Pneumococcus
Research Lines
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Virus entéricos
1. Vigilancia microbiológica y epidemiológica a nivel nacional de las infecciones causadas por enterovirus y parechovirus y de los casos de parálisis flácida aguda en menores de 15 años. Caracterización, asociación clínica y epidemiología molecular.
2. Investigación de los enterovirus y parechovirus que causan infecciones neurológicas y sistémicas severas en población pediátrica. Estudio de los factores virológicos implicados en la patogenicidad.
3. Estudio virológico de muestras ambientales (aguas residuales y tratadas para consumo) de la CAM.
4. Estudio virológico (diagnóstico y caracterización) de las infecciones gastrointestinales causadas por virus (norovirus, rotavirus y otros). Epidemiología molecular y caracterización de brotes.
Investigación y vigilancia de los poliovirus y la poliomielitis
El Laboratorio de Enterovirus (actualmente de Virus Entéricos) del CNM fue designado Laboratorio Nacional de Poliovirus en 1998 y desde entonces es certificado anualmente por la OMS, como parte del Plan Global de Erradicación de la Poliomielitis. Es responsable, junto a 3 laboratorios primarios en 3 CCAA, de la vigilancia de la poliomielitis a nivel nacional, estudiando e investigando (clínica, epidemiológica y virológicamente) todos los casos compatibles, incluidos los de parálisis flácida aguda en menores de 15 años (enfermedad de notificación obligatoria) para descartar la presencia y circulación de poliovirus en España.
Además, desde 1999 (y gracias a un convenio con el CYII) posee toda la infraestructura y metodología necesaria para realizar vigilancia medioambiental en aguas, tanto para medir la calidad de las aguas potables de ETAP, como para monitorizar la excreción de virus por parte de la población con el estudio de la presencia de poliovirus y otros enterovirus en aguas residuales de EDAR. Esto ha permitido que, a partir de marzo de este año, se estén realizando, además, ensayos de presencia de SARS-CoV-2 en las muestras procedentes de diferentes EDAR situadas en la CAM.
Investigación y referencia en infecciones por enterovirus y parechovirus
El Laboratorio también es Laboratorio de Referencia para las infecciones por Enterovirus y Parechovirus realizando: 1) el diagnostico virológico en muestras clínicas; 2) la caracterización de todos los enterovirus y parechovirus detectados (Programa de Vigilancia Microbiológica del CNM); 3) el desarrollo, mantenimiento y transferencia de métodos de diagnóstico y tipado, tanto moleculares como de cultivo viral; y 4) la investigación para profundizar en el conocimiento de aquellos virus implicados en casos de excepcional importancia clínica o epidemiológica. La larga experiencia del grupo en la propagación de cultivos virales de enterovirus y en técnicas celulares y moleculares de caracterización, ha permitido que el CNM posea una amplia colección de cepas, muy valiosa para la investigación de estos virus.
Investigación y referencia en infecciones gastrointestinales causadas por virus
Desde 2016, el laboratorio realiza: 1) el diagnostico virológico de Norovirus, Rotavirus, Adenovirus 40/41, Astrovirus y otros virus productores de gastroenteritis aguda en muestras clínicas; 2) el genotipado de los virus detectados y la caracterización de brotes; 3) el desarrollo y mantenimiento de métodos de diagnóstico y genotipado; y 4) la investigación básica y epidemiológica de aquellos virus de mayor importancia clínica.
Research projects
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Proyectos de investigación financiados en los últimos 5 años
- Investigación de las infecciones neurológicas graves en niños causadas por enterovirus emergentes en España: EV-A71 y EV-D68 (PI18CIII/00017). Financiación: ISCIII. 2019-2021. IP: M. Cabrerizo
- Metagenomic sequencing to identify viral etiologies in undiagnosed cases of meningitis and encephalitis (PI20CIII/00005). Financiación: ISCIII. 2021-2023. IP: M.D. Fernández-García
- Investigación en infecciones por enterovirus y parechovirus que causan patologías neurológicas y sistémicas graves en población infantil (PI15CIII/00020). Financiación: ISCIII. 2016-2019. IP: M. Cabrerizo
- Aplicación de la secuenciación masiva para el diagnóstico de infecciones neurológicas de origen vírico no filiadas (PI-0216-2019). Financiación: Junta de Andalucía, Consejería de Salud y Familias. 2019-2021. IP: M.D. Fernández-García (2019)/ Ana Belen Pérez-Jiménez (2020-21)
- Epidemiología y patogenia molecular de los enterovirus y parechovirus asociados a sepsis e infecciones neurológicas en población infantil en España (PI12/00904). Financiación: ISCIII. 2013-2016. IP: M. Cabrerizo
Otros proyectos de investigación relevantes en los que ha colaborado o colabora el grupo
- Dinámica de colonización e infección por E. coli enteroagregativo en poblaciones pediátricas y su asociación con la composición de la microbiota intestinal mediante análisis metagenómico (PI18CIII/00043). Financiación: ISCIII. 2019-2021. IP: S. Sánchez
- Paving the way for implementing a syndromic diagnostic scheme at the CNM for the diagnosis of diarrhoea-causing pathogens in stool samples based on molecular and metagenomics methods (PI19CIII/00029). Financiación: ISCIII. 2020-2022. IP: D. Carmena
- Engineering lactobacilli for intranasal immunization against the emerging enterovirus D68 (EV-D68) infections and prevention of acute flaccid myelitis. Financiación: ESCMID. 2019-2020. IP: M.C. Póvoa-Cabral
- Análisis epidemiológico y virológico de los agentes virales incluidos en la vacuna triple vírica: nuevos retos (PI15CIII/00023). Financiación: ISCIII. 2016-2019. IP: F. de Ory/A. Fernández
- Epidemiología general y molecular de la hepatitis E en España: ¿una zoonosis emergente? (PI080865). Financiación: ISCIII. 2009-2012. IP: M. Fogeda
- Etiología de las meningitis y encefalitis víricas en España (PI07/90154). Financiación: ISCIII. 2008-2010. IP: F. de Ory
- Investigation of the dynamics and geography of the spread of recombinant forms of human enteroviruses (WT081173MA). Financiación: Wellcome Trust. 2007-2010. IP: P. Simmonds.
Convenios
- Servicios para la realización de estudios virológicos previstos en el agua procedentes para Canal de Isabel II-Gestión (MVP-207/18). Financiación: Canal de Isabel II. 2018-2021. IP: M. Cabrerizo
- Análisis virológico en muestras de aguas procedentes del Canal de Isabel II (MVI-1005/99). Financiación: Canal de Isabel II. 2016-2017. IP: M. Cabrerizo
Publications
Negative impact of HIV infection on broad-spectrum anti-HCV neutralizing antibody titers in HCV-infected patients with advanced HCV-related cirrhosis.
6. Sepúlveda-Crespo D, Yélamos MB, Díez C, Gómez J, Hontañón V, Torresano-Felipe F, Berenguer J, González-García J, Ibañez-Samaniego L, Llop E, Olveira A, Martínez J, Resino S (‡ *), Martínez I (‡ *). Negative impact of HIV infection on broad-spectrum anti-HCV neutralizing antibody titers in HCV-infected patients with advanced HCV-related cirrhosis. Biomed Pharmacother 2022, 150: 113024. (A; FI= 7.42; D1, Pharmacology & Pharmacy; JCR 2021).
PUBMED DOI. Environmental factors linked to hospital admissions in young children due to acute viral lower respiratory infections: A bidirectional case-crossover study.
7. Álvaro-Meca A, Goez MDC, Resino R, Matías V, Sepúlveda-Crespo D, Martínez I#, Resino S#. Environmental factors linked to hospital admissions in young children due to acute viral lower respiratory infections: A bidirectional case-crossover study. Environ Res. 2022 Sep; 212(Pt B):113319. doi: 10.1016/j.envres.2022.113319. PMID: 35447151. (A; FI= 8.431; D1 Public, Environmental & Occupational Health; JCR 2021).
PUBMEDMisdiagnosis rate of among negative COVID-19 patients in real-life with Panbio COVID-19 Antigen Rapid Test during 2021.
8. Ryan P, Pérez-García F, Torres-Macho J, Bibiano C, Ignacio Lazo J, Castaño-Ochoa G, Vidal-Alcántara EJ, Muñoz-Gómez MJ, Martínez I#, Resino S#. Misdiagnosis rate of among negative COVID-19 patients in real-life with Panbio COVID-19 Antigen Rapid Test during 2021. J Infect. 2022 May; 84(5):e42-e44. doi: 10.1016/j.jinf.2022.03.013. PMID: 35306106 (L; FI= 38.637; D1 Infectious Diseases; JCR 2021).
PUBMEDSimilar humoral immune responses against the SARS-CoV-2 spike protein in HIV and non-HIV individuals after COVID-19.
11. Martín-Vicente M, Berenguer J, Muñoz-Gómez MJ, Díez C, Micán R, Pérez-Elías MJ, García-Fraile LJ, Peraire J, Suárez-García I, Jiménez-Sousa MÁ, Fernández-Rodríguez A, Vázquez M, Ryan P, González-García J, Jarrín I, Mas V, Martínez I#, Resino S#. Similar humoral immune responses against the SARS-CoV-2 spike protein in HIV and non-HIV individuals after COVID-19. J Infect. 2022 Mar;84(3):418-467. doi: 10.1016/j.jinf.2021.11.002. PMID: 34752819 (L; FI= 38.637; D1 Infectious Diseases; JCR 2021).
PUBMEDLow anti-SARS-CoV-2 S antibody levels predict increased mortality and dissemination of viral components in the blood of critical COVID-19 patients.
12. Martin-Vicente M#, Almansa R#, Martínez I#, Tedim AP, Bustamante E, Tamayo L, Aldecoa C, Gómez JM, Renedo G, Berezo JÁ, Cedeño JA, Mamolar N, García Olivares P, Herrán-Monge R, Cicuendez R, Enríquez P, Ortega A, Jorge N, Doncel C, de la Fuente A, Bustamante-Munguira J, Muñoz-Gómez MJ, González-Rivera M, Puertas C, Más V, Vázquez M, Pérez-García F, Rico-Feijoo J, Martín S, Motos A, Fernandez-Barat L, Eiros JM, Dominguez-Gil M, Ferrer R, Barbé F, Trapiello W, Kelvin DJ, Bermejo-Martin JF, Resino S, Torres A. Low anti-SARS-CoV-2 S antibody levels predict increased mortality and dissemination of viral components in the blood of critical COVID-19 patients. J Intern Med. 2022 Feb; 291(2):232-240. doi: 10.1111/joim.13386. PMID: 34611927 (A; FI= 13.068; D1 Medicine, General & Internal; JCR 2021).
PUBMEDStrategies Targeting the Innate Immune Response for the Treatment of Hepatitis C Virus-Associated Liver Fibrosis.
13. Sepulveda-Crespo D, Resino S*, Martinez I*. Strategies Targeting the Innate Immune Response for the Treatment of Hepatitis C Virus-Associated Liver Fibrosis. Drugs. 2021 Drugs. 2021 Mar; 81(4):419-443. doi: 10.1007/s40265-020-01458-x. PMID: 33400242. (R; FI= 11.431; D1 Pharmacology & Pharmacy; JCR 2021).
PUBMEDMetabolic Profiling at COVID-19 Onset Shows Disease Severity and Sex-Specific Dysregulation FRONTIERS IN IMMUNOLOGY.
3 Ceballos, Francisco C.; Virseda-Berdices, Ana; Resino, Salvador; et al; Jimenez-Sousa, Maria Angeles. (19/19). 2022. Metabolic Profiling at COVID-19 Onset Shows Disease Severity and Sex-Specific Dysregulation FRONTIERS IN IMMUNOLOGY. ISSN 1664-3224.
Metabolomic changes after DAAs therapy are related to the improvement of cirrhosis and inflammation in HIV/HCV-coinfected patients.
4 Virseda-Berdices, Ana; Rojo, David; Martinez, Isidoro; et al; Jimenez-Sousa, Maria Angeles. (14/14). 2022. Metabolomic changes after DAAs therapy are related to the improvement of cirrhosis and inflammation in HIV/HCV-coinfected patients. BIOMEDICINE & PHARMACOTHERAPY. 147:112623. ISSN 1950-6007.
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Leticia Bernal Martínez
Staff Scientist
ORCID code: 0000-0002-1694-5522
Dr. Bernal-Martínez obtained her degree in Biochemistry from the University of Zaragoza in 2005. She joined the Mycology Reference and Research Laboratory (LRIM) in 2006 under a trainee contract and completed her PhD within the Official Doctoral Program in Microbiology and Parasitology at the Complutense University of Madrid, defending her thesis in 2010 with highest honors (Cum Laude). In 2007, she continued her research activity at LRIM within the framework of the Spanish Network for Research in Infectious Diseases (REIPI). In 2016, she completed a Postgraduate Diploma in Promotion and Management of International Projects (Technical University of Madrid) and undertook a research stay at the Microbiology and Infection Research Domain, Life and Health Sciences Research Institute (ICVS), School of Health Sciences, University of Minho (Braga, Portugal). She was subsequently appointed as a PhD researcher within the Biomedical Research Networking Center in Infectious Diseases (CIBERINFEC). Since 2024, she serves as Specialist Scientist at the Carlos III Health Institute (ISCIII) and is responsible for the Diagnostic and Serology Section for Endemic Fungi at the Mycology Reference and Research Laboratory.
Dr. Bernal-Martínez has authored more than 30 peer-reviewed scientific publications and two book chapters. She has actively participated in over 12 research projects and has presented her work at numerous national and international scientific conferences. Her research has focused on human fungal infections, antifungal resistance, therapeutic drug monitoring, genetic variants associated with antifungal metabolism, and the identification of predictive biomarkers of invasive fungal infections. However, her primary expertise lies in the diagnostic field, particularly in the design, optimization, and validation of real-time PCR–based methodologies.
She is currently Principal Investigator of a research project aimed at improving current diagnostic techniques for invasive fungal infections, evaluating emerging diagnostic technologies, and studying primary fungal pathogens. A substantial part of her work has been transferred to the Spanish National Health System and to research centers in Latin America. Many of the diagnostic methodologies developed have been incorporated into the official service portfolio of ISCIII. She has collaborated with multiple hospitals through research projects and clinical trials applying these technologies, as well as with the ISCIII spin-off company Micomol S.L.
Dr. Bernal-Martínez has supervised several Master’s and Undergraduate Final Degree Projects from students at the Complutense University of Madrid and the University of Alcalá. She is a member of the teaching staff of the UNED-ISCIII PhD Program in Biomedical Sciences and Public Health and serves as lecturer in the Master’s Program in Public Health and Research in Infectious Diseases at the University of Alcalá. -

Laura Alcázar Fuoli
Research Scientist
Graduated in Biochemistry from the Autonomous University of Madrid and PhD in Biology from the Complutense University of Madrid in 2006. She completed her doctoral thesis at the National Center of Microbiology (CNM) under the direction of Dr. Emilia Mellado, in the study of the synthesis of Ergosterol in Aspergillus fumigatus. In 2012 Laura joined the reference laboratory in mycology with a researcher contract for the “Miguel Servet” program after having worked for three years as an associate researcher at Imperial College London. During that period his research focused on host adaptation mechanisms and virulence factors of A. fumigatus. In 2014 he obtained the position of Senior Scientist of Public Research Organizations carrying out his research work at the CNM.
List of staff
Additional Information
The Pneumococcus Unit is in charge of two very important aspects related to pneumococcus infections, such as epidemiological surveillance and basic and translational research of diseases caused by this pathogen. Our unit contributes to the epidemiological surveillance of invasive pneumococcal disease (IPD), characterizing the serotypes and genotypes of invasive pneumococci circulating in Spain, as well as the evolution of antibiotic resistance in this pathogen.
Identification of culture-negative samples (CSF and pleural fluids) is performed using real-time PCR. Serotyping is performed using the Dot-blot and PCR-sequencing technique. Genotyping for the study of outbreaks and characterization of clones associated with hypervirulent and/or multiresistant strains is performed using the MLST technique and the analysis of complete genomes by massive sequencing. In addition, antibiotic susceptibility is determined following the EUCAST criteria.
Our unit belongs to the IBD-labnet network of the ECDC and annually notifies all cases of IPD to the ECDC and also to the IRIS (Invasive Respiratory Infection Surveillance) network. At the level of basic and translational research, our unit is responsible for studying and characterizing different molecular mechanisms of pathogenicity and protection related to pneumococcal infection. Among the main objectives are the molecular characterization of virulence factors, the study of different vaccine candidate proteins and determining the possible impact that tobacco smoke and the formation of biofilms have on the colonization of the respiratory tract.
The Pneumococcus Unit is in charge of two very important aspects related to pneumococcus infections, such as epidemiological surveillance and basic and translational research of diseases caused by this pathogen. Our unit contributes to the epidemiological surveillance of invasive pneumococcal disease (IPD), characterizing the serotypes and genotypes of invasive pneumococci circulating in Spain, as well as the evolution of antibiotic resistance in this pathogen.
Identification of culture-negative samples (CSF and pleural fluids) is performed using real-time PCR. Serotyping is performed using the Dot-blot and PCR-sequencing technique. Genotyping for the study of outbreaks and characterization of clones associated with hypervirulent and/or multiresistant strains is performed using the MLST technique and the analysis of complete genomes by massive sequencing. In addition, antibiotic susceptibility is determined following the EUCAST criteria.
Our unit belongs to the IBD-labnet network of the ECDC and annually notifies all cases of IPD to the ECDC and also to the IRIS (Invasive Respiratory Infection Surveillance) network. At the level of basic and translational research, our unit is responsible for studying and characterizing different molecular mechanisms of pathogenicity and protection related to pneumococcal infection. Among the main objectives are the molecular characterization of virulence factors, the study of different vaccine candidate proteins and determining the possible impact that tobacco smoke and the formation of biofilms have on the colonization of the respiratory tract.