Immunobiology
Research Lines
Content with Investigacion .
Investigación en infecciones multirresistentes
La emergencia y diseminación global de cepas bacterianas de diferentes especies con resistencia a distintas clases de antibióticos (cepas multirresistentes) supone una amenaza para la eficacia del tratamiento antibiótico. El Antibiotic Resistance Global Report publicado por la Organización Mundial de la Salud en 2014 destacó altas tasas de resistencia en varias especies de bacterias patógenas en cada una de las seis regiones incluidas en el estudio (WHO; 2014). Las infecciones causadas por bacterias resistentes están asociadas a una mortalidad significativa, produciendo más de 700.000 muertes al año, y se estima que esta cifra llegará a 10 millones de muertes anuales en 2050, si no cambia la tendencia actual (Antimicrobial Resistance Rev; 2015). En 2017, la Organización Mundial de la Salud identificó las especies bacterianas frente a las que deberían implementarse nuevas medidas de tratamiento y prevención (WHO 2017). En este informe se clasificaron las especies Gram negativas multirresistentes.
Acinetobacter baumannii, Pseudomonas aeruginosa y Klebsiella pneumoniae con la prioridad más alta (Priority 1: Critical). Las tasas de resistencia a los antimicrobianos de primera línea de estas bacterias Gram-negativas multirresistentes se han incrementado a nivel global durante la última década, complicando significativamente el manejo clínico de las infecciones producidas por estos microorganismos. En este contexto, nuestro grupo está desarrollando las siguientes líneas de investigación:
1. Desarrollo de vacunas para infecciones multirresistentes
Esta línea de investigación tiene como objetivo del desarrollo preclínico de vacunas profilácticas y anticuerpos monoclonales terapéuticos para infecciones producidas por bacterias Gram negativas multirresistentes de difícil manejo clínico debido a la resistencia antimicrobiana. La investigación realizada en esta línea tiene como objetivo identificar y caracterizar antígenos de las bacterias multirresistentes (Acinetobacter baumannii, Klebsiella pneumoniae y Pseudomonas aeruginosa) que sirvan para el desarrollo de anticuerpos monoclonales y vacunas a través de estudios epidemiológicos, genómicos y proteómicos.
2. Caracterización de tratamientos novedosos para infecciones multirresistentes
Esta línea de investigación tiene como objetivo identificar y caracterizar nuevos tratamientos basados en moléculas novedosas y/o combinaciones de antibióticos existentes para infecciones producidas por bacterias Gram negativas multirresistentes. También se emplean técnicas moleculares y "omicas" para la identificación de nuevas dianas para el desarrollo de antibióticos novedosas.
3. Desarrollo de vacunas frente a SARS-CoV-2
Debido la situación producida por la propagación del SARS-CoV-2 urge la realización de estudios que tienen como objetvo el desarrollo de vacunas profilácticas. Nuestro grupo lidera el desarrollo de un prototipo de vacuna basado en ADN plasmídico que expresa antígenos de SARS-CoV-2 y la caracterización de la respuesta inmune inducida por esta vacuna en un modelo murino de inmunización.
Research projects
Content with Investigacion .
Financiación activa:
1. STOPINFECTIONS: Desarrollo de la primera vacuna válida internacional contra la neumonía resistente a antibióticos. Convocatoria Retos de Colaboración 2019. Proyecto RTC 2019-007058-1 financiado por MCIN/AEI/10.13039/501100011033.
2. AMREADY: Desarrollo y fabricación de vacunas como soluciones y preparación ante la crisis sanitaria mundial por la resistencia a antibióticos. Convocatoria Proyectos I+D+i en líneas estratégicas, en colaboración público-privada 2021. Número de expediente PLEC2021-008078. Proyecto PLEC2021-008078 financiado por MCIN/AEI/10.13039/501100011033 y por la Unión Europea NextGenerationEU/PRTR.
3. TRANSVAC DS: Design Study for a European Vaccine R&D Infrastructure. (Unión Europea; Horizonte 2020) Work Package Leader: Michael McConnell. 2020-2022. 1.900.000 €.
4. Development of a multiepitope vaccine for the prevention of COVID-19. (CaixaImpulse Program) CF01-0002. IP: Michael McConnell. 2020-2020. 300.000 €.
5. NANOVAX: Desarrollo de nanopartículas funcionalizadas para mejorar la respuesta a vacunas frente a enfermedades infecciosas. (DTS19CIII/0007) Instituto de Salud Carlos III. IP: Michael McConnell. 2020-2021. 86.000 €.
6. Desarrollo preclínico de vacunas basadas en ADN plasmídico para la prevención de infecciones por Klebsiella pneumoniae y Acinetobacter baumannii multirresistentes. Instituto de Salud Carlos III (FIS). Co-IP: Michael McConnell. 2019-2021. 97.700 €.
7. Coordinación de actividades de investigación en el CNM para realizar una respuesta integradora frente a la pandemia por SARS-COV-2 en España. Work Package Leader: Michael McConnell. 2020-2021. 325.909 €.
8. Investigación para el desarrollo de vectores de expresión de antígenos de Actinobacillus pleuropneumonia. IP: Michael McConnell. 2019-2022. 11.000 €.
9. Investigación de anticuerpos frente a Acinetobacter baumannii. Co-IP Michael McConnell. 2018-2021. 40.400 €.
10. KapaVax: Development of a trivalent vaccine for the prevention of infection caused by Acinetobacter baumannii, Pseudomonas aeruginosa and Klebsiella pneumoniae. CARB-X. IP (ISCIII): Michael McConnell. 2019-2021. 89.615 €.
11. Estudio de la cinética y reactividad de los anticuerpos neutralizantes en pacientes recuperados de COVID-19. Fundación Mutua Madrileña. Work Package Leader: Michael McConnell. 2020-2021. 80.000 €.
12. STOP-Coronavirus: factores clínicos, inmunológicos, genómicos, virológicos y bioéticos de COVID-19. (ISCIII: COV20-00181). 2020-2021. 1.200.000€.
13. Desarrollo de herramientas computacionales basadas en "big data" genómico para el diagnóstico de precisión de sepsis bacteriana. (MPY 509/19). IP: Javier Martín Galiano. 2020-2022- 74,400 €.
Publications
Epidemic history of hepatitis C virus genotypes and subtypes in Portugal.
Palladino C, Ezeonwumelu IJ, Marcelino R, Briz V, Moranguinho I, Serejo F, Velosa JF, Tato Marinho R, Borrego P, Taveira N. 2018. Epidemic history of hepatitis C virus genotypes and subtypes in Portugal. Sci Rep. 2018; 8:12266. (A; FI= 4.12; Q1 Multidisciplinary Sciences; DOI:10.1038/s41598-018-30528-0).
PUBMED DOILow frequency of NS5A relevant resistance-associated substitutions to Elbasvir among hepatitis C virus genotype 1a in Spain: a cross-sectional study.
Palladino C, Sanchez-Carrillo M, Mate-Cano I, Vazquez-Morón S, Jiménez-Sousa MA, Gutiérrez-Rivas M, Resino S, Briz V. Low frequency of NS5A relevant resistance-associated substitutions to Elbasvir among hepatitis C virus genotype 1a in Spain: a cross-sectional study. Sci Rep. 2017; 7(1):2892. (A; FI= 4.12; Q1 Multidisciplinary Sciences).
PUBMED DOIPlasma miRNA profile at COVID-19 onset predicts severity status and mortality.
Fernández-Pato A; Virseda-Berdices A, Ryan P; Martínez-González O, Peréz-García F, Resino S, Martin-Vicente M, Valle-Millares D, Brochado-Kith O; Blancas R; Ceballos FC; Bartolome-Sánchez S; Vidal-Alcántara EJ; Alonso-Menchén D, Blanca-López N; Ramirez Martinez-Acitores I, Rava M, Jiménez-Sousa MA (‡ *), Amanda Fernández-Rodríguez (‡ *). Plasma miRNA profile at COVID-19 onset predicts severity status and mortality. Emerg Microbes Infect 2022; 11(1):676-688 (A; FI= 19.57; D1, Infectious Diseases; JCR 2021).
PUBMED DOIMild profile improvement of immune biomarkers in HIV/HCV-coinfected patients who removed hepatitis C after HCV treatment: a prospective study.
García-Broncano P, Medrano LM, Berenguer J, Brochado O, González-García J, Jiménez-Sousa MA, Quereda C, Sanz J, Téllez MJ, Díaz L, Jiménez JL, Muñoz-Fernández MA, Resino S (*). Mild profile improvement of immune biomarkers in HIV/HCV-coinfected patients who removed hepatitis C after HCV treatment: a prospective study. J Infect 2020; 80(1):99-110. (A; FI= 6.07; Q1, Infectious Diseases; JCR 2020).
PUBMED DOIEfficacy of DNA amplification in tissue biopsy samples to improve the detection of invasive fungal disease
Buitrago MJ, Aguado JM, Ballen A, Bernal-Martinez L, Prieto M, Garcia-Reyne A, Garcia-Rodriguez J, Rodriguez-Tudela JL, Cuenca-Estrella M. Efficacy of DNA amplification in tissue biopsy samples to improve the detection of invasive fungal disease. Clin Microbiol Infect. 2013 Jun;19(6):E271-7. doi: 10.1111/1469-0691.12110. Epub 2013 Mar 7. PMID: 23464751.
PUBMED DOIPotent Induction of Envelope-Specific Antibody Responses by Virus-Like Particle Immunogens Based on HIV-1 Envelopes from Patients with Early Broadly Neutralizing Responses
Beltran-Pavez C, Bontjer I, Gonzalez N, Pernas M, Merino-Mansilla A, Olvera A, Miro JM, Brander C, Alcami J, Sanders RW, Sanchez-Merino V, Yuste E. J Virol. 2022 Jan 12, 96(1): e0134321
PUBMED DOIHIV-1 envelope glycoproteins isolated from Viremic Non-Progressor individuals are fully functional and cytopathic
Cabrera-Rodríguez R, Hebmann V, Marfil S, Pernas M, Marrero-Hernández S, Cabrera C, Urrea V, Casado C, Olivares I, Márquez-Arce D, Pérez-Yanes S, Estévez-Herrera J, Clotet B, Espert L, López-Galíndez C, Biard-Piechaczyk M, Valenzuela-Fernández A, Blanco J. Sci Rep. 2019 Apr 3,9(1):5544
PUBMED DOIContent with Investigacion .
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Antonio Javier Martín Galiano
Investigador Miguel Servet II
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Mireia López Siles
Investigadora Posdoctoral
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Andrés Corral Lugo
Investigador Posdoctoral
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Ana Tajuelo Moreno-Palancas
Investigadora predoctoral
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Marta Vicente Pazos
Investigador predoctoral
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Astrid Pérez Gomez
Investigador posdoctoral
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Mar Cordero Alba
Investigador posdoctoral
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Sonia Prieto Martín Gil
Investigador predoctoral
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Beatriz Cano Castaño
Investigador predoctoral
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Michael McConnell
Científico Titular
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Miriam García López
Contratada predoctoral pFIS
List of staff
Additional Information
Doctoral theses
“Expression and functionality of tlr2 and tlr4 in lymphomyeloid populations present in the lung and lymphoid organs during embryonic and neonatal life in mouse models.” Carolina Ruiz Sánchez. Complutense University of Madrid, 2022
Master's thesis
Detection and characterization of extracellular vesicles of platelet origin in lung supernatants from SPN-infected animals. Marta Paris, Alcalá University, 2024
Study of TLR-dependent activation in the RAW 264.7 macrophage line. Iñigo Merino de Saracho, Alcalá University, 2023
Study of the functionality of TLR receptors in the lung and other lymphoid organs in B cell populations using the neonatal mouse model. Yolanda Campanero, Alcalá University, 2023
Exploratory study of T lymphoid progenitors in the neonatal mouse lung. Alejandro Arrabal, Complutense University of Madrid, 2022
Study of B lymphoid differentiation in mice deficient for CD5 and CD6 molecules. Cristina Martín, Alcalá University, 2022
Role of platelets and their progenitor cells in two animal models of infection: SPN and RSV. Ana de Lucas Rius, Alcalá University, 2020
Pilot study of RSV infection in the mouse model: cellular phenotype of myeloid and lymphoid populations in the lung in two animal models of infection: SPN and RSV. Juan Antonio Martín Quesada, Alcalá University, 2020
B cell response during Streptococcus pneumoniae infection. Eva Castro, 2020
Study of the hematopoietic potential of neonatal lung cells in the mouse model. Ana Cogollo García, Alcalá University, 2018
Innate immune response to S. pneumoniae in the lung. Rodrigo Sánchez, Complutense University of Madrid, 2018
Neonatal immunity in the mouse model: localization and function of the innate and adaptive response. Alba Ezequiel Fernández, Alcalá University, 2017
Characterization of immunoglobulin gene diversity in the mouse model of TLR4 homeostasis and activation by bacterial lipopolysaccharide. Cristina García Caballero, Alcalá University, 2017
Altered lymphopoiesis and splenic B cell subsets on Telomerase Activity Deficient Mice (TERC-/-). Juliana Manosalva, Complutense University of Madrid, 2017
Study of the Immune Response in Nasopharyngeal Washings of Infants with Bronchiolitis. Isabel Martín Barrios, Complutense University of Madrid, 2016
Dynamics of B1-REL lymphocytes in the in vivo immunization model with DNP-LPS. Inmaculada Sanz Ramos University Alcalá, 2015
Megakaryocyte differentiation pathways in the mouse model. Marta Cobos Briz, Alcalá University, 2015
Role of megakaryocytes in infectious processes. Melania Guerrero Hue, Complutense University of Madrid, 2015
Final degree projects
Study of new bacterial vaccines in the mouse (Mus musculus) infection model due to Streptococcus pneumoniae. Alejandro Arrabal, Polytechnic University of Madrid, 2021
Megakaryocytes and platelets in SPN respiratory infection: Role of TLR4. Óscar González Hervás, Complutense University of Madrid, 2021
Study of the immune response mediated by pseudo-innate B lymphocytes against TLR4-dependent immunization models. Rodrigo Sánchez, Complutense University of Madrid, 2017.
Study of the diversity in the immunoglobulin repertoire in healthy individuals. Isabel Martín, Francisco de Vitoria University, 2015.
Dynamics of hematopoietic populations in the perinatal spleen. Inmaculada Sanz, Alcalá University, 2014
Teaching in training courses
Training course: Introduction to Flow Cytometry (from 2015 to present)
Training Course: Flow Cytometry Data Analysis (2018 to present)
Outreach / Citizen Science
• Collaboration in the 4th+Company CAM program.
• Collaboration with the ISCIII Scientific Culture Unit in Science Week at the ISCIII
• Scientific Dissemination Project "Talking about Science", carried out in Majadahonda primary, secondary and high school schools, since 2015 in collaboration with the Department of Education and Youth of the Majadahonda City Council: “How your Immune System works and healthy lifestyle habits to take care of it”
Doctoral theses
“Expression and functionality of tlr2 and tlr4 in lymphomyeloid populations present in the lung and lymphoid organs during embryonic and neonatal life in mouse models.” Carolina Ruiz Sánchez. Complutense University of Madrid, 2022
Master's thesis
Detection and characterization of extracellular vesicles of platelet origin in lung supernatants from SPN-infected animals. Marta Paris, Alcalá University, 2024
Study of TLR-dependent activation in the RAW 264.7 macrophage line. Iñigo Merino de Saracho, Alcalá University, 2023
Study of the functionality of TLR receptors in the lung and other lymphoid organs in B cell populations using the neonatal mouse model. Yolanda Campanero, Alcalá University, 2023
Exploratory study of T lymphoid progenitors in the neonatal mouse lung. Alejandro Arrabal, Complutense University of Madrid, 2022
Study of B lymphoid differentiation in mice deficient for CD5 and CD6 molecules. Cristina Martín, Alcalá University, 2022
Role of platelets and their progenitor cells in two animal models of infection: SPN and RSV. Ana de Lucas Rius, Alcalá University, 2020
Pilot study of RSV infection in the mouse model: cellular phenotype of myeloid and lymphoid populations in the lung in two animal models of infection: SPN and RSV. Juan Antonio Martín Quesada, Alcalá University, 2020
B cell response during Streptococcus pneumoniae infection. Eva Castro, 2020
Study of the hematopoietic potential of neonatal lung cells in the mouse model. Ana Cogollo García, Alcalá University, 2018
Innate immune response to S. pneumoniae in the lung. Rodrigo Sánchez, Complutense University of Madrid, 2018
Neonatal immunity in the mouse model: localization and function of the innate and adaptive response. Alba Ezequiel Fernández, Alcalá University, 2017
Characterization of immunoglobulin gene diversity in the mouse model of TLR4 homeostasis and activation by bacterial lipopolysaccharide. Cristina García Caballero, Alcalá University, 2017
Altered lymphopoiesis and splenic B cell subsets on Telomerase Activity Deficient Mice (TERC-/-). Juliana Manosalva, Complutense University of Madrid, 2017
Study of the Immune Response in Nasopharyngeal Washings of Infants with Bronchiolitis. Isabel Martín Barrios, Complutense University of Madrid, 2016
Dynamics of B1-REL lymphocytes in the in vivo immunization model with DNP-LPS. Inmaculada Sanz Ramos University Alcalá, 2015
Megakaryocyte differentiation pathways in the mouse model. Marta Cobos Briz, Alcalá University, 2015
Role of megakaryocytes in infectious processes. Melania Guerrero Hue, Complutense University of Madrid, 2015
Final degree projects
Study of new bacterial vaccines in the mouse (Mus musculus) infection model due to Streptococcus pneumoniae. Alejandro Arrabal, Polytechnic University of Madrid, 2021
Megakaryocytes and platelets in SPN respiratory infection: Role of TLR4. Óscar González Hervás, Complutense University of Madrid, 2021
Study of the immune response mediated by pseudo-innate B lymphocytes against TLR4-dependent immunization models. Rodrigo Sánchez, Complutense University of Madrid, 2017.
Study of the diversity in the immunoglobulin repertoire in healthy individuals. Isabel Martín, Francisco de Vitoria University, 2015.
Dynamics of hematopoietic populations in the perinatal spleen. Inmaculada Sanz, Alcalá University, 2014
Teaching in training courses
Training course: Introduction to Flow Cytometry (from 2015 to present)
Training Course: Flow Cytometry Data Analysis (2018 to present)
Outreach / Citizen Science
• Collaboration in the 4th+Company CAM program.
• Collaboration with the ISCIII Scientific Culture Unit in Science Week at the ISCIII
• Scientific Dissemination Project "Talking about Science", carried out in Majadahonda primary, secondary and high school schools, since 2015 in collaboration with the Department of Education and Youth of the Majadahonda City Council: “How your Immune System works and healthy lifestyle habits to take care of it”