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Medical Entomology

Research Lines

Content with Investigacion Virología Molecular .

Research

The Molecular Virology group focuses its research on the study of HIV-1 genetic variation and viral evolution using both in vitro and ex vivo approaches, structured around the following research lines:

- Non-progressor patients. These patients maintain control of the disease in the absence of antiretroviral therapy and have therefore been proposed as a model of functional cure. Our objective is to study the contribution of viral factors to disease control through biological characterization and analysis of viral evolution in individuals with undetectable viral loads (elite controllers, EC), compared with individuals showing other patterns of viral control.

- Viral envelope. This viral protein is key in determining viral fitness. Therefore, its functionality significantly affects infection progression. In collaboration with Dr. Blanco and Dr. Valenzuela, we study which specific events (CD4 binding, fusogenicity, etc.) are associated with envelope functionality. To this end, we have analyzed envelopes from individuals with different patterns of disease progression. Some of these have been contributed to the AIDS Research Network envelope biobank for broader use.

- Dual infection. Infection with more than one viral variant (either through co-infection or superinfection) may have consequences for infection pathogenesis. Within our group, different aspects of DI have been analyzed, including its detection in non-progressor patients, its prevalence and incidence in Spain, and its influence on the neutralizing antibody response.

- Molecular Epidemiology. The group has analyzed viral evolution throughout the epidemic in Spain and in other countries (the Netherlands, Italy, Germany, Uruguay, Panama, Brazil, etc.).

- Role of amino acid residues in reverse transcriptase. We study the role of specific amino acid residues in HIV-1 reverse transcriptase in enzymatic function and replication capacity using an infectious molecular clone previously obtained by the group.

- “In vitro” variability. Serial passage studies have been used to detect the mechanisms responsible for the gain or loss of viral fitness.

- Antiviral studies. We have analyzed the selection of resistance mutations in vitro against different antivirals, as well as the effect of these mutations on viral fitness, and the activity of new antivirals such as ATR inhibitors.

 

Virological Diagnosis and Reference in HIV and HTLV Infections

The research group provides diagnostic and reference activities through the service portfolio of the National Center for Microbiology to the entire Spanish National Health System.

These services include:

  • Diagnosis and reference of HIV infection (types 1 and 2) through detection of specific antibodies and detection of proviral DNA by PCR.

  • Diagnosis and reference of HTLV-I/II infection through detection of specific antibodies and detection of proviral DNA by PCR. Quantification of HTLV-1 proviral load by real-time PCR.

European Union Reference Laboratory (EURL) in the field of in vitro diagnostic medical devices for microbiological diagnosis (IVD) of HIV and HTLV (Regulation 2023/2713 of December 5th, 2023). Our role is to confirm the reliability and effectiveness of devices for detecting these pathogens and to ensure their specific performance requirements through laboratory testing before they can be marketed within the European Union.

Research projects

Content with Investigacion Virología Molecular .

- Towards a functional cure: Implications of early antiretroviral therapy and hormonal changes on the HIV reservoir in perinatally infected adolescents. Health Research Fund (FIS) – Carlos III Health Institute (01/01/2026 – 31/12/2028). €72,000. PI: María Pernas, Concepción Casado.

- Determination of factors associated with protection against Human Immunodeficiency Virus type 1 reinfection: Identification of correlates of protection. 9th Gilead Fellowship Program for Biomedical Research, Gilead Sciences, S.L. (01/07/2023 – 30/06/2025). €16,330. PI: María Pernas.

- Impact of the envelope on HIV viral replication: New avenues for vaccine development. Health Research Fund (FIS) – Carlos III Health Institute (01/01/2020 – 31/12/2023). €53,000. PI: María Pernas, Concepción Casado.

- Study of HIV-1 virulence in recently infected patients and its contribution, together with clinical and epidemiological factors, to disease progression. Ministry of Economy and Competitiveness. State Program for Scientific and Technical Research and Innovation (30/12/2016 – 30/06/2021). €145,000. PI: Concepción Casado, Cecilio López-Galíndez.

-Contribution of HIV-1 dual infection to virological and clinical evolution in homo/bisexual men. Health Research Fund (FIS) – Carlos III Health Institute (01/01/2014 – 31/01/2016). €74,410. PI: Cecilio López-Galíndez.

- Characterization of non-pathogenic HIV variants obtained “ex vivo” and “in vitro” for the study of disease pathogenesis. Ministry of Science and Innovation (01/01/2011 – 31/01/2014). €169,400. PI: Cecilio López-Galíndez.

- Spanish AIDS Research Network (RIS-RETIC). Carlos III Health Institute (02/01/2017 – 02/01/2022). €195,212. PI: Cecilio López-Galíndez, Concepción Casado.

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Publications

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Frecuencia de sustituciones relevantes asociadas a resistencia en la región NS5A a elbasvir en el virus de la hepatitis C en pacientes con genotipo 1a en España

2. Palladino C, Esteban-Cartelle B, Mate-Cano I, Sánchez-Carrillo M, Resino S, Briz V. Frecuencia de sustituciones relevantes asociadas a resistencia en la región NS5A a elbasvir en el virus de la hepatitis C en pacientes con genotipo 1a en España Enferm Infecc Microbiol Clin. 2018; 36 (5): 262-267. (A; FI= 1.707; Q2 Microbiology).

PUBMED DOI

Development of water-soluble polyanionic carbosilane dendrimers as novel and highly potent topical anti-HIV-2 microbicides.

4. Briz V, Sepulveda-Crespo D, Diniz AR; Borrego P, Rodes B; Javier de la Mata F, Gomez R, Taveira N, Muñoz-Fernandez MA. Development of water-soluble polyanionic carbosilane dendrimers as novel and highly potent topical anti-HIV-2 microbicides. Nanoscale 2015, 7(35): 14669-14683. (A; FI= 7.76; D1 Materials Science, Multidisciplinary).

PUBMED DOI

Hepatitis A outbreak disproportionately affecting men who have sex with men (MSM) in the European Union and European Economic Area, June 2016 to May 2017.

6. Hepatitis A outbreak disproportionately affecting men who have sex with men (MSM) in the European Union and European Economic Area, June 2016 to May 2017. Ndumbi P, Freidl GS, Williams CJ, Mårdh O, Varela C, Avellón A, …. Severi E; Members Of The European Hepatitis A Outbreak Investigation Team. Euro Surveill. 2018 Aug;23(33). doi: 10.2807/1560-7917.ES.2018.23.33.1700641.

PUBMED DOI

Detection of hepatitis C virus (HCV) core-specific antibody suggests occult HCV infection among blood donors

7. Detection of hepatitis C virus (HCV) core-specific antibody suggests occult HCV infection among blood donors. Quiroga JA, Avellón A, Bartolomé J, Andréu M, Flores E, González MI, González R, Pérez S, Richart LA, Castillo I, Alcover J, Palacios R, Carreño V, Echevarría JM. Transfusion. 2016 Jul;56(7):1883-90. Epub 2016 May 17.

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Hepatitis E virus: Assessment of the epidemiological situation in humans in Europe, 2014/15.

8. Hepatitis E virus: Assessment of the epidemiological situation in humans in Europe, 2014/15. Adlhoch C, Avellon A, Baylis SA, Ciccaglione AR, Couturier E, de Sousa R, Epštein J, Ethelberg S, Faber M, Fehér Á, Ijaz S, Lange H, Manďáková Z, Mellou K, Mozalevskis A, Rimhanen-Finne R, Rizzi V, Said B, Sundqvist L, Thornton L, Tosti ME, van Pelt W, Aspinall E, Domanovic D, Severi E, Takkinen J, Dalton HR. J Clin Virol. 2016 Sep;82:9-16. Epub 2016 Jun 23.

PUBMED DOI

Full coding hepatitis E virus genotype 3 genome amplification method

9. Full coding hepatitis E virus genotype 3 genome amplification method. Muñoz-Chimeno M, Forero JE, Echevarría JM, Muñoz-Bellido JL, Vázquez-López L, Morago L, García-Galera MC, Avellón A. J Virol Methods. 2016 Apr;230:18-23. Epub 2016 Jan 16.

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Antigenicity of Leishmania-Activated C-Kinase Antigen (LACK) in Human Peripheral Blood Mononuclear Cells, and Protective Effect of Prime-Boost Vaccination With pCI-neo-LACK Plus Attenuated LACK-Expressing Vaccinia Viruses in Hamsters

2. Fernández L, Carrillo E, Sánchez-Sampedro L, Sánchez C, Ibarra-Meneses AV, Jimenez MA, Almeida VDA, Esteban M, Moreno J. Antigenicity of Leishmania-Activated C-Kinase Antigen (LACK) in Human Peripheral Blood Mononuclear Cells, and Protective Effect of Prime-Boost Vaccination With pCI-neo-LACK Plus Attenuated LACK-Expressing Vaccinia Viruses in Hamsters. Front Immunol. 2018 Apr 23;9:843.

PUBMED DOI

Interleukin-2 as a marker for detecting asymptomatic individuals in areas where Leishmania infantum is endemic.

5. Ibarra-Meneses AV, Carrillo E, Sánchez C, García-Martínez J, López Lacomba D, San Martin JV, Alves F, Alvar J, Moreno J. Interleukin-2 as a marker for detecting asymptomatic individuals in areas where Leishmania infantum is endemic. Clin Microbiol Infect. 2016 Aug;22(8):739.e1-4.

PUBMED DOI

Protein malnutrition impairs the immune response and influences the severity of infection in a hamster model of chronic visceral leishmaniasis.

7. Carrillo E, Jimenez MA, Sanchez C, Cunha J, Martins CM, da Paixão Sevá A, Moreno J. Protein malnutrition impairs the immune response and influences the severity of infection in a hamster model of chronic visceral leishmaniasis. PLoS One. 2014 Feb 25;9(2):e89412.

PUBMED DOI

Molecular typing of Leishmania infantum isolates from a leishmaniasis outbreak in Madrid, Spain, 2009 to 2012

9. Chicharro C, Llanes-Acevedo IP, García E, Nieto J, Moreno J, Cruz I. Molecular typing of Leishmania infantum isolates from a leishmaniasis outbreak in Madrid, Spain, 2009 to 2012. Euro Surveill. 2013 Jul 25;18(30):20545.

PUBMED DOI

High levels of anti-Phlebotomus perniciosus saliva antibodies in different reservoirs from the re-emerging leishmaniasis focus in Madrid, Spain.

2. Martín-Martín I, Molina R, Rohoušová I, Drahota J., Volf P, Jiménez M. High levels of anti-Phlebotomus perniciosus saliva antibodies in different reservoirs from the re-emerging leishmaniasis focus in Madrid, Spain. Vet Parasitol 2014, 202: 207–216.

PUBMED DOI

Could wild rabbits (Oryctolagus cuniculus) be reservoirs for Leishmania infantum in the focus of Madrid, Spain?

3. Jiménez M, González E, Martín-Martín I, Hernández S, Molina R. Could wild rabbits (Oryctolagus cuniculus) be reservoirs for Leishmania infantum in the focus of Madrid, Spain?. Vet Parasitol 2014, 202: 296–300.

PUBMED DOI

Review of ten-years presence of Aedes albopictus in Spain 2004–2014: known distribution and public health concerns.

5. Collantes F, Delacour S, Alarcón-Elbal PM, Ruiz-Arrondo I, Delgado JA, Torrell-Sorio A, Bengoa M, Eritja R, Miranda MA, Molina R, Lucientes J. Review of ten-years presence of Aedes albopictus in Spain 2004–2014: known distribution and public health concerns. Parasit Vectors. 2015 Dec 23;8:655.

PUBMED DOI

Phleboviruses detection in Phlebotomus perniciosus from a human leishmaniasis focus in South-West Madrid region, Spain.

6. Remoli ME, Jiménez M, Fortuna C, Benedetti E, Marchi A, Genovese D, Gramiccia M, Molina R, Ciufolini MG. Phleboviruses detection in Phlebotomus perniciosus from a human leishmaniasis focus in South-West Madrid region, Spain. Parasit Vectors 2016, 9:205.

PUBMED DOI

Infectivity of Post-Kala-azar Dermal Leishmaniasis patients to sand flies: revisiting a proof of concept in the context of the Kala-azar Elimination Program in the Indian subcontinent.

7. Molina R, Ghosh D, Carrillo E, Monnerat S, Bern C, Mondal D, Alvar J. Infectivity of Post-Kala-azar Dermal Leishmaniasis patients to sand flies: revisiting a proof of concept in the context of the Kala-azar Elimination Program in the Indian subcontinent. Clin Infect Dis 2017, 65:

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Prevalence and molecular characterization of Strongyloides stercoralis, Giardia duodenalis, Cryptosporidium spp., and Blastocystis spp. isolates in schoolchildren in Cubal, Central Angola

2. Dacal E, Saugar JM, de Lucio A, Hernández de Mingo M, Robinson E, Aznar Ruiz de Alegría ML, Espasa M, Ninda A, Gandasegui J, Sulleiro E, Moreno M, Salvador F, Molina I, Rodríguez E, Carmena D. 2018. Prevalence and molecular characterization of Strongyloides stercoralis, Giardia duodenalis, Cryptosporidium spp., and Blastocystis spp. isolates in schoolchildren in Cubal, Central Angola. Parasites and Vectors, 11: 67.

PUBMED DOI

Molecular diversity and frequency of the diarrheagenic enteric protozoan Giardia duodenalis and Cryptosporidium spp. in a hospital setting in Northern Spain.

3. Azcona-Gutiérrez JM, de Lucio A, Hernández-de-Mingo M, García-García C, Soria-Blanco LM, Morales L, Aguilera M, Fuentes I, Carmena D. 2017. Molecular diversity and frequency of the diarrheagenic enteric protozoan Giardia duodenalis and Cryptosporidium spp. in a hospital setting in Northern Spain. PLoS One, 12: e0178575.

PUBMED DOI

Detection of zoonotic protozoa Toxoplasma gondii and Sarcocystis suihominis in wild boars from Spain. Zoonoses Public Health

4. Calero-Bernal, R., Pérez-Martín, J.E., Reina, D., Serrano, F.J., Frontera, E., Fuentes, I, Dubey, J.P., 2016. Detection of zoonotic protozoa Toxoplasma gondii and Sarcocystis suihominis in wild boars from Spain. Zoonoses Public Health. 63:346-50

PUBMED DOI

Epidemiological and clinical profile of adult patients with Blastocystis sp. infection in Barcelona, Spain.

5. Salvador F, Sulleiro E, Sánchez-Montalvá A, Alonso C, Santos J, Fuentes I, Molina I. 2016; Epidemiological and clinical profile of adult patients with Blastocystis sp. infection in Barcelona, Spain. Parasit Vectors; 9:548.

PUBMED DOI

Prevalence and genetic diversity of Giardia duodenalis and Cryptosporidium spp. among schoolchildren in a rural area of the Amhara Region, North-West Ethiopia

6. de Lucio A, Amor-Aramendía A, Bailo B, Saugar JM, Anegagrie M, Arroyo A, López-Quintana B, Zewdie D, Ayehubizu Z, Yizengaw E, Abera B, Yimer M, Mulu W, Hailu T, Herrador Z, Fuentes I, Carmena D. 2016. Prevalence and genetic diversity of Giardia duodenalis and Cryptosporidium spp. among schoolchildren in a rural area of the Amhara Region, North-West Ethiopia. PLoS One 11: e0159992.

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List of staff

Additional Information

The Medical Entomology Laboratory has accumulated extensive experience in this field, especially in entomological field studies, biology of arthropods of medical interest, vector competence and vector control. Also, in the molecular detection of Leishmania infantum promastigotes in naturally parasitized phlebotomine sand flies, in the molecular identification of blood ingested by hematophagous arthropods and in the study of the immunomodulatory properties of proteins present in the saliva of phlebotomine sand flies and mosquitoes. Our laboratory is currently co-leading the studies of vectors and wild reservoirs of leishmaniasis in the leishmaniasis focus of Fuenlabrada, Madrid. In this sense, we have studied the role of asymptomatic individuals as reservoirs in the outbreak by xenodiagnosis. On the other hand, we have participated since 2007 in the Entomological Surveillance Program in Airports and Ports against Potential Vectors of Exotic Infectious Diseases, a program that is allowing to develop the expansion map in Spain of Aedes albopictus. In 2016-2017, we carried out surveillance of Ae. albopictus in the Community of Castilla-La Mancha. On the other hand, we conducted studies on the role of patients with post-kala-azar dermal leishmaniasis (PKDL) in the transmission of the parasite in Bangladesh and Sudan. In addition, we participate in research studying ticks transmitting Crimean-Congo hemorrhagic fever in Spain.

Currently, it maintains confidentiality agreements with several companies participating in the evaluation of molecules with activity against pathogens in vectors (GSK), in the development of vector traps using artificial intelligence algorithms (Irideon, Spain), and in the evaluation of repellents against phlebotomine sand flies (IRSEA, France).

The laboratory actively participates in outreach activities such as the Science Week or the European Researchers' Night, among others, making medical entomology science available to the general population.

The Medical Entomology Laboratory has accumulated extensive experience in this field, especially in entomological field studies, biology of arthropods of medical interest, vector competence and vector control. Also, in the molecular detection of Leishmania infantum promastigotes in naturally parasitized phlebotomine sand flies, in the molecular identification of blood ingested by hematophagous arthropods and in the study of the immunomodulatory properties of proteins present in the saliva of phlebotomine sand flies and mosquitoes. Our laboratory is currently co-leading the studies of vectors and wild reservoirs of leishmaniasis in the leishmaniasis focus of Fuenlabrada, Madrid. In this sense, we have studied the role of asymptomatic individuals as reservoirs in the outbreak by xenodiagnosis. On the other hand, we have participated since 2007 in the Entomological Surveillance Program in Airports and Ports against Potential Vectors of Exotic Infectious Diseases, a program that is allowing to develop the expansion map in Spain of Aedes albopictus. In 2016-2017, we carried out surveillance of Ae. albopictus in the Community of Castilla-La Mancha. On the other hand, we conducted studies on the role of patients with post-kala-azar dermal leishmaniasis (PKDL) in the transmission of the parasite in Bangladesh and Sudan. In addition, we participate in research studying ticks transmitting Crimean-Congo hemorrhagic fever in Spain.

Currently, it maintains confidentiality agreements with several companies participating in the evaluation of molecules with activity against pathogens in vectors (GSK), in the development of vector traps using artificial intelligence algorithms (Irideon, Spain), and in the evaluation of repellents against phlebotomine sand flies (IRSEA, France).

The laboratory actively participates in outreach activities such as the Science Week or the European Researchers' Night, among others, making medical entomology science available to the general population.

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