Special Pathogens
Líneas de investigación
Content with Investigacion .
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.
Publicaciones destacadas
Pediatric drug-resistant tuberculosis in Madrid family matters
7. Santiago B, Baquero-Artiago F, Mejias A, Blázquez D, Jimenez MS, Mellado-Peña MJ, EREMITA Study group. Pediatric drug-resistant tuberculosis in Madrid: family matters. The Pediatric Infectious Disease Journal. 2014; 33:345-350.
PUBMED DOIMycobacterium kumamotonense, another Member of the Mycobacterium terrae Complex Unusually Carrying Two Copies of the Ribosomal RNA Operon
8. Menéndez MC, Jiménez MS, Yubero J, García MJ. Mycobacterium kumamotonense, another Member of the Mycobacterium terrae Complex Unusually Carrying Two Copies of the Ribosomal RNA Operon. Mycobac Dis; 2014; 4:176.
DOIMycobacterium mageritense meningitis in an immunocompetent patient with an intrathecal catheter.
9. Muñoz-Sanz A, Rodríguez Vidigal FF, Vera-Tome A, Jimenez MS. Mycobacterium mageritense meningitis in an immunocompetent patient with an intrathecal catheter. Enfer Infecc Microbiol Clin. 2013; 31:59-6
PUBMED DOIMeasles virus genotype D4 strains with non-standard length M-F non-coding region circulated during the major outbreaks of 2011-2012 in Spain.
2. Gil H, Fernández-García A*, Mosquera MM, Hübschen JM, Castellanos AM, de Ory F, Masa-Calles J, Echevarría JE.Measles virus genotype D4 strains with non-standard length M-F non-coding region circulated during the major outbreaks of 2011-2012 in Spain. PLoS One. 2018 Jul. 16;13(7):e0199975. * Corresponding author.
PUBMED DOIIsolation, antigenicity and immunogenicity of Lleida Bat Lyssavirus
3. Banyard AC, Selden D, Wu G; Thorne L, Jennings D, Marston D, Finke S, Freuling CM, Mueller T, Echevarria JE, Fooks AR. Isolation, antigenicity and immunogenicity of Lleida Bat Lyssavirus. Journal of General Virology, 2018. 99(12):1590-1599
PUBMED DOIShift within age-groups of mumps incidence, hospitalizations and severe complications in a highly vaccinated population
6. López-Perea N, Masa-Callesa J, Torres de Miera MV, Fernández-García A, Echevarría JE, de Ory F, Martínez de Aragón MV. Shift within age-groups of mumps incidence, hospitalizations and severe complications in a highly vaccinated population. Spain, 1998–2014. Vaccine, 2017, 35(34): 4339-4345.
PUBMED DOIThe Complexity of Antibody Responses Elicited against the Respiratory Syncytial Virus Glycoproteins in Hospitalized Children Younger than 2 Years
2. Trento A, Rodriguez-Fernandez R, Gonzalez-Sanchez MI, Gonzalez-Martinez F, Mas V, Vazquez M, et al. The Complexity of Antibody Responses Elicited against the Respiratory Syncytial Virus Glycoproteins in Hospitalized Children Younger than 2 Years. Front Microbiol. 2017;8:2301.
PUBMED DOIPotent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state.
3. Rossey I, Gilman MS, Kabeche SC, Sedeyn K, Wrapp D, Kanekiyo M, et al. Potent single-domain antibodies that arrest respiratory syncytial virus fusion protein in its prefusion state. Nat Commun. 2017;8:14158.
PUBMED DOIRapid profiling of RSV antibody repertoires from the memory B cells of naturally infected adult donors
6. Gilman MS, Castellanos CA, Chen M, Ngwuta JO, Goodwin E, Moin SM, et al. Rapid profiling of RSV antibody repertoires from the memory B cells of naturally infected adult donors. Sci Immunol. 2016;1(6).
PUBMED DOICharacterization of a Prefusion-Specific Antibody That Recognizes a Quaternary, Cleavage-Dependent Epitope on the RSV Fusion Glycoprotein.
8. Gilman MS, Moin SM, Mas V, Chen M, Patel NK, Kramer K, et al. Characterization of a Prefusion-Specific Antibody That Recognizes a Quaternary, Cleavage-Dependent Epitope on the RSV Fusion Glycoprotein. PLoS Pathog. 2015;11(7):e1005035.
PUBMED DOIPolyclonal and monoclonal antibodies specific for the six-helix bundle of the human respiratory syncytial virus fusion glycoprotein as probes of the protein post-fusion conformation.
9. Palomo C, Mas V, Vazquez M, Cano O, Luque D, Terron MC, et al. Polyclonal and monoclonal antibodies specific for the six-helix bundle of the human respiratory syncytial virus fusion glycoprotein as probes of the protein post-fusion conformation. Virology. 2014;460-461:119-27.
PUBMED DOIBiophysical properties of single rotavirus particles account for the functions of protein shells in a multilayered virus
Jiménez-Zaragoza M., Yubero M.L., Martín-Forero E., Castón J.R., Reguera D., Luque D.*, de Pablo P.J., Rodríguez J.M. 2018. Biophysical properties of single rotavirus particles account for the functions of protein shells in a multilayered virus. eLife 7: e37295. *Corresponding author.
PUBMED DOIAcquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses
Mata C.P., Luque D., Gómez-Blanco J., Rodríguez J.M., González J.M., Suzuki N., Ghabrial S.A., Carrascosa J.L., Trus B.L., Castón J.R. 2017. Acquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses. PLoS Pathog. 13(12):e1006755.
PUBMED DOIStructural Insights into the Assembly and Regulation of Distinct Viral Capsid Complexes
Sarker S., C. Terrón M., Khandokar Y., Aragão D., Hardy J.M., Radjainia M., Jiménez-Zaragoza M., de Pablo P.J., Coulibaly F., Luque D., Raidal D.R., Forwood J.K. 2016. Structural Insights into the Assembly and Regulation of Distinct Viral Capsid Complexes. Nat. Commun. 7:13014. IF: 12.124; D1.
PUBMED DOIHeterodimers as the structural unit of the T=1 capsid of the fungal dsRNA Rosellinia necatrix quadrivirus 1
Luque D., Mata C.P., González-Camacho F., González J.M., Gómez-Blanco J., Alfonso C., Rivas G., Havens W.M., Kanematsu S., Suzuki N., Ghabrial S.A., Trus B.L., Castón J.R. 2016. Heterodimers as the structural unit of the T=1 capsid of the fungal dsRNA Rosellinia necatrix quadrivirus 1. J Virol. 90(24):11220-11230. IF: 4.666, Q1.
PUBMED DOISelf-assembly and characterization of small and monodisperse dye nanospheres in a protein cage
Luque D., de la Escosura A., Snijder J., Brasch M., Burnley R.J, Koay M.S.T., Carrascosa J.L., Wuite G.J.L., Roos W.H., Heck A.J.R., J.J.L.M Cornelissen, Torres T., Castón J.R. 2014. Self-assembly and characterization of small and monodisperse dye nanospheres in a protein cage. Chem. Sci.,5, 575-581. IF: 9.211, D1.
DOIContent with Investigacion .
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María Cabrerizo Sanz
Tenure Scientist and Group Leader
ORCID code: 0000-0001-7054-5696
Doctor in Chemistry, specializing in Biochemistry and Molecular Biology, Universidad Autónoma de Madrid (2000). Except for a postdoctoral period of 2 years at the Hospital de La Princesa, in which her research was related to onco-hematological diseases, the rest of her scientific career has focused on the study of infectious diseases caused by viruses and their surveillance. She joined the Instituto de Salud Carlos III in 2003, first in the Laboratory of Arbovirus and Imported Viral Diseases, then in the Laboratory of Viral Hepatitis and finally, in the Laboratory of Enterovirus (which is accredited as a National Polio Laboratory -LNP- for the WHO since 1998). She obtained the position of Tenure Scientist in 2016, at the same time she assumed the responsibility of the laboratory, currently of Enteric Viruses: Poliovirus/Enterovirus, Parechovirus and Gastroenteritis-producing Viruses, of the CNM. She has 4 scientific sexennials and 4 quinquennials recognized.
She has been and is PI of 4 consecutive research projects and 3 service contracts, from 2012 to the present, participating, in addition, in other 20 projects. As head of the LNP, she is part of the Working Group of the National Plan for the Eradication of Poliomyelitis and of the WHO European Polio Laboratory Network. She is also a member of the European Non-Polio Enterovirus Network (ENPEN), and of the national cooperation networks CIBERESP and RITIP (IdiPAZ). Since 2023 she is a Council Member from Spain of the European Society.
In total she has published 98 articles in WoS indexed journals (23 Q1 and 22 D1), being first author, senior author or correspondence author in 43 of them (H=27). She has supervised 1 PhD Thesis (2017) and 12 TFM. She is currently supervising another doctoral thesis (IMIENS-UNED). She participates as a teacher in three university masters (UCM, UAH and UV), being coordinator of the subject H2 of the Master of Virology at UCM.
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Mª Dolores Fernández García
Tenure Scientist
ORCID code: 0000-0003-0336-6596
Degree in Pharmacy (2005) and PhD from the University VII Paris Diderot in Microbiology (2010). She completed her doctoral thesis at the Pasteur Institute in Paris characterizing the molecular and cellular basis of flavivirus entry into cells. Specialist in Public Health Microbiology (European Program EUPHEM coordinated by ECDC). She has worked 3 years for the French Ministry of Foreign Affairs as a researcher at the Pasteur Institute in Dakar (Senegal) carrying out microbiological surveillance activities and research on polioviruses and non-polio enteroviruses in West Africa. She has obtained two Miguel Servet contracts: one to work at IMIBIC in Cordoba (2019) and an intramural one to work at CNM (2020). Both were awarded for the study of neurotropic viruses applying massive sequencing for their diagnosis. In 2021 he joined the CNM-ISCIII as a Tenure Research Scientist at the Enterovirus and Viral Gastroenteritis Unit of the CNM-ISCIII. Since then, she combines her scientific activity with the assistance to the National Health System in the microbiological research of outbreaks and in the Genomic Surveillance of Enteroviruses and Gastroenteritis-producing Viruses.
She is a researcher in the Epidemiology and Public Health Area of the Centro de Investigación Biomédica en Red (CIBERESP-ISCIII). In addition, she is an evaluator and panelist for the HORIZON health program projects of the European Commission, the French National Agency ANRS-Emerging Infectious Diseases, R&D&I in HEALTH of the Strategic Action in Health (ISCIII) and the Andalusian Public Foundation Progreso y Salud. She has worked as scientific advisor to the Spanish Ministry of Health on Rotavirus and Polio. Since 2020 she has been teaching virology in different Spanish universities.
She has worked for WHO in the investigation of numerous outbreaks caused by viruses (Ebola, Zika, Yellow Fever, Dengue, etc.) in African and Asian countries strengthening laboratory capacities through technology transfer of diagnostic methods, training of laboratory personnel in these countries and scientific advisory tasks to the Ministries of Health. She has been the Health Coordinator of the START Project (Spanish Technical Aid Response Team) of the AECID, framed in the “Emergency Medical Teams” initiative of the WHO, participating in the establishment for Spain of a field hospital classified by the WHO as EMT Level 2 for interventions in humanitarian emergencies.
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Nerea García Ibáñez
Ayudante de Investigación de OPI. Técnico de laboratorio
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Vanesa Recio Huertas
Ayudante de Investigación de OPI. Técnico de laboratorio (apoyo)
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Ana Donoso Almenara
Contratada predoctoral pFIS
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Rubén González Sanz
Técnico Superior Especializado OPI
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Juan Camacho Padilla
Investigador predoctoral (PFIS)
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Clara Martín Martín
Investigador predoctoral (PFIS)
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Nazaret Díaz Sánchez
Técnico Superior Especializado OPI (apoyo)
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Carmen Serrano Risquez
Investigador predoctoral (CAM)
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Yasmin Biya Assiry
Técnico de laboratorio en formación (PEJ-CAM)
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Estrella Ruiz de Pedro
Técnico de laboratorio (PTA para Infraestructuras de I+D+I)
List of staff
Información adicional
1.- The study of non-gastrointestinal zoonoses, some of them transmitted by vectors and/or emerging, aims to:
- The development and validation of new diagnostic and genotyping techniques represent important scientific-technical support to the National Health System, acting as a reference laboratory.
- Research on the Molecular Epidemiology of Coxiella burnetii studies the circulating genotypes and their association with the different clinical presentations of Q fever.
- Discovery of new pathogens: especially relevant in the case of Francisella with the description of F. hispaniensis, as well as taxonomically unknown variants of Bartonella, Borrelia and Rickettsia, found in reservoirs, vectors and clinical samples.
- Surveillance in nature analyzes kinetics, transmission cycles and reservoirs.
• Genotyping techniques allow traceability studies to be carried out in the case of natural outbreaks or intentional release. • Method accreditation: ISO15189 standard (clinical samples), ISO17025 (environmental).
2.- The study of bacteria with potential use in bioterrorism through participation in European projects (Joint Actions: QUANDHIP, EMERGE, SHARP) allows us to respond appropriately to possible health alert situations. An important methodological development has been carried out for the detection of these agents and a Rapid Response System has been implemented.