Bacterial Genetics
Publications
FTO rs9939609 polymorphism is associated with metabolic disturbances and response to HCV therapy in HIV/HCV-coinfected patients.
13. Pineda-Tenor D, Berenguer J, Jiménez-Sousa MA, García-Álvarez M, Aldamiz-Echevarría T, Carrero A, Vázquez-Morón S, García-Broncano P, Diez C, Tejerina F, Guzmán-Fulgencio M, Resino S (*). FTO rs9939609 polymorphism is associated with metabolic disturbances and response to HCV therapy in HIV/HCV-coinfected patients. BMC Med. 2014, 12:198. (A; FI= 7.34; D1, Medicine, General & Internal; JCR 2014). PMID: 25367448. DOI: 10.1186/s12916-014-0198-y.
PUBMEDHLA-E variants are associated with sustained virological response in HIV/hepatitis C virus-coinfected patients on hepatitis C virus therapy.
14. Guzmán-Fulgencio M, Berenguer J; Rallón N, Fernández-Rodríguez A, Miralles P, Soriano V, Jiménez-Sousa MA, Cosin J, Medrano J, García-Álvarez M, López JC, Benito JM, Resino S (*). HLA-E variants are associated with sustained virological response in HIV/hepatitis C virus-coinfected patients on hepatitis C virus therapy. AIDS 2013; 27(8):1231-1238. (A; FI= 6.55; D1, Infectious Diseases; JCR 2013). PMID: 23811951. DOI: 10.1097/QAD.0b013e32835f5b9c.
PUBMEDEva Orviz, Anabel Negredo, Oskar Ayerdi, Ana Vázquez, Ana Muñoz-Gomez, Sara Monzón, Petunia Clavo, Angel Zaballos, Mar Vera, Patricia Sánchez, Noemi Cabello, Pilar Jiménez, Jorge A Pérez-García, Sarai Varona, Jorge Del Romero, Isabel Cuesta, Alberto Delgado-Iribarren, Montse Torres, Iñigo Sagastagoitia, Gustavo Palacios, Vicente Estrada, Maria Paz Sánchez-Seco, Grupo Viruela del Simio Madrid CNM/ISCIII/HCSC/Sandoval.
Eva Orviz, Anabel Negredo, Oskar Ayerdi, Ana Vázquez, Ana Muñoz-Gomez, Sara Monzón, Petunia Clavo, Angel Zaballos, Mar Vera, Patricia Sánchez, Noemi Cabello, Pilar Jiménez, Jorge A Pérez-García, Sarai Varona, Jorge Del Romero, Isabel Cuesta, Alberto Delgado-Iribarren, Montse Torres, Iñigo Sagastagoitia, Gustavo Palacios, Vicente Estrada, Maria Paz Sánchez-Seco, Grupo Viruela del Simio Madrid CNM/ISCIII/HCSC/Sandoval. Monkeypox outbreak in Madrid (Spain): Clinical and virological aspects. J Infect. 2022 Jul 10;S0163-4453(22)00415-7. doi: 10.1016/j.jinf.2022.07.005.
DOIEuropean mitochondrial haplogroups are associated with CD4+ T-cell recovery in HIV-infected patients on combination antiretroviral therapy.
15. Guzmán-Fulgencio M; Berenguer J, Micheloud D, Fernández-Rodríguez A; García–Álvarez M, Jiménez-Sousa MA, Bellón JM, Campos Y, Cosin J, Aldámiz-Echevarría T, Catalán P, López JC, Resino S (*). European mitochondrial haplogroups are associated with CD4+ T-cell recovery in HIV-infected patients on combination antiretroviral therapy. J Antimicrob Chemoth 2013; 68 (10): 2349–2357 (A; FI= 5.44; D1, Infectious Diseases; JCR 2013). PMID: 23749950. DOI: 10.1093/jac/dkt206.
PUBMEDMaría Paz Sánchez-Seco, María José Sierra, Agustín Estrada-Peña, Félix Valcárcel, Ricardo Molina, Eva Ramírez de Arellano, Angeles Sonia Olmeda, Lucía García San Miguel, Maribel Jiménez, Luis J Romero, Anabel Negredo; Group for CCHFv Research. Widespread Detection of Multiple Strains of Crimean-Congo Hemorrhagic Fever Virus in Ticks, Spain.
María Paz Sánchez-Seco, María José Sierra, Agustín Estrada-Peña, Félix Valcárcel, Ricardo Molina, Eva Ramírez de Arellano, Angeles Sonia Olmeda, Lucía García San Miguel, Maribel Jiménez, Luis J Romero, Anabel Negredo; Group for CCHFv Research. Widespread Detection of Multiple Strains of Crimean-Congo Hemorrhagic Fever Virus in Ticks, Spain. Emerg Infect Dis. 2022 Feb;28(2):394-402. doi: 10.3201/eid2802.211308.
DOINegredo A, Sánchez-Ledesma M, Llorente F, Pérez-Olmeda M, Belhassen-García M, González-Calle D, Sánchez-Seco MP, Jiménez-Clavero MÁ. Retrospective Identification of Early Autochthonous Case of Crimean-Congo Hemorrhagic Fever, Spain, 2013
Negredo A, Sánchez-Ledesma M, Llorente F, Pérez-Olmeda M, Belhassen-García M, González-Calle D, Sánchez-Seco MP, Jiménez-Clavero MÁ. Retrospective Identification of Early Autochthonous Case of Crimean-Congo Hemorrhagic Fever, Spain, 2013. Emerg Infect Dis. 2021 Jun;27(6):1754-1756. doi: 10.3201/eid2706.204643.
DOINegredo A, Sánchez-Arroyo R, Díez-Fuertes F, de Ory F, Budiño MA, Vázquez A, Garcinuño Á, Hernández L, la Hoz González C, Gutiérrez-Arroyo A, Grande C, Sánchez-Seco P. Fatal Case of Crimean-Congo Hemorrhagic Fever Caused by Reassortant Virus, Spain, 2018.
Negredo A, Sánchez-Arroyo R, Díez-Fuertes F, de Ory F, Budiño MA, Vázquez A, Garcinuño Á, Hernández L, la Hoz González C, Gutiérrez-Arroyo A, Grande C, Sánchez-Seco P. Fatal Case of Crimean-Congo Hemorrhagic Fever Caused by Reassortant Virus, Spain, 2018. Emerg Infect Dis. 2021 Apr;27(4):1211-1215. doi: 10.3201/eid2704.203462.
DOILaura Davó, Laura Herrero, Maria Paz Sánchez-Seco, Nuria Labiod, David Roiz, Elena Gómez-Díaz, Lourdes Hernandez, Jordi Figuerola and Ana Vázquez. Real-time PCR assay to detect Granada virus and the related Massilia and Arrabida phleboviruses
Laura Davó, Laura Herrero, Maria Paz Sánchez-Seco, Nuria Labiod, David Roiz, Elena Gómez-Díaz, Lourdes Hernandez, Jordi Figuerola and Ana Vázquez. Real-time PCR assay to detect Granada virus and the related Massilia and Arrabida phleboviruses. Davó et al. Parasit Vectors. 2020 May 29;13(1):270. doi: 10.1186/s13071-020-04110-5.
DOIContent with Investigacion .
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Maribel Jiménez Alonso
Tenured Scientist
ORCID code: 0000-0002-5615-3087
Doctor in Pharmacy from the Complutense University of Madrid (1994) and Extraordinary Doctorate Award. She started her research activity at ISCIII in 1990 in the field of leishmaniasis. Currently, she is the head of the LEM where she develops her scientific work in the field of entomological surveillance of phlebotomine sandflies in the CM and other studies in the field of molecular biology, mainly applied to the model of Leishmania infantum and its vector Phlebotomus perniciosus. Member of the team of experts of the ISCIII that participates in the elaboration of Rapid Risk Assessments and in the working groups in charge of the elaboration of National Plans of Prevention, Surveillance and Control of Vector-borne Diseases of the CCAES, Ministry of Health. She is currently “Operational Focal Point” for vector-borne diseases at national level for the One Health-Vectornet network (EFSA and ECDC) and coordinator of the VectorNet-Spain network since July 2024. In addition, she is a member of the expert committee of the Network of Surveillance and Control of Vectors with public health interest in the Community of Madrid. In addition, she is part of a research group from CIBER (CIBERINFEC; CB21/13/00110).
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Inés Martín Martín
Tenured Scientist
ORCID code: 0000-0002-0956-7324
Within Medical Entomology, my work focuses on the study of phlebotomine sand flies and culicidae as vectors of leishmaniasis and arbovirosis, respectively. In 2014 I obtained my PhD degree “cum laude” with European mention from the Complutense University of Madrid. My PhD Thesis (developed at the Instituto de Salud Carlos III), focused on the study of phlebotomine sandfly saliva. Subsequently, during my postdoctoral period, I worked on insect gene editing, molecular, biochemical and functional characterization of insect saliva proteins and their role in the infection and transmission of pathogens. Most of my scientific career has been developed at the Laboratory of Malaria and Vector Research, National Institutes of Health (NIH), USA. Since 2021 I am a Senior Scientist at the Laboratory of Medical Entomology (ISCIII).
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Ricardo Molina Moreno
Doctor Ad Honorem
ORCID code: 0000-0001-6662-173X
Doctor in Biological Sciences from the Complutense University of Madrid (1994). In 1979 he began his professional career at the Instituto de Salud Carlos III (ISCIII), where he became a researcher in 1985. He was in charge of the Medical Entomology Laboratory from that year until his retirement in 2023. He is currently a doctor linked “Ad Honorem”. He has extensive experience in medical entomology, advising the Ministry of Health (CCAES) and Health Departments of Autonomous Communities, on surveillance and control of arthropods transmitting vector-borne diseases. In recent years he has been involved in surveillance programs in Spain for leishmaniasis vectors, especially in the Fuenlabrada outbreak, and for viruses causing Crimean-Congo hemorrhagic fever and dengue. Also in the surveillance of invasive exotic mosquitoes, especially Aedes albopictus, in ports and airports. In his last stage he has been part of the research group within the CIBER (CIBERINFEC; CB21/13/00110).
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Marcos López de Felipe Escudero
Predoctoral contract FPU
ORCID code: 0000-0002-2919-836X
Graduated in Biology from the Autonomous University of Madrid and Master in Tropical Parasitic Diseases from the University of Valencia. He started his professional career in 2019 in surveillance and management of hematophagous diptera of veterinary-medical interest, as well as other urban pests. In 2024 he began his work at the Instituto de Salud Carlos III (ISCIII) within the framework of the project “Evaluation of the anti-leishmanicidal effect of the bacterium Tc1 and its derivatives in the intravectorial cycle of the parasite” directed by Dr. Inés Martín Martín where he continues after the award of a FPU fellowship. He has extensive experience in medical entomology, especially in surveillance and vector control and taxonomic identification. Her career so far has focused mainly on the study of phlebotomine sand flies, simulids and culicidae, with special attention to citizen science.
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Eva Pérez Martínez
Clinical and Biomedical Laboratory Technician
ORCID code: 0000-0002-6553-9969
Graduated in 2019 from the Advanced Vocational Training Program in Clinical and Biomedical Laboratory Sciences. I began my professional career in 2020 at Eurofins Megalab laboratories. In 2024, I started working as a freelance professional on an international project focused on the bioecology of phlebotomine sand flies in urban environments across the Mediterranean Basin, conducting fieldwork in Spain, Italy, Greece, and southern France within the framework of citizen science. Since 2025, I have been part of the Medical Entomology Laboratory at the Instituto de Salud Carlos III (ISCIII), where I work as a laboratory technician on the project “Biochemical and functional characterization of salivary proteins from Phlebotomus perniciosus and their role in Leishmania infantum infection (PERNIPROT)”, led by Dr. Inés Martín Martín.
List of staff
Additional Information
Streptococcus pneumoniae is a human pathogen that, despite the development of vaccines, continues to be an important cause of mortality and morbidity. We investigate the mechanisms of antibiotic resistance in this bacterium. On the one hand by identifying new therapeutic targets and on the other hand by investigating the molecular basis of the action of antibiotics already used in clinical practice (the fluoroquinolones levofloxacin and moxifloxacin) or not yet used (seconeolitsine). For this purpose, we used a multidisciplinary analysis involving genomics, transcriptomics and proteomics to understand the organization of the S. pneumoniae chromosome and the identification of the factors that stabilize this organization, including ncRNAs. Changes in the level of global supercoiling, either by inhibition of gyrase (decrease) or by inhibition of topoisomerase I (increase) alter the transcriptome. The modulated genes are located in domains, whose genes show specific functional characteristics. The aim is to identify new factors essential for S. pneumoniae physiology and to characterize transcriptional regulation in response to topological stress. In addition, RNA interference technology and CRISPR systems will be used as novel antibacterials. These studies will establish the bases for translational research aimed at the development of new therapeutic targets for the treatment of pneumococcal diseases.
Streptococcus pneumoniae is a human pathogen that, despite the development of vaccines, continues to be an important cause of mortality and morbidity. We investigate the mechanisms of antibiotic resistance in this bacterium. On the one hand by identifying new therapeutic targets and on the other hand by investigating the molecular basis of the action of antibiotics already used in clinical practice (the fluoroquinolones levofloxacin and moxifloxacin) or not yet used (seconeolitsine). For this purpose, we used a multidisciplinary analysis involving genomics, transcriptomics and proteomics to understand the organization of the S. pneumoniae chromosome and the identification of the factors that stabilize this organization, including ncRNAs. Changes in the level of global supercoiling, either by inhibition of gyrase (decrease) or by inhibition of topoisomerase I (increase) alter the transcriptome. The modulated genes are located in domains, whose genes show specific functional characteristics. The aim is to identify new factors essential for S. pneumoniae physiology and to characterize transcriptional regulation in response to topological stress. In addition, RNA interference technology and CRISPR systems will be used as novel antibacterials. These studies will establish the bases for translational research aimed at the development of new therapeutic targets for the treatment of pneumococcal diseases.