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Low anti-SARS-CoV-2 S antibody levels predict increased mortality and dissemination of viral components in the blood of critical COVID-19 patients

4. Martin-Vicente M, Almansa R, Martínez I, Tedim AP, Bustamante E, Tamayo L, Aldecoa C, Gómez JM, Renedo G, Berezo JA, Cedeño JA, Mamolar N, García Olivares P, Herrán-Monge R, Cicuendez R, Enríquez P, Ortega A, Jorge N, Doncel C, 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, Domínguez-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, 291(2):232–240. (A; FI= 13.07; D1, Medicine, General & Internal; JCR 2021). PMID: 34611927. DOI: 10.1111/joim.13386.

PUBMED

Prevalence and factors associated with SARS-CoV-2 seropositivity in the Spanish HIV Research Network Cohort

5. Berenguer J (*), Díez C, Martín-Vicente M, Mican R, Pérez-Elías MJ, García-Fraile LJ, Vidal F, Suárez-García I, Podzamcer D, Del Romero J, Pulido F, Iribarren JA, Gutiérrez F, Poveda E, Galera C, Izquierdo R, Asensi V, Portilla J, López JC, Arribas JR, Moreno S, González-García J, Resino S (‡), Jarrín I (‡). Prevalence and factors associated with SARS-CoV-2 seropositivity in the Spanish HIV Research Network Cohort. Clin Microbiol Infect. 2021, 27(11):1678-1684. (A; FI= 13.31; D1, Microbiology; JCR 2021). PMID: 34186209 DOI: 10.1016/j.cmi.2021.06.023.

PUBMED

Environmental factors linked to hospital admissions in young children due to acute viral lower respiratory infections: A bidirectional case-crossover study

6. Álvaro-Meca A, Goez MC, 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. 212(Pt B), 113319. (A; FI= 8.43; D1, Public, Environmental & Occupational Health; JCR 2021). PMID: 35447151. DOI: 10.1016/j.envres.2022.113319.

PUBMED

Detection of active hepatitis C in a single visit and linkage to care among marginalized people using a mobile unit in Madrid, Spain

7. Ryan P, Valencia J, Cuevas G, Torres-Macho J, Troya J, Pueyo A, Muñoz-Gómez MJ, Muñoz-Rivas N, Vázquez-Morón S, Martínez, I, Lazarus JV, Resino S (*). Detection of active hepatitis C in a single visit and link-to-care among excluded people using a mobile unit in Madrid, Spain. Int J Drug Policy. 2021, 96:103424. (A; FI= 5.93; Q1, Substance Abuse; JCR 2021). PMID: 34429222 DOI: 10.1016/j.drugpo.2021.103424.

PUBMED

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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.

Content with Investigacion Inmunología Celular .