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Malaria and Emerging Parasitosis

Líneas de investigación

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Neumococos

Vigilancia epidemiológica de los serotipos y genotipos que causan enfermedad neumocócica invasiva (ENI) en España. Caracterización molecular de factores de virulencia de neumococo. Identificación y caracterización de proteínas de neumococo candidatas a vacuna. Evaluación de mecanismos de evasión de la respuesta inmune en Streptococcus pneumoniae. Impacto de los biofilms bacterianos en la persistencia del tracto respiratorio. Mecanismos de cronicidad de aislados clínicos de neumococo en pacientes con enfermedad pulmonar obstructiva crónica.

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Identification and Analysis of Unstructured, Linear B-Cell Epitopes in SARS-CoV-2 Virion Proteins for Vaccine Development

Identification and Analysis of Unstructured, Linear B-Cell Epitopes in SARS-CoV-2 Virion Proteins for Vaccine Development. Corral-Lugo A, López-Siles M, López D, McConnell MJ, Martin-Galiano AJ. Vaccines. 2020 Jul 20;8(3):397. doi: 10.3390/vaccines8030397.

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Using Omics Technologies and Systems Biology to Identify Epitope Targets for the Development of Monoclonal Antibodies Against Antibiotic-Resistant Bacteria

Using Omics Technologies and Systems Biology to Identify Epitope Targets for the Development of Monoclonal Antibodies Against Antibiotic-Resistant Bacteria. Martín-Galiano AJ, McConnell MJ.Front Immunol. 2019 Dec 10;10:2841. doi: 10.3389/fimmu.2019.02841. eCollection 2019.

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A lipopolysaccharide-free outer membrane vesicle vaccine protects against Acinetobacter baumannii infection

A lipopolysaccharide-free outer membrane vesicle vaccine protects against Acinetobacter baumannii infection. Pulido MR, García-Quintanilla M, Pachón J, McConnell MJ.Vaccine. 2020 Jan 22;38(4):719-724. doi: 10.1016/j.vaccine.2019.11.043.

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A Live Salmonella Vaccine Delivering PcrV through the Type III Secretion System Protects against Pseudomonas aeruginosa.

A Live Salmonella Vaccine Delivering PcrV through the Type III Secretion System Protects against Pseudomonas aeruginosa. Aguilera-Herce J, García-Quintanilla M, Romero-Flores R, McConnell MJ, Ramos-Morales F. mSphere. 2019 Apr 17;4(2):e00116-19. doi: 10.1128/mSphere.00116-19.

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Información adicional

Despite progress, parasitic diseases remain a major challenge for humans. Its rapid and accurate detection, as well as the identification of specific genes related to virulence and/or resistance to treatments, is a necessity for management and planning control strategies. 

The main objective of the group is to carry out quality, competitive and innovative research, to acquire, disseminate and apply in clinical parasitology with the ultimate goal of improving and innovating in the diagnoses, therapies and control of parasitic diseases. This general objective is implemented through external projects and collaborations with different funding sources:

- Characterization of submicroscopic malaria. National Hospital Network. (FIS-ISCIII).
- Design, optimization and validation of advanced diagnostic methods for the detection of blood parasites (Retos-MICINN).
- Control of onchocerciasis in Equatorial Guinea. CNMTrop-ISCIII (Task Force, USA).
- Characterization and control of Mansonellosis and Onchocerciasis in the Amazon region in Brazil. FIOCRUZ from Amazonas, Brazil. (Cpnqt-Brazil).
- Plasmodium knowlesi and its implication as the fifth species of human malaria. MRC, Malaysia.
- Intestinal parasitosis in Egypt from Cryptosporidium (protozoan) to Capillaria (Nematode). Cairo University and Al-Azhar University, Egypt. (MHESR, AECID).

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