Bacterial Genetics
Research projects
Content with Investigacion .
- Titulo: “Inmunidad entrenada en trasplante de órganos”.
Entidad financiadora. Ministerio de Ciencia, Innovación y Universidades
Referencia: Proyecto PID2019-110015RB-I00 financiado por MICIU/AEI/10.13039/501100011033
IP: Jordi Cano Ochando
Fechas de ejecución: 01/06/2020-31/05/2024
Presupuesto: 205.700 €
Publications
Riquelme P, Haarer J, Kammler A, Walter L, Tomiuk S, Ahrens N, Goecze I, Wege A, Fändrich F, Schlitt H, Banas B, Lutz M, Sawitzki B, Ochando J, Geissler E and Hutchinson J. Generation of BTNL8+ TIGIT+ Tregs by Human Regulatory Macrophages Before Kidney Transplantation. Nat Commun.
Riquelme P, Haarer J, Kammler A, Walter L, Tomiuk S, Ahrens N, Goecze I, Wege A, Fändrich F, Schlitt H, Banas B, Lutz M, Sawitzki B, Ochando J, Geissler E and Hutchinson J. Generation of BTNL8+ TIGIT+ Tregs by Human Regulatory Macrophages Before Kidney Transplantation. Nat Commun. 2018; Jul 20;9(1):2858. PMID: 30030423.
Inhibiting Inflammation with Myeloid Cell-Specific Nanobiologics Promotes Organ Transplant Acceptance
Braza MS, Lameijer M, Sanchez-Gaytan B, Arts R, Pérez-Medina C, Conde P, Brahmachary M, van der Touw W, Fay F, Kluza E, Kossatz S, Stroes E, Kroon J, Dress R, Salem F, Rialdi A, Reiner T, Boros P, van Leent M, Strijkers G, Calcagno C, Ginhoux F, Marazzi I, Lutgens E, Nicolaes G, Weber C, Swirski F, Nahrendorf M, Fisher E, Fayad Z, Duivenvoorden R, Netea M, Mulder WJ, and Ochando J. Inhibiting Inflammation with Myeloid Cell-Specific Nanobiologics Promotes Organ Transplant Acceptance.Immunity. 2018; 20;49(5):819-828.e6. PMID: 30413362.
PUBMED DOIFernandez-Garcia MD, Volle R, Joffret ML, Sadeuh-Mba SA, Gouandjika-Vasilache I, Kebe O, Wiley MR, Majumdar M, Simon-Loriere E, Sakuntabhai A, Palacios G, Martin J, Delpeyroux F, Ndiaye K, Bessaud M. Genetic Characterization of Enterovirus A71 Circulating in Africa.
Fernandez-Garcia MD, Volle R, Joffret ML, Sadeuh-Mba SA, Gouandjika-Vasilache I, Kebe O, Wiley MR, Majumdar M, Simon-Loriere E, Sakuntabhai A, Palacios G, Martin J, Delpeyroux F, Ndiaye K, Bessaud M. Genetic Characterization of Enterovirus A71 Circulating in Africa. Emerg Infect Dis. 2018 Apr;24(4):754-757. doi: 10.3201/eid2404.171783. PMID: 29553325; PMCID: PMC5875259.
Leon KE, Schubert RD, Casas-Alba D, Hawes IA, Ramachandran PS, Ramesh A, Pak JE, Wu W, Cheung CK, Crawford ED, Khan LM, Launes C, Sample HA, Zorn KC, Cabrerizo M, Valero-Rello A, Langelier C, Muñoz-Almagro C, DeRisi JL, Wilson MR. Genomic and serologic characterization of enterovirus A71 brainstem encephalitis. Neurol Neuroimmunol Neuroinflamm. 2020
Leon KE, Schubert RD, Casas-Alba D, Hawes IA, Ramachandran PS, Ramesh A, Pak JE, Wu W, Cheung CK, Crawford ED, Khan LM, Launes C, Sample HA, Zorn KC, Cabrerizo M, Valero-Rello A, Langelier C, Muñoz-Almagro C, DeRisi JL, Wilson MR. Genomic and serologic characterization of enterovirus A71 brainstem encephalitis. Neurol Neuroimmunol Neuroinflamm. 2020 Mar 5;7(3):e703. doi: 10.1212/NXI.0000000000000703. PMID: 32139440; PMCID: PMC7136061.
González-Sanz R, Casas-Alba D, Launes C, Muñoz-Almagro C, Ruiz-García MM, Alonso M, González-Abad MJ, Megías G, Rabella N, Del Cuerpo M, Gozalo-Margüello M, González-Praetorius A, Martínez-Sapiña A, Goyanes-Galán MJ, Romero MP, Calvo C, Antón A, Imaz M, Aranzamendi M, Hernández-Rodríguez Á, Moreno-Docón A, Rey- Cao S, Navascués A, Otero A, Cabrerizo M. Molecular epidemiology of an enterovirus A71 outbreak associated with severe neurological disease, Spain, 2016. Euro Surveill. 2019
González-Sanz R, Casas-Alba D, Launes C, Muñoz-Almagro C, Ruiz-García MM, Alonso M, González-Abad MJ, Megías G, Rabella N, Del Cuerpo M, Gozalo-Margüello M, González-Praetorius A, Martínez-Sapiña A, Goyanes-Galán MJ, Romero MP, Calvo C, Antón A, Imaz M, Aranzamendi M, Hernández-Rodríguez Á, Moreno-Docón A, Rey- Cao S, Navascués A, Otero A, Cabrerizo M. Molecular epidemiology of an enterovirus A71 outbreak associated with severe neurological disease, Spain, 2016. Euro Surveill. 2019 Feb;24(7):1800089. doi: 10.2807/1560-7917.ES.2019.24.7.1800089. PMID: 30782267; PMCID: PMC6381658.
Spanish Afp Surveillance Working Group. Acute flaccid paralysis (AFP) surveillance: challenges and opportunities from 18 years' experience, Spain, 1998 to 2015. Euro Surveill.
Spanish Afp Surveillance Working Group. Acute flaccid paralysis (AFP) surveillance: challenges and opportunities from 18 years' experience, Spain, 1998 to 2015. Euro Surveill. 2018 Nov;23(47):1700423. doi: 10.2807/1560-7917.ES.2018.23.47.1700423. PMID: 30482263; PMCID: PMC6341937.
Molecular Epidemiology of Human Parechoviruses in Children With Acute Respiratory Infection in Spain
M Cabrerizo*, C Calvo, G Trallero, ML García-García, M Arroyas, V Sánchez, F Pozo, I Casas. Molecular epidemiology of human parechoviruses children with acute respiratory infection in Spain. Pediatric Infect Dis J 32:802-3 (2013).
PUBMED DOIIdentification of novel Betaherpesviruses in iberian bats reveals parallel evolution
Pozo F, Juste J, Vázquez-Morón S., Aznar-López C, Ibáñez C, Garin I, Aihartza J, Casa I, Tenorio A, Echevarría JE. Identification of novel Betaherpesviruses in iberian bats reveals parallel evolution. PLoS ONE. 2016. 11(12): e0169153. doi:10.1371/journal.pone.0169153
PUBMED DOIAdditional 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.