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The 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 DOI

Potent 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.

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Rapid 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 DOI

Characterization 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.

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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.

 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.

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Biophysical 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 DOI

Capsid structure of dsRNA fungal viruses.

Luque D., Mata C.P., Suzuki N., Ghabrial S.A., Castón J.R. 2018. Capsid structure of dsRNA fungal viruses. Viruses 10(9):481

PUBMED DOI

Structural insights into Rotavirus entry

Rodríguez J.M., Luque D.* 2019. Structural insights into Rotavirus entry. Advances in Experimental Medicine and Biology. 1215:45-68. *Corresponding author.

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Content with Investigacion Terapia Génica .

Additional Information

This group constitutes the National Poliovirus Laboratory (Polio Eradication Plan), integrated into the European network WHO/EURO Polio Laboratory Network and coordinating, in turn, the National Network of Laboratories for the study of paralysis cases in Research on enterovirus and parechovirus infections in the pediatric population has been funded since 2013 through research projects (PI PI12/00904; PI15CIII/00020; PI18CIII/00017), of which María Cabrerizo is PI and in which epidemiologists (CNE) and pediatricians and microbiologists from more than 20 SNS hospitals participate. 

The PI belongs to the consolidated research group RITIP-IdiPaz and CIBERESP. Since 1999, the group has been carrying out the virological study of environmental samples (wastewater and treated water) from the CAM, through a contract with the CYII. Finally, the group is responsible for the diagnosis and characterization of gastrointestinal infections caused by viruses (norovirus, rotavirus and others) and for the investigation of outbreaks (CS of the CNM).

This group constitutes the National Poliovirus Laboratory (Polio Eradication Plan), integrated into the European network WHO/EURO Polio Laboratory Network and coordinating, in turn, the National Network of Laboratories for the study of paralysis cases in Research on enterovirus and parechovirus infections in the pediatric population has been funded since 2013 through research projects (PI PI12/00904; PI15CIII/00020; PI18CIII/00017), of which María Cabrerizo is PI and in which epidemiologists (CNE) and pediatricians and microbiologists from more than 20 SNS hospitals participate. 

The PI belongs to the consolidated research group RITIP-IdiPaz and CIBERESP. Since 1999, the group has been carrying out the virological study of environmental samples (wastewater and treated water) from the CAM, through a contract with the CYII. Finally, the group is responsible for the diagnosis and characterization of gastrointestinal infections caused by viruses (norovirus, rotavirus and others) and for the investigation of outbreaks (CS of the CNM).

Content with Investigacion Terapia Génica .