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Investigation

Exposure and response relationship in antifungal treatment

Research Lines

Content with Investigacion Estudio de la relación exposición y respuesta en el tratamiento con antifungicos .

The prophylactic and empirical use of antifungal agents in general, and azoles and echinocandins in particular, has contributed to the emergence of strains with elevated MICs (microbiological resistance), whose clinical impact and relevance are increasingly concerning. Moreover, therapeutic failure or clinical resistance is frequently observed even in the absence of microbiological resistance.
One of the factors that may explain clinical resistance in the absence of microbiological resistance is inadequate drug exposure at the site of infection, together with the pathogen’s adaptive response to host defences or to the administered antifungal therapy.
This research line, active since 2010, aims to advance the understanding of clinical resistance in Aspergillus fumigatus infection through the study of antifungal dose–response relationships by evaluating PK/PD parameters and their role in treatment efficacy. In addition, it investigates the role of biofilms as adaptive strategies that enhance fungal resistance to antifungal agents and to host immune cells.

Exposure: Pharmacokinetics of Antifungal Agents
There is now substantial evidence that the administration of an effective antifungal agent at the appropriate dose is essential to achieve adequate drug concentrations at the site of infection. Through the development of this research line (active since 2009), our group has gained extensive expertise in the development and application of chromatographic methods (HPLC/UPLC–UV/fluorescence) for antifungal quantification, which are useful for therapeutic drug monitoring (TDM).

Techniques that allow monitoring of blood drug concentrations constitute essential tools in patient management, enabling dose optimization by determining whether drug exposure is inadequate—potentially contributing to therapeutic failure and the emergence of resistance—or, conversely, excessive, thereby increasing the risk of significant toxicity.

In addition, the application of disciplines such as pharmacogenetics to antifungal therapy is promoting personalized treatment approaches and improving the management of severe invasive fungal infections (IFIs).
The use of alternative animal models, with ethical approval and under regulatory frameworks, together with methodological advances, has facilitated the preliminary study of dose–response relationships for both established antifungal agents and newly developed compounds.

Response: Monitoring Treatment Efficacy
An aspect of major relevance in the management of severe invasive fungal infections (IFIs) is the evaluation of the efficacy of the administered therapy. This research line further explores the characterization of circulating fungal-specific biomarkers that may help distinguish infection from fungal colonization and assess the effectiveness of the established treatment.
Within this framework, our efforts have focused on the study and characterization of compounds related to fungal secondary metabolism, such as gliotoxin and its derivative bis(methylthio)gliotoxin, detected in tissue and blood samples from patients with aspergillosis and in animal models, as well as other metabolites associated with fungal virulence (e.g., fumagillin and pseurotin A).

More recently, this research line has expanded to investigate adaptive strategies such as the formation of complex biofilm structures—often multispecies in nature and involving intricate interaction mechanisms—which may explain fungal resistance to antifungal agents and host immune cells, thereby contributing to therapeutic failure (clinical resistance).

Research projects

Content with Investigacion Estudio de la relación exposición y respuesta en el tratamiento con antifungicos .

Funded Research Projects (Competitive Public Calls)

 

Projects as Principal Investigator

1.Title: Proteomic Analysis of Fungal Biofilms (Mono- and Multispecies): Importance of the Extracellular Matrix
Funding Agency: AESi 2025 (Grant No. PI25/00038)
Funding Amount: €117,500
Duration: 2026–2028
Principal Investigator: Alicia Gómez-López

2. Title: Study of Biomarkers Involved in the Development and Evolution of Fungal Biofilms
Funding Agency: AESi 2021 (Grant No. PI21CIII/00012; MPY 435/21)
Funding Amount: €40,450
Duration: 2022–2024 (extended to 2025)
Principal Investigator: Alicia Gómez-López

3. Title: Novel Strategies for Characterizing Progression and Response to Fungal Infection: Application of Advanced Chromatographic Techniques
Funding Agency: AESi FIS (Grant No. PI16CIII/00014; MPY 1347/16)
Funding Amount: €41,500
Duration: 2017–2021
Principal Investigator: Alicia Gómez-López

4. Title: Management and Maintenance of the Yeast and Filamentous Fungi Strain Collection of the National Reference Mycology Laboratory (CNM-ISCIII)
Project Reference: PEJ-2014-A-13436
Scientific Area: Technology Transfer
Duration: 2016–2018
Principal Investigator / Supervisor: Alicia Gómez-López

5. Title: Genetic Variants of Drug-Metabolizing Enzymes (CYP450) and Voriconazole Monitoring in Treated Patients: Implications for Clinical Decision-Making
Funding Agency: AES FIS 2013 (Grant No. PI13/01817; MPY 1367/13)
Funding Amount: €86,515
Duration: 2013–2016
Role: Principal Investigator

6. Title: Clinical Relevance of Azole Resistance in an Animal Model of Invasive Aspergillosis: Characterization of PK/PD Parameters
Funding Agency: ISCIII Emerging Groups Program (MPY 1354/10)
Funding Amount: €63,613 (Technical Contract – FP)
Duration: 2010–2012
Role: Principal Investigator

7. Title: Clinical Relevance of Azole Resistance in an Animal Model of Invasive Aspergillosis: Characterization of PK/PD Parameters
Funding Agency: AES FIS (Grant No. PI09/0624; MPY 1003/10)
Funding Amount: €50,820
Duration: 2010–2012
Role: Principal Investigator


Collaborating Researcher

Title: Pilot Project for the Development of a Molecular Surveillance Network for Antifungal Resistance Integrating Microbiological and Clinical Data (FunResNet)
Consortium: Biomedical Research Networking Center (CIBERINFEC), Infectious Diseases Area
Funding Agency: CIF: G85296226 (Grant No. IM23/INFEC/2)
Duration: 2024–2025
Principal Investigator: Ana Alastruey-Izquierdo
Collaborating Researcher: Alicia Gómez-López

Title: Biomarkers in Bronchoalveolar Lavage for the Diagnosis and Prognostic Assessment of Invasive Pulmonary Aspergillosis
Consortium: Biomedical Research Networking Center (CIBERINFEC), Infectious Diseases Area
Funding Agency: CIF: G85296226 (Grant No. IM23/INFEC/7)
Funding Amount: €63,000
Duration: 2024–2025
Principal Investigator: Laura Alcázar-Fuoli
Collaborating Researcher: Alicia Gómez-López

Title: Biomedical Research Networking Center (CIBER), Infectious Diseases Area
Funding Agency: CIF: G85296226 (Grant No. CB21/13/00105)
Funding Amount: €85,000 (first year)
Duration: 2022–2026
Role: Technological Development – Collaborating Researcher
Principal Investigator: Emilia Mellado-Terrado

Industry-Funded Research Projects

Title: Rezafungin: An Attempt to Optimize In Vitro Susceptibility Against a Collection of Clinical Yeasts
Funding Company/Institution: Mundipharma Research / Micología Molecular S.L.
Duration: 2025
Principal Investigator: Alicia Gómez-López

Title: Determination of Benznidazole Concentrations in Serum and Urine of Treated Rabbits
Funding Company/Institution: Micología Molecular S.L. / Fundación MundoSano
Duration: 2024
Principal Investigator: Javier Nieto
Role: Technological Development – Collaborating Researcher
Researcher: Alicia Gómez-López (Madrid, Spain)

Title: Phase IV, Single-Center, Multiple-Dose, Single-Arm Clinical Trial to Assess the Bronchopulmonary Penetration of Isavuconazole in Lung Transplant Recipients (EudraCT No. 2019-004240-30)
Duration: 2020–2021
Role: Collaborating Researcher
Principal Investigators: Piedad Ussetti-Gil; Belén Ruiz-Antorán (Hospital Puerta de Hierro, Madrid)

Title: Prospective, Randomized Pilot Study on the Feasibility of Nebulized Liposomal Amphotericin B (nL-AmB) as Adjunctive Therapy for Invasive Pulmonary Aspergillosis
Funding Company: Micología Molecular S.L.
Duration: 2019–2021
Principal Investigator: Jesús Fortún-Abete
Role: Collaborating Researcher

Title: Sequential Plasma Pharmacokinetic Study of Two Oral Posaconazole Formulations (Oral Suspension and Gastro-Resistant Tablets) in Hematology Patients at High Risk of Invasive Fungal Infections (Protocol Code POPK-1501)
Funding Company/Institution: MSD / Micología Molecular S.L.
Duration: 2017
Role: Collaborating Researcher

Title: Validation of Real-Time PCR in Blood and Peritoneal Fluid for the Diagnosis of Candida Peritonitis. Peritoneal Pharmacokinetics and Echinocandin Resistance Analysis
Duration: 2016–2018
Funding Company: Micología Molecular S.L.
Role: Collaborating Researcher

Title: In Vitro Activity of Cyanobacterial Extracts Against a Collection of Yeast and Filamentous Fungi
Duration: 2013
Funding Institution: Valoralia I+D+i
Role: Principal Investigator

Title: Arasertaconazole Nitrate: In Vitro Activity Against Candida spp. by Time–Kill Studies
Duration: 2010–2011
Funding Company: Grupo Ferrer
Role: Principal Investigator

Title: Arasertaconazole Nitrate: In Vitro Susceptibility Study Against Clinical Isolates of Candida
Duration: 2010–2011
Funding Company: Grupo Ferrer
Role: Principal Investigator

Publications

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Pharmacologic control of homeostatic and antigen-driven proliferation to target HIV-1 persistence

Pharmacologic control of homeostatic and antigen-driven proliferation to target HIV-1 persistence. Innis EA, Levinger C, Szaniawski MA, Williams ESCP, Alcamí J, Bosque A, Schiffer JT, Coiras M, Spivak AM, Planelles V. Biochem Pharmacol. 2021 Oct 26:114816. doi: 10.1016/j.bcp.2021.114816. PMID: 34715067.

PUBMED DOI

Impaired Antibody-Dependent Cellular Cytotoxicity in a Spanish Cohort of Patients With COVID-19 Admitted to the ICU.

Impaired Antibody-Dependent Cellular Cytotoxicity in a Spanish Cohort of Patients With COVID-19 Admitted to the ICU. Vigón L, García-Pérez J, Rodríguez-Mora S, Torres M, Mateos E, Castillo de la Osa M, Cervero M, Malo De Molina R, Navarro C, Murciano-Antón MA, García-Gutiérrez V, Planelles V, Alcamí J, Pérez-Olmeda M, López-Huertas MR, Coiras M (AC). Front Immunol. 2021 Sep 20;12:742631. doi: 10.3389/fimmu.2021.742631. eCollection 2021. PMID: 34616404.

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Provirus reactivation is impaired in HIV-1 infected individuals on treatment with dasatinib and antiretroviral therapy.

Provirus reactivation is impaired in HIV-1 infected individuals on treatment with dasatinib and antiretroviral therapy. Vigón L, Martínez-Román P, Rodríguez-Mora S, Torres M, Puertas MC, Mateos E, Salgado M, Navarro A, Sánchez-Conde M, Ambrosioni J, Cervero M, Wyen C, Hoffmann C, Miró JM, Alcamí J, Podzamczer D, García-Gutiérrez V, Martínez-Picado J, Briz V, Rosa López-Huertas M, Planelles V, Coiras M (AC). Biochem Pharmacol. 2021 Oct;192:114666. doi: 10.1016/j.bcp.2021.114666. PMID: 34186065.

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Kinetics of the invasion and egress processes of Babesia divergens, observed by time-lapse video microscopy.

Sevilla E; González LM; Luque D; Gray J; Montero E. 2018. Kinetics of the invasion and egress processes of Babesia divergens, observed by time-lapse video microscopy. Scientific Reports. 8:14116.DOI: 10.1038/s41598-018-32349-7

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Misdiagnosis of Babesiosis as Malaria, Equatorial Guinea, 2014.

2. Arsuaga M; González LM; Salvador Padial E; Woubshet Dinkessa A; Sevilla E; Trigo E; Puente S; Gray J; Montero E. 2018. Misdiagnosis of Babesiosis as Malaria, Equatorial Guinea, 2014. Emerging Infectious Diseases.24-8, pp.1588-1589.

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A fatal case of Babesia divergens infection in Northwestern Spain

3. Asensi V; González LM; Fernández-Suárez J; Sevilla E; Navascués RÁ; Suárez ML; Lauret ME; Bernardo A; Carton JA; Montero E. 2018. A fatal case of Babesia divergens infection in Northwestern Spain. Ticks Tick Borne Dis.9-3, pp.730-734.

PUBMED DOI

First report of Babesia microti-caused babesiosis in Spain.

Arsuaga M*; Gonzalez LM*; Lobo CA; Calle F; Bautista JM; Azcárate IG; Puente S; Montero E. 2016. First report of Babesia microti-caused babesiosis in Spain. Vector Borne Zoonotic Dis.16-10, pp.677-679. (*)= contribuyeron igualmente en este trabajo.

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First record of Babesia sp. in Antarctic penguins.

5. Montero E; González LM; Chaparro A; Benzal J; Bertellotti M; Masero JA; Colominas-Ciuró R; Vidal V; Barbosa A. 2016. First record of Babesia sp. in Antarctic penguins. Ticks Tick Borne Dis.7-3, pp.498-501.

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Ultrastructure of the Babesia divergens free merozoite

6. Del Carmen Terrón M; González-Camacho F; González LM; Luque D; Montero E. 2016. Ultrastructure of the Babesia divergens free merozoite.Ticks Tick Borne Dis.7-6, pp.1274-1279.

PUBMED DOI

First report of Babesia divergens infection in an HIV patient

7. González LM; Castro E; Lobo CA; Richart A; Ramiro R; González-Camacho F; Luque D; Velasco AC; Montero E. 2015. First report of Babesia divergens infection in an HIV patient. Int J Infect Dis. 33:202-4.

PUBMED DOI

Severe babesiosis in immunocompetent man, Spain

9. González LM, Rojo S, González-Camacho F, Luque D, Lobo CA, Montero E. 2014. Severe babesiosis in immunocompetent man, Spain. Emerging Infectious Disease. 20(4):724-726.

PUBMED DOI

The efficacy of the ultraviolet C pathogen inactivation system in the reduction of Babesia divergens in pooled buffy coat platelets

Castro E, González LM, Rubio JM, Ramiro R, Gironés N, Montero E. 2014. The efficacy of the ultraviolet C pathogen inactivation system in the reduction of Babesia divergens in pooled buffy coat platelets. Transfusion. 54(9): 2207-2216.

PUBMED DOI

Clinical, microbiological, and molecular characterization of pediatric invasive infections by Streptococcus pyogenes in Spain in a context of global outbreak

Ramírez de Arellano E, Saavedra-Lozano J, Villalón P, Jové-Blanco A, Grandioso D, Sotelo J, Gamell A, González-López JJ, Cervantes E, Gónzalez MJ, Rello-Saltor V, Esteva C, Sanz-Santaeufemia F, Yagüe G, Manzanares Á, Brañas P, Ruiz de Gopegui E, Carrasco-Colom J, García F, Cercenado E, Mellado I, Del Castillo E, Pérez-Vazquez M, Oteo-Iglesias J, Calvo C; Spanish PedGAS-Net/CIBERINFEC GAS Study Group. Clinical, microbiological, and molecular characterization of pediatric invasive infections by Streptococcus pyogenes in Spain in a context of global outbreak. mSphere. 2024 Mar 26;9(3):e0072923

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Accumulation of endogenous free radicals is required to induce titan-like cell formation in Cryptococcus neoformans

Irene García-Barbazán, Alba Torres-Cano, Rocío García-Rodas, Martin Sachse, Daniel Luque, Diego Megías, Oscar Zaragoza. mBio. 2024 Jan 16;15(1):e0254923

PUBMED DOI

An alternative host model of a mixed fungal infection by azole susceptible and resistant Aspergillus spp strains

15. Alcazar-Fuoli L, Buitrago M, Gomez-Lopez A, Mellado E. An alternative host model of a mixed fungal infection by azole susceptible and resistant Aspergillus spp strains. Virulence. 2015;6(4):376-84. doi: 10.1080/21505594.2015.1025192. PMID: 26065322.

PUBMED DOI

Effect of pneumococcal conjugate vaccines and SARS-CoV-2 on antimicrobial resistance and the emergence of Streptococcus pneumoniae serotypes with reduced susceptibility in Spain, 2004-20: a national surveillance study

Sempere J, Llamosí M, López Ruiz B, Del Río I, Pérez-García C, Lago D, Gimeno M, Coronel P, González-Camacho F, Domenech M, Yuste J. Effect of pneumococcal conjugate vaccines and SARS-CoV-2 on antimicrobial resistance and the emergence of Streptococcus pneumoniae serotypes with reduced susceptibility in Spain, 2004-20: a national surveillance study. Lancet Microbe. 2022 Oct;3(10):e744-e752.

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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. Seconeolitsine, the Novel Inhibitor of DNA Topoisomerase I, Protects against Invasive Pneumococcal Disease Caused by Fluoroquinolone-Resistant Strains. Antibiotics. 2021 May 13;10(5):573.

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Minilungs from Human Embryonic Stem Cells to Study the Interaction of Streptococcus pneumoniae with the Respiratory Tract

Sempere J, Rossi SA, Chamorro-Herrero I, González-Camacho F, de Lucas MP, Rojas-Cabañeros JM, Taborda CP, Zaragoza Ó, Yuste J, Zambrano A. Minilungs from Human Embryonic Stem Cells to Study the Interaction of Streptococcus pneumoniae with the Respiratory Tract. Microbiol Spectr. 2022 Jun 29;10(3):e0045322

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A national longitudinal study evaluating the activity of cefditoren and other antibiotics against non-susceptible Streptococcus pneumoniae strains during the period 2004-20 in Spain

Sempere J, González-Camacho F, Domenech M, Llamosí M, Del Río I, López-Ruiz B, Gimeno M, Coronel P, Yuste J. A national longitudinal study evaluating the activity of cefditoren and other antibiotics against non-susceptible Streptococcus pneumoniae strains during the period 2004-20 in Spain. J Antimicrob Chemother. 2022 Mar 31;77(4):1045-1051.

PUBMED DOI

Nationwide Trends of Invasive Pneumococcal Disease in Spain From 2009 Through 2019 in Children and Adults During the Pneumococcal Conjugate Vaccine Era

de Miguel S, Domenech M, González-Camacho F, Sempere J, Vicioso D, Sanz JC, Comas LG, Ardanuy C, Fenoll A, Yuste J. Nationwide Trends of Invasive Pneumococcal Disease in Spain From 2009 Through 2019 in Children and Adults During the Pneumococcal Conjugate Vaccine Era. Clin Infect Dis. 2021 Dec 6;73(11):e3778-e3787

PUBMED DOI

Pulmonary BCG induces lung-resident macrophage activation and confers long-term protection against tuberculosis

7. Mata E, Tarancón R, Guerrero C, Moreo E, Moreau F, Uranga S, Gomez AB, Marinova D, Domenech M, Gonzalez-Camacho F, Monzon M, Badiola J, Dominguez-Andres J, Yuste J, Anel A, Peixoto A, Martin C, Aguilo N. Pulmonary BCG induces lung-resident macrophage activation and confers long-term protection against tuberculosis. Sci Immunol. 2021 Sep 24;6(63):eabc2934

PUBMED DOI

Vaccination with LytA, LytC, or Pce of Streptococcus pneumoniae Protects against Sepsis by Inducing IgGs That Activate the Complement System

Corsini B, Aguinagalde L, Ruiz S, Domenech M, Yuste J. Vaccination with LytA, LytC, or Pce of Streptococcus pneumoniae Protects against Sepsis by Inducing IgGs That Activate the Complement System. Vaccines. 2021 Feb 23;9(2):186.

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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.

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Tyrosine kinase 2 modulates splenic B cells through type I IFN and TLR7 signaling.

Bodega-Mayor I, Delgado-Wicke P, Arrabal A, Alegría-Carrasco E, Nicolao-Gómez A, Jaén-Castaño M, Espadas C, Dopazo A, Martín-Gayo E, Gaspar ML, de Andrés B, Fernández-Ruiz E. Cell Mol Life Sci. 2024 Apr 29;81(1):199.

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Timely Diagnosis of Histoplasmosis in Non-endemic Countries: A Laboratory Challenge

Buitrago MJ, Martín-Gómez T. Front Microbiol. 2020 Mar 24; 11:467

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Roles of the multiplex real-time PCR assay and β-D-glucan in a high-risk population for intra-abdominal candidiasis (IAC)

Fortún J, Buitrago MJ, Gioia F, Gómez-Gª de la Pedrosa E, Alvarez ME, Martín-Dávila P, Pintado V, Cobeta P, Martinez-Castro N, Soriano C, Moreno I, Corral S, Muñoz P, Moreno-Jimenez G, Cuenca-Estrella M, Moreno-Guillen S. Med Mycol. 2020 Aug 1;58(6):789-796.

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African histoplasmosis: new clinical and microbiological insights

Valero C; Gago S; Monteiro MC; Alastruey-Izquierdo A; Buitrago MJ. Med Mycol. 2018 Jan 1; 56(1):51-59.

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New Panfungal Real-Time PCR Assay for Diagnosis of Invasive Fungal Infections. Journal of Clinical Microbiology

Valero C; L de la Cruz Villar; Ó Zaragoza; M J Buitrago. Journal of Clinical Microbiology. 54-12, pp. 2910 - 2918. 12/2016.

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Usefulness of techniques based on real time PCR for the identification of onychomycosis-causing species

Hafirassou AZ, Valero C, Gassem N, Mihoubi I, Buitrago MJ. Mycoses. 2017 Oct;60(10):638-644. doi: 10.1111/myc.12629. Epub 2017 May 16.

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European collaborative evaluation of the Enzygnost HBsAg 6.0 assay: performance on hepatitis B virus surface antigen variants

• Avellón A, Echevarría JM, Weber B, Weik M, Schobel U, Willems WR, Gerlich WH. European collaborative evaluation of the Enzygnost HBsAg 6.0 assay: performance on hepatitis B virus surface antigen variants. J Med Virol. 2011 Jan;83(1):95-100.

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Prevalence of pSCFS7-like vectors among cfr-positive staphylococcal population in Spain.

Prevalence of pSCFS7-like vectors among cfr-positive staphylococcal population in Spain. Nguyen LTT*, Román F*, Morikawa K, Trincado P, Marcos C, Rojo-Martín MD, Cafini F. Int J Antimicrob Agents. 2018 Aug;52(2):305-306.

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Zoonotic pathogens in fluctuating common vole (Microtus arvalis) populations: occurrence and dynamics

Rodriguez-Pastor, Ruth; Escudero, Raquel; Lambin, Xavier; Vidal, M Dolors; Gil, Horacio; Jado, Isabel; Rodriguez-Vargas, Manuela; Luque-Larena, Juan Jose; Mougeot, Francois. Zoonotic pathogens in fluctuating common vole (Microtus arvalis) populations: occurrence and dynamics. Parasitology. pp. 1 - 10. 24/09/2018.

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Long-range dispersal moved Francisella tularensis into Western Europe from the East

Dwibedi, Chinmay; Birdsell, Dawn; Larkeryd, Adrian; Myrtennas, Kerstin; Ohrman, Caroline; Nilsson, Elin; Karlsson, Edvin; Hochhalter, Christian; Rivera, Andrew; Maltinsky, Sara; Bayer, Brittany; Keim, Paul; Scholz, Holger C; Tomaso, Herbert; Wittwer, Matthias; Beuret, Christian; Schuerch, Nadia; Pilo, Paola; Hernandez Perez, Marta; Rodriguez-Lazaro, David; Escudero, Raquel; Anda, Pedro; Forsman, Mats; Wagner, David M; Larsson, Par; Johansson, Anders. Long-range dispersal moved Francisella tularensis into Western Europe from the East. Microbial genomics. 2 - 12, pp. e000100. 01/01/2016.

PUBMED DOI

Francisella species in ticks and animals, Iberian Peninsula

Lopes de Carvalho, I.; Toledo, A.; Carvalho, C. L.; Barandika, J. F.; Respicio-Kingry, L. B.; Garcia-Amil, C.; Garcia-Perez, A. L.; Olmeda, A. S.; Ze-Ze, L.; Petersen, J. M.; Anda, P.; Nuncio, M. S.; Escudero, R. Francisella species in ticks and animals, Iberian Peninsula. Ticks and Tick-Borne Diseases. 7 - 1, pp. 159 - 165. Elsevier GMBH, Urban & Fischer Verlag, 01/01/2016.

PUBMED DOI

Stable levels of Coxiella burnetii prevalence in dairy sheep flocks but changes in genotype distribution after a 10-year period in northern Spain

Álvarez-Alonso R, Barandika JF, Ruiz-Fons F, Ortega-Araiztegi I, Jado I, Hurtado A, García-Pérez AL. Stable levels of Coxiella burnetii prevalence in dairy sheep flocks but changes in genotype distribution after a 10-year period in northern Spain. Acta Vet Scand. 2018 Nov 20;60(1):75.

PUBMED DOI

First case of a naturally acquired human infection with Plasmodium cynomolgi

Ta TH, Hisam S, Lanza M, Jiram AI, Ismail N, Rubio JM. (2014). First case of a naturally acquired human infection with Plasmodium cynomolgi. Malar J. 2014 Feb 24;13(1):68.

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Evidence for Suppression of Onchocerciasis Transmission in Bioko Island, Equatorial Guinea

Moya L, Herrador Z, Ta-Tang TH, Rubio JM, Perteguer MJ, Hernandez-González A, García B, Nguema R, Nguema J, Ncog P, Garate T, Benito A, Sima A and Aparicio P. Evidence for Suppression of Onchocerciasis Transmission in Bioko Island, Equatorial Guinea.PLoS Negl Trop Dis, 2016; 10(7): e0004829.

PUBMED DOI

LAMP kit for diagnosis of non-falciparum malaria in Plasmodium ovale infected patients

Cuadros J, Martin Ramírez A, González IJ, Ding XC, Perez Tanoira R, Rojo-Marcos G, Gómez-Herruz P, Rubio JM. LAMP kit for diagnosis of non-falciparum malaria in Plasmodium ovale infected patients. Malar J. 2017 Jan 7;16(1):20.

PUBMED DOI

Plasmodium species differentiation by non-expert on-line volunteers for remote malaria field diagnosis

Ortiz-Ruiz A, Postigo M, Gil-Casanova S, Cuadrado D, Bautista JM, Rubio JM, Luengo-Oroz M, Linares M. Plasmodium species differentiation by non-expert on-line volunteers for remote malaria field diagnosis. Malar J. 2018 Jan 30;17(1):54.

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Study of the diagnostic accuracy of microbiological techniques in the diagnosis of malaria in the immigrant population in Madrid

Martín-Díaz A, Rubio JM, Herrero-Martínez JM, Lizasoain M, Ruiz-Giardin JM, Jaqueti J, Cuadros J, Rojo-Marcos G, Martín-Rabadán P, Calderón M, Campelo C, Velasco M, Pérez-Ayala A. Study of the diagnostic accuracy of microbiological techniques in the diagnosis of malaria in the immigrant population in Madrid. Malar J. 2018 Aug 29;17(1):314.

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List of staff

Additional Information

The current director of CNM is Dr. José Miguel Rubio Muñoz.

Dr. José Miguel Rubio has a degree in Biological Sciences from the Universidad Autónoma de Madrid (1986) and a PhD in Biological Sciences from the same university (1992). He carried out his doctoral thesis at the Department of Genetics of the Universidad Autónoma de Madrid, as Associate Professor (1988-1989), and at the School of Biology of the University of East Anglia in Norwich, UK, as Senior Research Assistant (1989-1992).

During his postdoctoral period he obtained a grant from the European Commission within the Human Capital and Mobility Program to be carried out at the University of “La Sapienza” in Rome, Italy and the Institute of Molecular Biology and Biotechnology in Crete, Greece (1993-1994). Subsequently, he made a further stay funded by the WHO and the university itself at the Department of Entomology, Wageningen University, The Netherlands (1994-1996).

Since 1997 he has been a member of the Instituto de Salud Carlos III (ISCIII), where he joined the Department of Parasitology of the National Center of Microbiology, as an EU-INCO postdoctoral fellow and later with a grant from the Autonomous Community of Madrid (CAM). She was part of the founding group of the National Center for Tropical Medicine (2003-2006) and of the 24/7 Alerts and Emergencies Unit (2006-2018) and is currently Head of the Malaria and Emerging Parasitosis Unit of the National Microbiology Center and is part, as research staff, of the Center for Biomedical Research Network on Infectious Diseases (CIBERINFEC/ISCIII).

During his scientific career he has been Visiting Scientist at the Leonidas e Marie Dean Center (FIOCRUZ-AMAZONAS, Manaus, Brazil) and is an External Consultant of the Parasitology Departments of Cairo University (Egypt) and the Medical Research Center (MRC) of Kuala Lumpur (Malaysia).  He also belongs or has belonged to different national and international committees:  Member of the expert group for malaria control of the European Centre for Disease Control (ECDC) since 2011; Expert-Evaluator for health programs of the European Commission since 2004; Spanish Representative (commissioned by ISCIII and MSC) in the Technical Scientific Committee of the TDR (WHO) 2007-2008; Spanish Deputy Focal Point for microbiology at the European Centre for Disease Control (ECDC) from 2012 to 2020; and, member of the Research Ethics Committee of ISCIII until 2019.

In this period he has published more than 100 articles in international indexed journals, 10 book chapters and has been co-editor of two books in the area of malaria, tropical medicine and neglected diseases. He has participated in 58 competitively funded research projects, 20 of them international, having been the principal investigator in 8 national and 11 international projects as PI of the project or WP leader. In addition, he has led five agreements with companies. Currently he has been awarded four sexenios of research, being presented this year 2025 to the fifth. In the teaching field, he participates in different postgraduate programs in the areas of microbiology and parasitology, having directed seven doctoral theses and more than 20 Master's or Degree final projects, both nationally and internationally. ​​​​​

El laboratorio de Referencia e Investigación en Resistencia a Antibióticos ofrece una amplia cartera de servicios al Sistema Nacional de Salud, las cuales pueden solicitarse en cnm-laboratorios.isciii.es. Jefe del Laboratorio: Jesús Oteo Iglesias (Punto focal Nacional de Resistencia antibiótica).

Dispone de dos programas de Vigilancia oficiales y gratuitos que engloban los ensayos ofertados ya sea como aislamientos individuales o mediante estudio de brotes. El Laboratorio utiliza asimismo técnicas de PCR en tiempo real para la detección de genes de resistencia, estas técnicas se han adaptado a un formato multiplex que permite detectar varios genes en la misma reacción. En los últimos años se han incluido metodologías basadas en la secuenciación de genomas completos para el análisis de bacterias multiresistentes (WGS).

Programa de vigilancia de Haemophilus influenzae. Responsables: María Pérez Vázquez (Punto focal Nacional de Haemophilus influenzae) y Belén Aracil. Laboratorio encargado de la identificación, estudio de sensibilidad y análisis genotípico de aislados de Haemophilus influenzae, centrándose esencialmente en la patología invasiva debida este patógeno. 

Programa de vigilancia de Resistencia a Antibióticos. Responsables: María Pérez Vázquez  y Belén Aracil (Punto focal Nacional de Resistencia antibiótica). Laboratorio encargado de la identificación, el estudio de sensibilidad antibiótica, y el diagnóstico fenotípico y genotípico de los diferentes mecanismos de resistencia a antibióticos fundamentalmente en enterobacterias y gram-negativos no fermentadores y Enterococcus spp.

Estudio de brotes. Responsables: Belén Aracil y María Pérez Vázquez. El programa incluye la caracterización de brotes nosocomiales y clones emergentes de alto riesgo mediante diferentes técnicas moleculares (tabla resumen). Éstas, nos permiten realizar estudios filogenéticos con el fin de obtener una información detallada acerca la relación entre los diferentes aislados y su trazabilidad. El objetivo final es generar datos que se transfieren a los hospitales como ayuda para la prevención o control de la propagación del brote.

Acreditación y Calidad. Responsable: Belén Aracil. El laboratorio Referencia e Investigación en Resistencia a Antibióticos ha sido de los primeros en el ISCIII en la utilización de técnicas acreditadas por la Entidad Nacional de Acreditaciones (ENAC). Este laboratorio consiguió la primera acreditación homologada de técnicas diagnósticas en 2012, programa que ha sido ampliado, de manera que en la actualidad más de la mitad de las técnicas ofrecidas al Sistema Nacional de Salud están debidamente acreditadas por ENAC.

Técnicos responsables de las técnicas realizadas en el Laboratorio: Noelia Lara Fuella y Verónica Bautista Sánchez.

En la siguiente imagen se resumen las técnicas ofrecidas al Sistema Nacional de Salud.

PROGRAMAS NOMBRE CARTERA SERVICIO PATÓGENO DETERMINACIÓN, DETECCIÓN, ANÁLISIS MÉTODOS

Programa de vigilancia de Haemophilus

Programa de vigilancia de resistencia a antibióticos.

Identificación bacteriana

Haemophilus sp.

Enterobacterias, gram-negativos no fermentadores, Enterococcus spp

Identificación bacteriana

Bioquímicos

MALDI TOF

Secuenciación de RNAr

Identificación capsular

Haemophilus influenzae

 

Identificación capsular fenotípica y genotípica

Aglutinación serológica en latex

PCR ind/multiplex

Determinación de Sensibilidad

Haemophilus sp.

Enterobacterias, gram-negativos no fermentadores, Enterococcus

 

Determinación de Sensibilidad

Microdilución                

Tiras epsilon               

Kirby Bauer

Métodos fenotípicos de detección de mecanismos de resistencia

Enterobacterias, gram-negativos no fermentadores,

 

Métodos fenotípicos de detección de mecanismos de resistencia

Discos y tabletas combinados con inhibidores                

Tiras combinadas     

Test de Hodge modificado

CabaNP                               

Inmunocromatografía CBP

Métodos genotípicos de detección de mecanismos de resistencia

Haemophilus sp.

Enterobacterias, gram-negativos no fermentadores, Enterococcus

 

ADN, PCR y secuenciación

PCR ind/multiplex

Análisis comparativo de las secuencias

Tipificación molecular/análisis filogenéticos

Haemophilus sp.

Enterobacterias, gram-negativos no fermentadores, Enterococcus

 

Corte enzimas de restricción, electroforesis

ADN, PCR y secuenciación

Preparación de librerías y secuenciación y análisis de genomas completos

 

PFGE

 

MLST

 

WGS