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Malaria and Emerging Parasitosis

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Referencia e Investigación en Helmintos

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Emergence of linezolid-resistant coagulase-negative staphylococci in an intensive care unit

2. Emergence of linezolid-resistant coagulase-negative staphylococci in an intensive care unit. Balandin B, Lobo B, Orden B, Román F, García E, Martínez R, Valdivia M, Ortega A, Fernández I, Galdos P. Infect Dis (Lond). 2016;48(5):343-9.

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Horizontal gene transmission of the cfr gene to MRSA and Enterococcus: role of Staphylococcus epidermidis as a reservoir and alternative pathway for the spread of linezolid resistance.

3. Horizontal gene transmission of the cfr gene to MRSA and Enterococcus: role of Staphylococcus epidermidis as a reservoir and alternative pathway for the spread of linezolid resistance. Cafini F, Nguyen le TT, Higashide M, Román F, Prieto J, Morikawa K. J Antimicrob Chemother. 2016 Mar;71(3):587-92.

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Emergence of cfr-Mediated Linezolid Resistance in a Methicillin-Resistant Staphylococcus aureus Epidemic Clone Isolated from Patients with Cystic Fibrosis.

4. Emergence of cfr-Mediated Linezolid Resistance in a Methicillin-Resistant Staphylococcus aureus Epidemic Clone Isolated from Patients with Cystic Fibrosis. de Dios Caballero J, Pastor MD, Vindel A, Máiz L, Yagüe G, Salvador C, Cobo M, Morosini MI, del Campo R, Cantón R; GEIFQ Study Group. Antimicrob Agents Chemother. 2015 Dec 14;60(3):1878-82.

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The dynamic changes of dominant clones of Staphylococcus aureus causing bloodstream infections in the European region: results of a second structured survey.

5. The dynamic changes of dominant clones of Staphylococcus aureus causing bloodstream infections in the European region: results of a second structured survey. Grundmann H, Schouls LM, Aanensen DM, Pluister GN, Tami A, Chlebowicz M, Glasner C, Sabat AJ, Weist K, Heuer O, Friedrich AW; ESCMID Study Group on Molecular Epidemiological Markers; European Staphylococcal Reference Laboratory Working Group. Euro Surveill. 2014 Dec 11;19(49).

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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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