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Investigación

Development of new diagnostic methods for invasive fungal infection

Líneas de investigación

Content with Investigacion Desarrollo de nuevos métodos de diagnóstico de infección fúngica invasora .

​El diagnóstico de la infección fúngica invasora (IFI) es complicado y con frecuencia se retrasa ya que en muchas ocasiones a la falta de sospecha clínica se le suma la falta de herramientas diagnósticas eficaces. Esta línea de investigación se inició en el año 2003, primero liderada por el Dr. Manuel Cuenca-Estrella y posteriormente por la Dra. María José Buitrago con el objetivo general de desarrollar nuevas herramientas, basadas en la PCR en tiempo Real, para un diagnóstico rápido de IFI. Los objetivos concretos que se han ido alcanzando a lo largo de estos años han sido los siguientes:

Detección precoz de hongos causantes de infecciones fúngicas oportunistas más frecuentes en pacientes inmunodeprimidos (Aspergilosis y Candidiasis invasoras)

Se han desarrollado y validado técnicas de PCR en tiempo Real en formato multiplex para el cribado de pacientes en riesgo de padecer estas infecciones, así como para el diagnóstico en pacientes con sospecha.

Detección de IFIs causadas por hongos emergentes (Escedosporiosis, Fusariosis etc...)

El aumento de especies raras o poco frecuentes causantes de IFI hizo necesario el desarrollo de técnicas para su detección

Detección “panfúngica”

Para aquellos casos en los que no exista evidencia clara del hongo causante de la infección se han desarrollado técnicas basadas en PCR en tiempo Real.   

Mejora del diagnóstico y la identificación de los hongos causantes de micosis importadas (micosis endémicas)

Debido al aumento de la inmigración y los viajes a lugares exóticos en los últimos años se ha producido un incremento de las micosis importadas en España, en concreto de aquellas causadas por hongos endémicos de determinadas regiones, los cuales son además patógenos primarios. Este objetivo es relevante en el contexto de una región no-endémica ya que existe falta de experiencia en el manejo de estas infecciones y las técnicas diagnósticas disponibles son muy escasas. A lo largo de estos años se han desarrollado y validado distintas técnicas para el diagnóstico rápido de estas micosis y se han realizado diferentes trabajos encaminados a un mejor conocimiento de los hongos que las causan.

 

Las técnicas desarrolladas a lo largo de estos años se han incorporado a la Cartera de Servicios del Centro Nacional de Microbiología para ofrecerlas al Sistema Nacional de Salud. Además, algunas de ellas se han patentado.

Proyectos de investigación

Content with Investigacion Desarrollo de nuevos métodos de diagnóstico de infección fúngica invasora .

1. Nombre del proyecto: Mejora del pronóstico del paciente con riesgo de enfermedad fúngica invasora: estudio de susceptibilidad del huésped y desarrollo de nuevos métodos de diagnóstico clínico. Entidad/es financiadora/s: Instituto de Salud Carlos III. Fecha de inicio-fin: 01/01/2018 - 31/12/2020. Cuantía: 72.000 €. Investigadores principales (IP, Co-IP,...): María José Buitrago Serna/Laura Alcazar Fuoli

2. Nombre del proyecto: Red española de Investigación en Patologías infecciosas REIPI
Entidad/es financiadora/s: ISCIII-FEDER Fecha de inicio-fin: 01/01/2017 - 31/12/2021
Cuantía total: 195.612 €. Coordinador: Emilia Mellado

3. Nombre del proyecto: Desarrollo y validación de un método de detección de tipo “point of care”. Entidad/es financiadora/s: Instituto de Salud Carlos III. Fecha de inicio-fin: 01/01/2015 - 31/12/2017. Cuantía total: 46.000 €. Investigador principal: María José Buitrago.

4. Nombre del proyecto: European Research Infrastructure on Highly Pathogenic Agents 2-ERINHA2(Horizon2020). Nombre del programa: FP7-Infraestructuras-2015. Programa marco. THEME (INFRA-2010-2.2.8: High Security BLS4 Laboratory). Entidad financiadora: Unión Europea. Fecha de inicio-fin: 01/01/2016 - 01/06/2017. Cuantía total: 524.848 €. Cuantía subproyecto: 141.562 €. Coordinador (IP): Raoul Hervé.

5. Nombre del proyecto: Iberian network of laboratories of Biological Alert Acreditation of methods for detection of highly pathogenic agents/IB-BiOALERNET Entidad/es financiadora/s: DG-Home (Unión Europea). Fecha de inicio-fin: 2013 – 2015. Cuantía total: 629.382,67 €. Coordinador (IP): Carmen Cañavate

6. Nombre del proyecto: Desarrollo de nuevos métodos de diagnóstico e identificación de especies fúngicas causantes de neumonías oportunistas. Entidad/es financiadora/s: ISCIII. Fecha de inicio-fin: 2012 – 2015. Cuantía total: 67.429,67 €. Investigador principal: María José Buitrago.

7. Nombre del proyecto: European Research Infrastructure on Highly Pathogenic Agents 2-ERINHA2 (Horizon2020). Nombre del programa: FP7-Infraestructuras-2015. Programa marco. THEME (INFRA-2010-2.2.8: High Security BLS4 Laboratory. Entidad financiadora: Unión Europea. Fecha de inicio-fin: 01/01/2010 - 31/12/2013. Cuantía total: 4.859.782,5 €. Coordinador (IP): Raoul Hervé.

8. Nombre del proyecto: RED iberoamericana de diagnóstico molecular de las infecciones endémicas y oportunistas. Entidad/es financiadora/s: CYTED-AECI. Fecha de inicio-fin: 2008 – 2009. Cuantía total: 70.000 €. Investigador principal: Luz-Elena Cano

9. Nombre del proyecto: “Desarrollo de nuevos métodos de diagnóstico en alertas biosanitarias relacionadas con la Micología”. Entidad/es financiadora/s: Instituto de Salud Carlos III. Fecha de inicio-fin: 2007 – 2009. Cuantía total: 58.500 €. Investigador Principal: María José Buitrago

Publicaciones destacadas

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Evolution of broadly cross-reactive HIV-1-neutralizing activity: therapy-associated decline, positive association with detectable viremia, and partial restoration of B-cell subpopulations

Ferreira CB, Merino-Mansilla A, Llano A, Perez I, Crespo I, Llinas L, Garcia F, Gatell JM, Yuste E, Sanchez-Merino V; J Virol. 2013 Nov;87(22):12227-36

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Human immunodeficiency virus type 1 and related primate lentiviruses engage clathrin through Gag-Pol or Gag

Popov S, Strack B, Sanchez-Merino V, Popova E, Rosin H, Gottlinger HG; J Virol. 2011 Apr;85(8):3792-801

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Definition of the viral targets of protective HIV-1-specific T cell responses

Mothe B, Llano A, Ibarrondo J, Daniels M, Miranda C, Zamarreno J, Bach V, Zuniga R, Perez-Alvarez S, Berger CT, Puertas MC, Martinez-Picado J, Rolland M, Farfan M, Szinger JJ, Hildebrand WH, Yang OO, Sanchez-Merino V, Brumme CJ, Brumme ZL, Heckerman D, Allen TM, Mullins JI, Gomez G, Goulder PJ, Walker BD, Gatell JM, Clotet B, Korber BT, Sanchez J, Brander C; J Transl Med. 2011 Dec 7;9:208

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Identification and characterization of HIV-1 CD8+ T cell escape variants with impaired fitness

Sanchez-Merino V, Farrow MA, Brewster F, Somasundaran M, Luzuriaga K; J Infect Dis. 2008 Jan 15;197(2):300-8

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HIV-1-specific CD8+ T cell responses and viral evolution in women and infants

Sanchez-Merino V, Nie S, Luzuriaga K*. 2005. J Immunol 175:6976-86.

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Broad Protection against Invasive Fungal Disease from a Nanobody Targeting the Active Site of Fungal β-1,3-Glucanosyltransferases

Redrado-Hernández S, Macías-León J, Castro-López J, Belén Sanz A, Dolader E, Arias M, González-Ramírez AM, Sánchez-Navarro D, Petryk Y, Farkaš V, Vincke C, Muyldermans S, García-Barbazán I, Del Agua C, Zaragoza O, Arroyo J, Pardo J, Gálvez EM, Hurtado-Guerrero R. Angew Chem Int Ed Engl. 2024 Aug 19;63(34):e202405823.

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High-Resolution Melting Assay to Detect the Mutations That Cause the Y132F and G458S Substitutions at the ERG11 Gene Involved in Azole Resistance in Candida parapsilosis

Nuria Trevijano-Contador, Elena López-Peralta, Jorge López-López, Alejandra Roldán, Cristina de Armentia, Óscar Zaragoza. Mycoses 2024 Nov;67(11):e13811

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Toward the consensus of definitions for the phenomena of antifungal tolerance and persistence in filamentous fungi.

Amich J, Bromley M, Goldman GH, Valero C. mBio. 2025 Feb 25:e0347524

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The sulfur-related metabolic status of Aspergillus fumigatus during infection reveals cytosolic serine hydroxymethyltransferase as a promising antifungal target

Alharthi R, Sueiro-Olivares M, Storer I, Bin Shuraym H, Scott J, Al-Shidhani R, Fortune-Grant R, Bignell E, Tabernero L, Bromley M and Amich J. 2025. Virulence, 16(1):2449075

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The role of methionine synthases in fungal metabolism and virulence

Scott J and Amich J. Essays Biochem (2023) 67 (5): 853-863.

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Multi-resistance to non-azole fungicides in Aspergillus fumigatus TR34/L98H azole resistant isolates

Gonzalez-Jimenez I, Garcia-Rubio R, Monzon S, Lucio J, Cuesta I, and Mellado E. Antimicrob Agents Chemother. 17;65(9):e0064221

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Potential implication of azole persistence in the treatment failure of two haematological patients infected with Aspergillus fumigatus

Peláez-García de la Rasilla T, Mato-López A, Pablos-Puertas CE, González-Huerta AJ, Gómez-López A, Mellado E, Amich J. Journal of Fungi, 2023 Jul 30;9(8):805.

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Are point mutations in HMG-CoA reductases (Hmg1 and Hmg2) a step towards azole resistance in Aspergillus fumigatus?

Gonzalez-Jimenez I., Lucio J., Roldan A, Alcazar-Fuoli L. and Mellado E. Molecules, 2021, 26(19):5975.

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Distribution of Aspergillus Species and Prevalence of Azole Resistance in clinical and environmental Samples from a Spanish Hospital during a three-year study period

Lucio J, Alcazar-Fuoli L, Gil H, Cano-Pascual S, Hernandez-Egido S, Cuetara MS and Mellado E. Mycoses. 2024 Apr;67(4):e13719.

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Importance of the Aspergillus fumigatus mismatch repair protein Msh6 in antifungal resistance development

Lucio J, Gonzalez-Jimenez I, Roldan A, Amich J, Alcazar-Fuoli L and Mellado E. J Fungi (Basel). 2024 Mar 12;10(3):210

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Fungal burden assessment in hospital zones with different protection degrees

García-Gutiérrez L, Baena Rojas B, Ruiz M, Hernández Egido S, Ruiz-Gaitán AC, Laiz L, Pemán J, Cuétara-García MS, Mellado E & Martin-Sanchez PM. Build Environ, Volume 269, 1 February 2025, 112454

DOI

Aspergillus fumigatus can exhibit persistence to the fungicidal drug voriconazole

Valero C., Á Mato-López, I J. Donaldson, A. Roldán, H. Chown, N. Van-Rhijn, S. Gago, T. Furukawa, A. Mogorovsky, R. Ben Ami, P. Bowyer, N. Osherov, T. Fontaine, G.H. Goldman, E. Mellado, M. Bromley and J. Amich. Microbiology Spectrum.2023 13;11(2):e0477022

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COVID-19 Associated Pulmonary Aspergillosis (CAPA): Hospital or Home Environment as a source of life-threatening Aspergillus fumigatus infection?

Peláez-García de la Rasilla T, González-Jiménez I, García-Fernández Arroyo A, Roldán A, Carretero-Ares JL, Clemente-García M,, Martínez-Suarez M, Vázquez Valdés F, Melón-Garcia S, Mellado E, Sánchez-Nuñez ML on behalf HUCAPA group. Journal of Fungi, 2022 Mar 19;8(3):316.

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An expanded agar base secreening method for azole resistant Aspergillus fumigatus

Lucio J, Gonzalez-Jimenez I, Garcia-Rubio R, Cuetara MS and Mellado E. Mycoses 2022, 65 (2): 178-185.

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CD69 targeting enhances anti-Vaccinia virus immunity

Notario L., Redondo-Antón J., Alari-Pahissa E., Albentosa A., Leiva M., López D., Sabio G., and Lauzurica P. (2019) CD69 targeting enhances anti-Vaccinia virus immunity. Journal of Virology 12;93(19). pii: e00553-19.

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Proteomics analysis reveals that structural proteins of the virion core and involved in gene expression are the main source for HLA class II ligands in vaccinia virus-infected cells.

Lorente, E., Martin-Galiano, A. J., Barnea, E., Barriga, A., Palomo, C., Garcia-Arriaza, J., Mir, C., Lauzurica, P., Esteban, M., Admon, A., and Lopez, D. (2019) Proteomics analysis reveals that structural proteins of the virion core and involved in gene expression are the main source for HLA class II ligands in vaccinia virus-infected cells. J.Proteome.Res. 18(9):3512-3520

PUBMED DOI

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.

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.

DOI

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.

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Lorente, E., C. Palomo, E. Barnea, C. Mir, V. M. Del, A. Admon, and D. López. 2019a. Natural Spleen Cell Ligandome in Transporter Antigen Processing-Deficient Mice. J.Proteome.Res. 18:3512-3520.

Lorente, E., C. Palomo, E. Barnea, C. Mir, V. M. Del, A. Admon, and D. López. 2019a. Natural Spleen Cell Ligandome in Transporter Antigen Processing-Deficient Mice. J.Proteome.Res. 18:3512-3520.

PUBMED

Redondo-Anton, J., M. G. Fontela, L. Notario, R. Torres-Ruiz, S. Rodriguez-Perales, E. Lorente, and P. Lauzurica. 2020. Functional Characterization of a Dual Enhancer/Promoter Regulatory Element Leading Human CD69 Expression. Front Genet. 11:552949.

Redondo-Anton, J., M. G. Fontela, L. Notario, R. Torres-Ruiz, S. Rodriguez-Perales, E. Lorente, and P. Lauzurica. 2020. Functional Characterization of a Dual Enhancer/Promoter Regulatory Element Leading Human CD69 Expression. Front Genet. 11:552949.

PUBMED DOI

Fontela, M. G., L. Notario, E. Alari-Pahissa, E. Lorente, and P. Lauzurica. 2019

Fontela, M. G., L. Notario, E. Alari-Pahissa, E. Lorente, and P. Lauzurica. 2019. The Conserved Non-Coding Sequence 2 (CNS2) Enhances CD69 Transcription through Cooperation between the Transcription Factors Oct1 and RUNX1. Genes (Basel) 10.

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Immunoinformatics lessons on the current COVID-19 pandemic and future coronavirus zoonoses

López D, García-Peydró M. “Immunoinformatics lessons on the current COVID-19 pandemic and future coronavirus zoonoses”. Frontiers in Immunology 14:1118267 (2023).

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Marquez, A., M. Gomez-Fontela, S. Lauzurica, R. Candorcio-Simon, D. Munoz-Martín, M. Morales, M. Ubago, C. Toledo, P. Lauzurica, and C. Molpeceres. 2020. Fluorescence enhanced BA-LIFT for single cell detection and isolation. Biofabrication. 12:025019.

Marquez, A., M. Gomez-Fontela, S. Lauzurica, R. Candorcio-Simon, D. Munoz-Martín, M. Morales, M. Ubago, C. Toledo, P. Lauzurica, and C. Molpeceres. 2020. Fluorescence enhanced BA-LIFT for single cell detection and isolation. Biofabrication. 12:025019.

PUBMED DOI

de la Sota, P. G., E. Lorente, L. Notario, C. Mir, O. Zaragoza, and D. López. 2021. Mitoxantrone Shows In Vitro, but Not In Vivo Antiviral Activity against Human Respiratory Syncytial Virus. Biomedicines. 9.

de la Sota, P. G., E. Lorente, L. Notario, C. Mir, O. Zaragoza, and D. López. 2021. Mitoxantrone Shows In Vitro, but Not In Vivo Antiviral Activity against Human Respiratory Syncytial Virus. Biomedicines. 9.

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Predicted Epitope Abundance Supports Vaccine-Induced Cytotoxic Protection Against SARS-CoV-2 Variants of Concern.

Martín-Galiano, A. J., F. Diez-Fuertes, M. J. McConnell, and D. López. 2021. Predicted Epitope Abundance Supports Vaccine-Induced Cytotoxic Protection Against SARS-CoV-2 Variants of Concern. Front Immunol. 12:732693.

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Abundance, Betweenness Centrality, Hydrophobicity, and Isoelectric Points Are Relevant Factors in the Processing of Parental Proteins of the HLA Class II Ligandome.

Lorente, E., A. J. Martín-Galiano, D. M. Kadosh, A. Barriga, J. Garcia-Arriaza, C. Mir, M. Esteban, A. Admon, and D. López. 2022. Abundance, Betweenness Centrality, Hydrophobicity, and Isoelectric Points Are Relevant Factors in the Processing of Parental Proteins of the HLA Class II Ligandome. J.Proteome.Res. 21:164-171.

DOI

Guasp, P., E. Lorente, A. Martín-Esteban, E. Barnea, P. Romania, D. Fruci, J. J. W. Kuiper, A. Admon, and J. A. López de Castro. 2019. Redundancy and Complementarity between ERAP1 and ERAP2 Revealed by their Effects on the Behcet's Disease-Associated HLA-B*51 Peptidome. Mol.Cell Proteomics.

Guasp, P., E. Lorente, A. Martín-Esteban, E. Barnea, P. Romania, D. Fruci, J. J. W. Kuiper, A. Admon, and J. A. López de Castro. 2019. Redundancy and Complementarity between ERAP1 and ERAP2 Revealed by their Effects on the Behcet's Disease-Associated HLA-B*51 Peptidome. Mol.Cell Proteomics.

PUBMED DOI

Computational characterization of the peptidome in transporter associated with antigen processing (TAP)-deficient cells.

Martin-Galiano, A. J. and Lopez, D. (2019) Computational characterization of the peptidome in transporter associated with antigen processing (TAP)-deficient cells. PLoS.ONE. 14, e0210583.

PUBMED DOI

López, 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 DOI

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.

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 DOI

Lorente, E., M. Marcilla, P. G. de la Sota, A. Quijada-Freire, C. Mir, and D. López. 2021. Acid Stripping after Infection Improves the Detection of Viral HLA Class I Natural Ligands Identified by Mass Spectrometry. Int.J.Mol.Sci. 22.

Lorente, E., M. Marcilla, P. G. de la Sota, A. Quijada-Freire, C. Mir, and D. López. 2021. Acid Stripping after Infection Improves the Detection of Viral HLA Class I Natural Ligands Identified by Mass Spectrometry. Int.J.Mol.Sci. 22.

PUBMED DOI

Cross-Recognition of SARS-CoV-2 B-Cell Epitopes with Other Betacoronavirus Nucleoproteins

Tajuelo, A., M. López-Siles, V. Mas, P. Perez-Romero, J. M. Aguado, V. Briz, M. J. McConnell, A. J. Martín-Galiano, and D. López. 2022. Cross-Recognition of SARS-CoV-2 B-Cell Epitopes with Other Betacoronavirus Nucleoproteins. Int.J.Mol.Sci. 23.

PUBMED

Predicted HLA Class I and Class II Epitopes From Licensed Vaccines Are Largely Conserved in New SARS-CoV-2 Omicron Variant of Concern.

López, D. 2022. Predicted HLA Class I and Class II Epitopes From Licensed Vaccines Are Largely Conserved in New SARS-CoV-2 Omicron Variant of Concern. Front Immunol. 13:832889.

PUBMED

Lorente, E., M. G. Fontela, E. Barnea, A. J. Martín-Galiano, C. Mir, B. Galocha, A. Admon, P. Lauzurica, and D. López. 2020. Modulation of Natural HLA-B*27:05 Ligandome by Ankylosing Spondylitis-associated Endoplasmic Reticulum Aminopeptidase 2 (ERAP2). Mol.Cell Proteomics. 19:994-1004.

Lorente, E., M. G. Fontela, E. Barnea, A. J. Martín-Galiano, C. Mir, B. Galocha, A. Admon, P. Lauzurica, and D. López. 2020. Modulation of Natural HLA-B*27:05 Ligandome by Ankylosing Spondylitis-associated Endoplasmic Reticulum Aminopeptidase 2 (ERAP2). Mol.Cell Proteomics. 19:994-1004.

PUBMED DOI

Lorente, E., E. Barnea, C. Mir, A. Admon, and D. López. 2020. The HLA-DP peptide repertoire from human respiratory syncytial virus is focused on major structural proteins with the exception of the viral polymerase. J Proteomics. 221:103759.

Lorente, E., E. Barnea, C. Mir, A. Admon, and D. López. 2020. The HLA-DP peptide repertoire from human respiratory syncytial virus is focused on major structural proteins with the exception of the viral polymerase. J Proteomics. 221:103759.

PUBMED DOI

Content with Investigacion Desarrollo de nuevos métodos de diagnóstico de infección fúngica invasora .

List of staff

Información adicional

RECENT COLLABORATIONS

1. Dr. Marco Teixeira. Visiting professor at the University of Brasilia (UnB). Affiliated researcher at Northern Arizona University (NAU)
2. Dr. Alexandre Alanio. Researcher at Hôpital St. Louis, Paris. France
3. Dr. Dunja Wilmes. Researcher at the Robert Koch Institute. Sedan. Germany.
4. Dr. Paula Sampaio. Center for Molecular and Environmental Biology (CBMA), Department of Biology, University of Minho, Braga, Portugal
5. Dr. Rosely Zancope-Oliveira. Professor at the Oswaldo Cruz Foundation. Rio de Janeiro, Brazil.
6. Dr. Ana Cecilia Mesa Arango. Professor at the University of Antioquia. Medellin. Colombia
7. Dr. Néstor Pakasa. Professor, Kinshasa University Hospital, Kinshasa, Democratic Republic of the Congo
8. Dr. David aka. Researcher at the Félix Houphouët-Boigny University, Abidjan, Ivory Coast

PATENTS

a) Registered industrial property title: “Development of a rapid method for the diagnosis of histoplasmosis and/or paracoccidioidomycosis by multiplex Real-Time PCR with Molecular Beacon type probe initiators.” Inventors: María José Buitrago Serna; Manuel Cuenca Estrella; Juan Luis RodriguezTudela; Alicia Gómez López. Rights holder entity: Carlos III Health Institute. Application number: P200802665. Country of registration: Spain. Registration date: 09/19/2008. Grant date: 09/14/2011
b) Registered industrial property title: Riboflavin-synthese in Ashbya gossypii. Inventors/authors/breeders: Jose Luis Revuelta Doval; María José Buitrago Serna; Maria de los Angeles Santos García. Rights holder entity: BASF Aktiengesellschaft. Application number: CA 2186403. Registration date: 03/25/1994. Grant date: 01/24/2006
c) Registered industrial property title: Riboflavin-Synthese in Hefen. Inventors/authors/breeders: Jose Luis Revuelta Doval; Jose Javier García Ramírez; Maria de Los Angeles Santos García; Gloria Angélica González; María José Buitrago Serna. Rights holder entity: BASF Aktiengesellschaft. Application number: EP19940901793. Registration date: 11/19/199. Grant date: 05/07/1997

DIRECTION OF DOCTORAL THESES

1. Title: Development of new methods for diagnosis and identification of fungal species that cause opportunistic pneumonia. Implementation entity: Complutense University-ISCIII. Student: Clara Valero Fernández. Qualification obtained: Excellent Cum Laude. Defense date: 05/19/2017
2. Title: Development and Validation of diagnostic techniques for invasive fungal infection. Implementation entity: Complutense University of Madrid-ISCIII. Student: Sara Gago Prieto. Grade obtained: Excellent cum laude. Defense date: 07/18/2014
3. Title: Development of techniques based on real-time PCR for the diagnosis of invasive fungal infections. Implementation entity: Complutense University of
Madrid-ISCIII. Student: Leticia Bernal Martinez. Grade obtained: Excellent cum laude. Defense date: 2010

RECENT COLLABORATIONS

1. Dr. Marco Teixeira. Visiting professor at the University of Brasilia (UnB). Affiliated researcher at Northern Arizona University (NAU)
2. Dr. Alexandre Alanio. Researcher at Hôpital St. Louis, Paris. France
3. Dr. Dunja Wilmes. Researcher at the Robert Koch Institute. Sedan. Germany.
4. Dr. Paula Sampaio. Center for Molecular and Environmental Biology (CBMA), Department of Biology, University of Minho, Braga, Portugal
5. Dr. Rosely Zancope-Oliveira. Professor at the Oswaldo Cruz Foundation. Rio de Janeiro, Brazil.
6. Dr. Ana Cecilia Mesa Arango. Professor at the University of Antioquia. Medellin. Colombia
7. Dr. Néstor Pakasa. Professor, Kinshasa University Hospital, Kinshasa, Democratic Republic of the Congo
8. Dr. David aka. Researcher at the Félix Houphouët-Boigny University, Abidjan, Ivory Coast

PATENTS

a) Registered industrial property title: “Development of a rapid method for the diagnosis of histoplasmosis and/or paracoccidioidomycosis by multiplex Real-Time PCR with Molecular Beacon type probe initiators.” Inventors: María José Buitrago Serna; Manuel Cuenca Estrella; Juan Luis RodriguezTudela; Alicia Gómez López. Rights holder entity: Carlos III Health Institute. Application number: P200802665. Country of registration: Spain. Registration date: 09/19/2008. Grant date: 09/14/2011
b) Registered industrial property title: Riboflavin-synthese in Ashbya gossypii. Inventors/authors/breeders: Jose Luis Revuelta Doval; María José Buitrago Serna; Maria de los Angeles Santos García. Rights holder entity: BASF Aktiengesellschaft. Application number: CA 2186403. Registration date: 03/25/1994. Grant date: 01/24/2006
c) Registered industrial property title: Riboflavin-Synthese in Hefen. Inventors/authors/breeders: Jose Luis Revuelta Doval; Jose Javier García Ramírez; Maria de Los Angeles Santos García; Gloria Angélica González; María José Buitrago Serna. Rights holder entity: BASF Aktiengesellschaft. Application number: EP19940901793. Registration date: 11/19/199. Grant date: 05/07/1997

DIRECTION OF DOCTORAL THESES

1. Title: Development of new methods for diagnosis and identification of fungal species that cause opportunistic pneumonia. Implementation entity: Complutense University-ISCIII. Student: Clara Valero Fernández. Qualification obtained: Excellent Cum Laude. Defense date: 05/19/2017
2. Title: Development and Validation of diagnostic techniques for invasive fungal infection. Implementation entity: Complutense University of Madrid-ISCIII. Student: Sara Gago Prieto. Grade obtained: Excellent cum laude. Defense date: 07/18/2014
3. Title: Development of techniques based on real-time PCR for the diagnosis of invasive fungal infections. Implementation entity: Complutense University of
Madrid-ISCIII. Student: Leticia Bernal Martinez. Grade obtained: Excellent cum laude. Defense date: 2010

Content with Investigacion Desarrollo de nuevos métodos de diagnóstico de infección fúngica invasora .

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