Viral Biology
Research projects
Content with Investigacion .
Los proyectos del grupo de los últimos años son los siguientes:
Proyecto “Enfoques inmunoinformaticos e inmunoproteomicos para identificar epitopos bacterianos implicados en la REA: diagnostico temprano y diseño de farmacos” financiado por el Plan Nacional de I+D+i del Ministerio de Ciencia, Innovación y Universidades. Centro Nacional de Microbiología, Instituto de Salud Carlos III. Investigador principal. Año: 2024-2026. Presupuesto Concedido: 225.000 euros. Proyecto PID2023-148729OB-100 financiado por MICIU/AEI/10.13039/501100011033 y por FEDER, UE.
Proyecto “La interrelación de CD69 y el procesamiento antigénico en enfermedades infecciosas y autoinmunes" financiado por la Acción Estratégica en Salud del Ministerio de Ciencia, Innovación y Universidades. Año: 2023-2025.
Proyecto “Interacciones génicas y proteicas de CD69 y sus regiones génicas reguladoras con moléculas" inanciado por el Plan Nacional de I+D+i del Ministerio de Ciencia, Innovación y Universidades. Centro Nacional de Microbiología, Instituto de Salud Carlos III. Proyecto PID2021-125757OB-100 financiado por MICIU/AEI/10.13039/501100011033 y por FEDER, UE.
Proyecto “Nuevas tecnologías de fabricación y optimización de tejidos: la piel como sistema modelo” financiado por el Programa de Actividades de I+D entre grupos de investigación de la Comunidad de Madrid en tecnologías 2018. Año: 2020-2023. Proyecto Coordinado por el Dr. Pablo Acedo de la Universidad Carlos III.
Proyecto “Estudio de CD69 como diana para mejorar el tratamiento de la leucopania y la movilización de células T de memoria de médula ósea" financiado por la Acción Estratégica en Salud del Ministerio de Ciencia, Innovación y Universidades. Año:2020-2024.
Proyecto “Diseño racional de una vacuna contra el virus respiratorio sincitial humano” financiado por la Acción Estratégica en Salud del Ministerio de Ciencia, Innovación y Universidades. Año: 2019-2022
Proyecto “Función de CD69 y sus elementos reguladores" financiado por la Acción Estratégica en Salud del Ministerio de Ciencia, Innovación y Universidades. Año: 2017-2022.
Proyecto “Diseño de vacunas recombinantes poliepitópicas para generar respuestas CD8+ contra virus emergentes” financiado por el Plan Nacional de I+D+i del Ministerio de Economía y Competitividad. Año: 2015-2017.
Proyecto “Análisis de los efectos de CD69 dependientes de S1P1 en modelos de infección e inflamación y estudio de su regulación” financiado por el FIS. Año: 2014-2017.
Proyecto “ADELVAC: Adenovirus con delecciones epitópicas para vacunación” financiado por el programa INNPACTO del Ministerio de Economía y Competitividad. Centro Nacional de Microbiología, Instituto de Salud Carlos III. Año: 2012-2014. Proyecto Coordinado por el Dr. Manel Cascallo de VCN BIOSCIENCES SL.
Proyecto “Diseño de vacunas multiepitópicas recombinantes para aumentar la respuesta inmune celular contra el VRSH” financiado por el Plan Nacional de I+D+i del Ministerio de Ciencia e Innovación. Año: 2012-2014.
Publications
Lorente, E., A. Barriga, E. Barnea, C. Palomo, J. Garcia-Arriaza, C. Mir, M. Esteban, A. Admon, and D. López. 2019. Immunoproteomic analysis of a Chikungunya poxvirus-based vaccine reveals high HLA class II immunoprevalence. PLoS.Negl.Trop.Dis. 13:e0007547.
Lorente, E., A. Barriga, E. Barnea, C. Palomo, J. Garcia-Arriaza, C. Mir, M. Esteban, A. Admon, and D. López. 2019. Immunoproteomic analysis of a Chikungunya poxvirus-based vaccine reveals high HLA class II immunoprevalence. PLoS.Negl.Trop.Dis. 13:e0007547.
PUBMED DOILópez, D., A. Barriga, E. Lorente, and C. Mir. 2019. Immunoproteomic Lessons for Human Respiratory Syncytial Virus Vaccine Design. J.Clin.Med. 8.
López, D., A. Barriga, E. Lorente, and C. Mir. 2019. Immunoproteomic Lessons for Human Respiratory Syncytial Virus Vaccine Design. J.Clin.Med. 8.
PUBMED DOIBrait, V. H., F. Miro-Mur, I. Perez-de-Puig, L. Notario, B. Hurtado, J. Pedragosa, M. Gallizioli, F. Jimenez-Altayo, M. Arbaizar-Rovirosa, A. Otxoa-de-Amezaga, J. Monteagudo, M. Ferrer-Ferrer, l. R. de, X, E. Bonfill-Teixidor, A. Salas-Perdomo, A. Hernandez-Vidal, P. Garcia-de-Frutos, P. Lauzurica, and A. M. Planas. 2019. CD69 Plays a Beneficial Role in Ischemic Stroke by Dampening Endothelial Activation. Circ.Res. 124:279-291.
Brait, V. H., F. Miro-Mur, I. Perez-de-Puig, L. Notario, B. Hurtado, J. Pedragosa, M. Gallizioli, F. Jimenez-Altayo, M. Arbaizar-Rovirosa, A. Otxoa-de-Amezaga, J. Monteagudo, M. Ferrer-Ferrer, l. R. de, X, E. Bonfill-Teixidor, A. Salas-Perdomo, A. Hernandez-Vidal, P. Garcia-de-Frutos, P. Lauzurica, and A. M. Planas. 2019. CD69 Plays a Beneficial Role in Ischemic Stroke by Dampening Endothelial Activation. Circ.Res. 124:279-291.
DOILorente, E., J. Redondo-Anton, A. Martín-Esteban, P. Guasp, E. Barnea, P. Lauzurica, A. Admon, and J. A. López de Castro. 2019. Substantial Influence of ERAP2 on the HLA-B*40:02 Peptidome: Implications for HLA-B*27-Negative Ankylosing Spondylitis. Mol.Cell Proteomics. 18:2298-2309.
Lorente, E., J. Redondo-Anton, A. Martín-Esteban, P. Guasp, E. Barnea, P. Lauzurica, A. Admon, and J. A. López de Castro. 2019. Substantial Influence of ERAP2 on the HLA-B*40:02 Peptidome: Implications for HLA-B*27-Negative Ankylosing Spondylitis. Mol.Cell Proteomics. 18:2298-2309.
PUBMED DOIContent with Investigacion .
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Óscar Zaragoza Hernández
Research Professor
ORCID code: 0000-0002-1581-0845
Dr. Oscar Zaragoza graduated in Biology from the Complutense University of Madrid in 1995 and obtained his PhD from the Autonomous University of Madrid. He completed his doctoral thesis (2000) at the CSIC under the direction of Dr. Juana María Gancedo on the topic of glucose catabolite repression in Saccharomyces cerevisiae. During this period, he was also tutored by Dr. Carlos Gancedo in collaborative projects, that allowed him to start working with the pathogenic yeast Candida albicans.
After a brief postdoctoral stay in the same laboratory, in 2001, he joined the laboratory of Dr. Arturo Casadevall (Albert Einstein College of Medicine, New York), where he specialized in research into virulence mechanisms of pathogenic fungi, mainly Cryptococcus neoformans. In 2006 he joined the National Center for Microbiology of the ISCIII thanks to a “Ramón y Cajal” contract and he became staff scientist in 2009. Currently, he occupies the rank of Research Professor of the OPIs.
During his career, he has published more than 140 articles, 4 book chapters and a popular book ("Microscopic fungi: Friends or Enemies?"). He has obtained public and private projects, and participates as CoIP of a CIBERINFEC group. He has supervised seven doctoral theses, and numerous master's thesis projects.
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Alba Torres Cano
PhD student (FPI contract)
ORCID code: 0009-0008-3151-1803
Alba Torres Cano has a degree in Health Biology from the University of Alcalá de Henares (UAH), and completed the master's degree "Microbiology Applied to Public Health and Infectious Diseases" from the UAH. He completed his master's thesis at the CNM under the direction of Dr. Zaragoza in 2022, focusing on pathogenic yeasts. In that year, he joined the ISCIII with an FPI predoctoral contract under the direction of Dr. Óscar Zaragoza.
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Alejandra Lora Plaza
PhD student (FPI contract)
ORCID code: 0009-0004-4344-1583
Alejandra Lora Plaza graduated in Health Biology and completed the Master in Applied Microbiology in Public Health and Infectious Diseases Research (2021) at the University of Alcalá in both cases. She joined the Department of Microbiology of the Faculty of Biology of the University of Barcelona to carry out her internship and her final degree work. Subsequently, she did her Master's thesis at the Microbiology Laboratory of the Hospital Universitario Príncipe de Asturias. In 2022 she joined the Public Health and Epidemiology group at the Marqués de Valdecilla Research Institute (IDIVAL), Santander, as a research support technician. In 2024 he joined Dr. Concha Gil's group in the Department of Microbiology and Parasitology at the Faculty of Pharmacy of the Complutense University of Madrid focusing on yeasts.
In 2025 she joined ISCIII with a predoctoral FPI fellowship under the direction of Dr. Óscar Zaragoza.
List of staff
Additional Information
The research activity of the Viral Biology group since its beginnings in the 1980s has focused on respiratory viruses, especially on the study of the mechanisms of virus entry into the cell, evolutionary aspects, antigenic properties and vaccine development.
Currently, the group's objectives are focused on the characterisation of the immune response and the development of vaccines against human pneumoviruses: human respiratory syncytial virus (hRSV) and human metapneumovirus (hMPV).
Both viruses are considered to be important respiratory pathogens of high clinical relevance, especially in the paediatric population.
Safe and effective vaccines against these viruses are currently not available. Soluble protein subunits based on the fusion protein (F-protein) of hRSV and hMPV are being developed in the laboratory by protein engineering for use as vaccines against human pneumoviruses.
On the other hand, and thanks to the characterisation of the type of humoral response induced by the F proteins of these viruses, the laboratory is also involved in the isolation of monoclonal antibodies and nanoantibodies for use as treatments against these viruses.
The research activity of the Viral Biology group since its beginnings in the 1980s has focused on respiratory viruses, especially on the study of the mechanisms of virus entry into the cell, evolutionary aspects, antigenic properties and vaccine development.
Currently, the group's objectives are focused on the characterisation of the immune response and the development of vaccines against human pneumoviruses: human respiratory syncytial virus (hRSV) and human metapneumovirus (hMPV).
Both viruses are considered to be important respiratory pathogens of high clinical relevance, especially in the paediatric population.
Safe and effective vaccines against these viruses are currently not available. Soluble protein subunits based on the fusion protein (F-protein) of hRSV and hMPV are being developed in the laboratory by protein engineering for use as vaccines against human pneumoviruses.
On the other hand, and thanks to the characterisation of the type of humoral response induced by the F proteins of these viruses, the laboratory is also involved in the isolation of monoclonal antibodies and nanoantibodies for use as treatments against these viruses.