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Investigación

Respiratory viruses and Influenza

Líneas de investigación

Content with Investigacion Virus Respiratorios y Gripe .

Virus Respiratorios y Gripe

• Gripe humana y animal. Vigilancia de su circulación. Antigripales, resistencias virales. Vacunas

• Infecciones víricas respiratorias en pacientes pediátricos • Diagnóstico, referencia y Nuevos procedimientos basados en la metagenómica viral para el estudio de virus respiratorios.

• Epidemiologia de Virus respiratorios: Gripe, Virus Respiratorio Sincitial, Adenovirus, Metapneumovirus humano, Coronavirus (MERS, 229E, OC43, HKU1, NL63), Parainfluenzavirus, Rinovirus, Bocavirus humano

• Virus respiratorios emergentes • Biodefensa y virus

Proyectos de investigación

Content with Investigacion Virus Respiratorios y Gripe .

CURRENT PROJECTS: Award of the RETOS-COLABORATION 2019 Call for Proposals: Development of diagnostic kits using real-time multiplex PCR in liquid and gel format for the detection of viral diseases and sepsis.

Reference: RTC2019-007023-1 / MPY 292/20. Project funded by the Ministry of Science and Innovation and the State Research Agency.


 

PI: Inmaculada Casas and Giovanni Fedele.

Execution dates: 2020-2023.

Amount financed: 442,653 €.

Collaborator: Francisco Pozo

Publicaciones destacadas

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CD45 expression discriminates waves of embryonic megakaryocytes in the mouse.

Cortegano, I., Serrano, N., Ruiz, C., Rodríguez, M., Prado, C., Alía, M., Hidalgo, A., Cano, E., de Andrés B. and Gaspar, ML. 2018. Haematologica, 104(9):1853-1865

PUBMED DOI

Podocytes as new cellular targets of hemoglobin toxicity in massive intravascular hemolysis.

Rubio-Navarro A, Sanchez-Niño MD, Guerrero-Hue M, García-Caballero C, Gutiérrez E, Yuste C, Sevillano A, Praga M, Egea J, Román E, Cannata P, Ortega R, Cortegano I, de Andrés B, Gaspar ML, Cadenas S, Ortiz A, Egido J, Moreno JA. Podocytes as new cellular targets of hemoglobin toxicity in massive intravascular hemolysis. 2018. J.Pathol. 244(3):296-310.

PUBMED DOI

DNGR-1+ dendritic cells are located in meningeal and choroid plexus membranes of the non-injured brain.

Quintana, E., Fernández. A, de Andrés, B., Liste, I., Sancho, D., Gaspar, ML. and Cano, E. Glia (2015) 62 (12):2231-2248

PUBMED DOI

Role of PatAB transporter in efflux of levofloxacin in Streptococcus pneumoniae

Amblar M, Zaballos A, de la Campa AG. Antibiotics. 2022; 17:1837.

PUBMED DOI

HU of Streptococcus pneumoniae is essential for the preservation of DNA supercoiling

Ferrándiz MJ, Carreño D, Ayora S, de la Campa AG. Front Microbiol. 9:493 (2018).

PUBMED DOI

StaR Is a positive regulator of topoisomerase I activity involved in supercoiling maintenance in Streptococcus pneumoniae

de Vasconcelos Junior AA, Tirado-Vélez JM, Martín-Galiano AJ, Megias D, Ferrándiz MJ, Hernández P, Amblar M, de la Campa AG. Int J Mol Sci. 2023; 24:5973.

PUBMED DOI

Genome-wide proximity between RNA polymerase and DNA topoisomerase I supports transcription in Streptococcus pneumoniae

Ferrándiz M-J, Hernández P, de la Campa AG. PLoS Genet. 2021; 17:e1009542.

PUBMED DOI

Reactive oxygen species production is a major factor directing the post-antibiotic effect of fluoroquinolones in Streptococcus pneumoniae

García MT, Valenzuela MV, Ferrándiz MJ, de la Campa AG. Antimicrob Agents Chemother. 2019; 63:e00737-19.

PUBMED DOI

The balance between gyrase and topoisomerase I activities determines levels of supercoiling, nucleoid compaction, and viability in bacteria

García-López M, Megias D, Ferrándiz MJ, de la Campa AG. Front Microbiol. 2023; 11;1094692.

PUBMED DOI

Physiologic and transcriptomic effects triggered by overexpression of wild type and mutant DNA topoisomerase I in Streptococcus pneumoniae

García-López M, Hernández P, Megias D, Ferrándiz MJ, de la Campa AG. Int J Mol Sci. 2023; 24:15800.

PUBMED DOI

Seconeolitsine, the novel inhibitor of DNA topoisomerase I, protects against invasive pneumococcal disease caused by fluoroquinolone-resistant strains.

Tirado-Vélez JM, Carreño D, Sevillano D, Alou L, Yuste J, de la Campa AG. Antibiotics 2021; 10:573.

PUBMED DOI

A Small Non-Coding RNA Modulates Expression of Pilus-1 Type in Streptococcus pneumoniae

Acebo P, Herranz C, Bernal-Espenberger L, Gómez-Sanz A, Terron MC, Luque D and Amblar M. Microorganisms. 2021; 9:1883.

PUBMED DOI

Boldine-derived alkaloids inhibit the activity of DNA topoisomerase I and growth of Mycobacterium tuberculosis.

García MT, Carreño D, Tirado-Vélez JM, Ferrándiz MJ, Rodrigues L, Gracia B, Amblar M, Ainsa JA*, de la Campa AG. Front Microbiol. 9:493 (2018).

PUBMED DOI

Bridging chromosomal architecture and pathophysiology of Streptococcus pneumoniae

Martín-Galiano AJ, Ferrándiz MJ, de la Campa AG. Genome Biol Evol. 2017; 9:350-361.

PUBMED DOI

An increase in negative supercoiling in bacteria reveals topology-reacting gene clusters and a homeostatic response mediated by the DNA topoisomerase I gene

Ferrándiz MJ, Martín-Galiano AJ, Arnanz C, Camacho-Soguero I, Tirado-Vélez JM, de la Campa AG. 2016. Nucl Acids Res. 44:7292-7303 (2016).

PUBMED DOI

Reactive oxygen species contribute to the bactericidal effects of the fluoroquinolone moxifloxacin in Streptococcus pneumoniae

Ferrándiz MJ, Martín-Galiano AJ, Arnanz C, Zimmerman T, de la Campa AG. Antimicrob Agents Chemother. 60:409-417 (2016).

PUBMED DOI

The fluoroquinolone levofloxacin triggers the transcriptional activation of iron transport genes that contribute to cell death in Streptococcus pneumoniae.

Ferrándiz MJ, de la Campa AG. Antimicrob Agents Chemother. 58:247-257 (2014)

PUBMED DOI

Fluoroquinolone-resistant pneumococci: dynamics of serotypes and clones in Spain in 2012 compared with those from 2002 and 2006

Domenech A, Tirado-Vélez JM, Fenoll A, Ardanuy C, Yuste J, Liñares J, de la Campa AG. Antimicrob Agents Chemother. 58:2393-2399 (2014).

PUBMED DOI

Absence of tmRNA has a protective effect against fluoroquinolones in Streptococcus pneumoniae

Brito L, Wilton J, Ferrándiz MJ, Gómez-Sanz A, de la Campa AG, Amblar M. Front. Microbiol. 7:2164 (2017).

PUBMED DOI

Upregulation of the PatAB transporter confers fluoroquinolone resistance to Streptococcus pseudopneumoniae

Alvarado M, Martín-Galiano AJ, Ferrándiz MJ, Zaballos A, de la Campa AG. Front Microbiol. 8:2074 (2017).

PUBMED DOI

Content with Investigacion Virus Respiratorios y Gripe .

List of staff

Información adicional

The Respiratory Viruses and Influenza Unit is the oldest WHO Influenza Center in our country (1968), designated as the National Influenza Center by the Ministry of Health in 1971, and is the national coordinator of the CCAA laboratories in the National Influenza Surveillance Network of the Influenza Surveillance System in Spain.

Its general objective is virological surveillance, detection and control of influenza in Spain. Since 1992, together with the Pediatric Service of the Severo Ochoa Hospital, a line of research has been developed based on the etiological study of viral respiratory infections in hospitalized children.

Since 2015, the La Paz Children's University Hospital and the Immunology Laboratory of the IIS-Fundación Jiménez Díaz have also participated, expanding the study to newborns and neonatal units.

To comprehensively study respiratory viruses and the response of the immune system in viral respiratory infections that affect newborns and pediatric patients.

Deepen the knowledge of the biological properties of the viruses involved in the disease: dependency/facilitation, balance between viruses and their adaptation in multiple infections, relationship with severity, existence of virome imbalance.

The Respiratory Viruses and Influenza Unit is the oldest WHO Influenza Center in our country (1968), designated as the National Influenza Center by the Ministry of Health in 1971, and is the national coordinator of the CCAA laboratories in the National Influenza Surveillance Network of the Influenza Surveillance System in Spain.

Its general objective is virological surveillance, detection and control of influenza in Spain. Since 1992, together with the Pediatric Service of the Severo Ochoa Hospital, a line of research has been developed based on the etiological study of viral respiratory infections in hospitalized children.

Since 2015, the La Paz Children's University Hospital and the Immunology Laboratory of the IIS-Fundación Jiménez Díaz have also participated, expanding the study to newborns and neonatal units.

To comprehensively study respiratory viruses and the response of the immune system in viral respiratory infections that affect newborns and pediatric patients.

Deepen the knowledge of the biological properties of the viruses involved in the disease: dependency/facilitation, balance between viruses and their adaptation in multiple infections, relationship with severity, existence of virome imbalance.

Content with Investigacion Virus Respiratorios y Gripe .

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