanidad Animal
Area
Sanidad Animal
Identifiers
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Search Results

Now showing 1 - 5 of 5
  • Item
    Epidemiological factors associated with the exposure of cattle to Coxiella burnetii in the Madrid region of Spain
    (The Veterinary Journal, 2012) Álvarez Sánchez, Julio; Perez, A.; Mardones, F.O.; Pérez Sancho, Marta; García-Seco Romero, María Teresa; Pagés, E.; Mirat, F.; Díaz, R.; Carpintero, J.; Domínguez Rodríguez, Lucas José
    Domestic ruminants are considered to be the major source of Coxiella burnetii, the causative agent of Q fever. Even though Q fever is considered to be present worldwide, its distribution in many areas and countries remains unknown. Here, a serological assay was used to estimate the seroprevalence of C. burnetii in cattle in the Madrid region of Spain, to assess its spatial distribution, and to identify risk factors associated with positive results. Ten animals from each of 110 herds (n=1100) were randomly selected and analyzed using an ELISA test. In addition, epidemiological information, at both the herd and individual level, was collected. Variables for which an association with test results was detected in a bivariate analysis were included as predictors (main effects) in a multivariable logistic regression model. Herd and individual seroprevalences were 30% (95% CI=22.2-39.1) and 6.76% (95% CI=5.42-8.41), respectively, and a strong spatial dependence was identified at the first neighbour level using the Cuzick-Edwards test. Production type (dairy >beef >bullfighting) and age of animals (old vs. young) were the only variables significantly associated (P<0.05) with positive serological results at the herd and individual levels, respectively. These results indicate that cattle are exposed to C. burnetii in the Madrid region The high herd seroprevalence found in dairy herds (75%) indicates a higher risk of infection (probably for management reasons) whereas no C. burnetii positive bullfighting herds were identified.
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    Management of an outbreak of brucellosis due to B. melitensis in dairy cattle in Spain
    (Research in Veterinary Science, 2011) Álvarez Sánchez, Julio; Sáez, Jose Luis; García Benzaquén, Nerea; Serrat, Carles; Pérez Sancho, Marta; González Domínguez, Sergio; Ortega, Maria Jesús; Gou, Josep; Carbajo, Lucio; Garrido, Fulgencio; Goyache Goñi, Joaquín; Domínguez Rodríguez, Lucas José
    Brucella melitensis is a major human and animal pathogen, with a wide host range that includes all domestic ruminant species, although small ruminants are its preferred hosts. Outbreaks in cattle due to B. melitensis have become a worldwide emerging problem particularly difficult to control due to the lack of knowledge on the epidemiology in this host species and of an effective vaccine. However, combination of molecular tools and strict biosecurity measures can help to solve these difficulties and eventually eradicate the disease from infected herds. In the present report, management of an outbreak in Spain involving four farms, more than 2000 cattle and several human cases is described. Application of Multiple Locus VNTR Analysis (MLVA) allowed identifying the most likely source of infection. Stamping out and test-and-slaughter strategies were applied, proving their usefulness to control the outbreak depending on infection level, and without the need of other alternative measures.
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    Development and evaluation of an IS711-based loop mediated isothermal amplification method (LAMP) for detection of Brucella spp. on clinical samples
    (Research in Veterinary Science, 2013) Pérez Sancho, Marta; García-Seco Romero, María Teresa; Arrogante, L; García, N; García Benzaquén, Nerea; Martínez Alares, Irene; Díez Guerrier, Alberto Antoine; Perales, A; Goyache Goñi, Joaquín; Domínguez Rodríguez, Lucas José; Álvarez Sánchez, Julio
    DNA-based methods have emerged as an additional tool for Brucella infection-confirmation at a herd level. However, their implementation may require the use of specialized equipment. In this context the recently developed loop-mediated isothermal amplification (LAMP) technique may constitute an additional and cost-effective tool for rapid and specific DNA detection, especially in low income areas. In the present study the usefulness of a newly developed LAMP assay aiming at the multicopy-IS711 sequence was assessed on a variety of clinical samples (n = 81 from abortions and ewes; cattle, n = 3; swine, n = 4) that were analyzed in parallel using real-time PCR and bacteriology. Although overall sensitivities obtained with the three methods were comparable (p > 0.05), our results highlighted the complementarity between bacteriology and molecular-based methods for increased sensitivity. Significant differences (p < 0.05) were observed with all techniques depending on the nature of the sample. Our results demonstrate the potential of the IS711-LAMP technique for direct Brucella detection.
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    Interferon-gamma responses in sheep exposed to virulent and attenuated Brucella melitensis strains
    (Veterinary Immunology and Immunopathology, 2014) Pérez Sancho, Marta; Durán-Ferrer, Manuel; García-Seco Romero, María Teresa; Macías, Paula; García Benzaquén, Nerea; Martínez Alares, Irene; Ruiz, Elena; Legaz, Emilio; Díez Guerrier, Alberto Antoine; González Domínguez, Sergio; Domínguez Rodríguez, Lucas José; Álvarez Sánchez, Julio
    Antibody detection is the basis of large-scale sheep brucellosis diagnosis because of its sensitivity and specificity. In contrast, information on the cellular mediated immune (CMI) response triggered after Brucella melitensis infection, a cornerstone in the protection against this pathogen, is more limited, particularly regarding the effect of the virulence of the infecting strain in the induced CMI reaction. Here, the interferon-gamma (IFN-gamma) profiles evoked after exposure by different routes to virulent (H38) and attenuated (Rev.1) B. melitensis strains in 14 pregnant sheep and 87 ewe lambs, respectively, were characterized accounting for different host-related factors, and compared with their serological response and with the basal IFN-gamma responses observed in 155 animals non exposed to Brucella. No significant differences in the IFN-gamma response of Rev.1 vaccinated animals depending on the inoculation route was observed, in contrast with their serological results. Response in H38- challenged followed a similar trend although peaked later, and an effect of the abortion on the IFN-gamma response was detected. This information could help to understand the interaction bacteria–host that leads to its intracellular survival and could be useful for the design of new diagnostic approaches.
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    A ten-year-surveillance program of zoonotic pathogens in feral pigeons in the City of Madrid (2005–2014): The importance of a systematic pest control
    (Research in Veterinary Science, 2020) Pérez Sancho, Marta; García-Seco Romero, María Teresa; Porrero, Concepción; García Benzaquén, Nerea; Gómez Barrero, Susana; Cámara, José María; Domínguez Rodríguez, Lucas José; Álvarez Sánchez, Julio
    Feral pigeons have increased in urban settings worldwide becoming a potential health risk for humans and other animals. Control and surveillance programs are essential to prevent the possible transmission of zoonotic pathogens carried by pigeons. A surveillance program was carried out in Madrid City (Spain) during 2005–2014 to determine the role of urban pigeons as carriers of zoonotic agents comparing these results with studies performed elsewhere in the last fifteen years. A total of 1372 pigeons were randomly captured and tested for detection of Antimicrobial susceptibility and genetic heterogeneity of Campylobacter and Salmonella isolates were determined. During the first phase (August 2005–July 2010), 428 animals were analyzed individually, while in the second period (August 2010–December 2014), 944 pigeons were analyzed in pools (n = 2–3 in 2010 and n = 5–6 in 2013 and 2014). The most prevalent pathogen during the first phase was Campylobacter spp., (6.57%, 95% confidence interval 3.05–12.10%) followed by Salmonella spp. (4.41%, 95% CI: 2.30–7.58%) and C. psittaci (2.56%, 95% CI: 0.70–6.53%)]. The PCR techniques, used during the 2010–2014 phase of the study, confirmed the presence of Campylobacter spp. (prevalence of 0–14.83%) and C. psittaci (0–12,94%) among pigeons of Madrid. Antimicrobial susceptibility testing suggested low levels of resistance. Presence of zoonotic agents in feral pigeons highlights the importance of surveillance programs on this species, although the relative low prevalence found suggests a limited risk to Public and Animal Health in Madrid.