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Hoffmann, R. A wiki for the life sciences where authorship matters. Nature Genetics (2008)
 

Manuel Elkin E Patarroyo

Fundacion Instituto de Inmunologia de Colombia

Carrera 50 No 26-20

Bogota

Colombia

[email]@mail.com

Name/email consistency: high

 
 
 
 
 
 
 

Affiliations

  • Fundacion Instituto de Inmunologia de Colombia, Carrera 50 No 26-20, Bogota, Colombia. 2002 - 2011
  • Universidad Nacional de Colombia, Bogotá, Columbia. 2005

References

  1. Functional, immunological and three-dimensional analysis of chemically synthesised sporozoite peptides as components of a fully-effective antimalarial vaccine. Curtidor, H., Vanegas, M., P Alba, M., E Patarroyo, M. Curr. Med. Chem. (2011) [Pubmed]
  2. Biological and structural characteristics of the binding peptides from the sporozoite proteins essential for cell traversal (SPECT)-1 and -2. Patarroyo, M.E., Alba, M.P., Curtidor, H. Peptides (2011) [Pubmed]
  3. Atomic evidence that modification of H-bonds established with amino acids critical for host-cell binding induces sterile immunity against malaria. Patarroyo, M.E., Cifuentes, G., Piraján, C., Moreno-Vranich, A., Vanegas, M. Biochem. Biophys. Res. Commun. (2010) [Pubmed]
  4. Atomic fidelity of subunit-based chemically-synthesized antimalarial vaccine components. Patarroyo, M.E., Cifuentes, G., Martínez, N.L., Patarroyo, M.A. Prog. Biophys. Mol. Biol. (2010) [Pubmed]
  5. Emerging rules for subunit-based, multiantigenic, multistage chemically synthesized vaccines. Patarroyo, M.E., Patarroyo, M.A. Acc. Chem. Res. (2008) [Pubmed]
  6. Structural characterisation of sporozoite components for a multistage, multi-epitope, anti-malarial vaccine. Patarroyo, M.E., Cifuentes, G., Rodríguez, R. Int. J. Biochem. Cell Biol. (2008) [Pubmed]
  7. Protective cellular immunity against P. falciparum malaria merozoites is associated with a different P7 and P8 residue orientation in the MHC-peptide-TCR complex. Patarroyo, M.E., Salazar, L.M., Cifuentes, G., Lozano, J.M., Delgado, G., Rivera, Z., Rosas, J., Vargas, L.E. Biochimie (2006) [Pubmed]
  8. High non-protective, long-lasting antibody levels in malaria are associated with haplotype shifting in MHC-peptide-TCR complex formation: a new mechanism for immune evasion. Patarroyo, M.E., Bermúdez, A., Salazar, L.M., Espejo, F. Biochimie (2006) [Pubmed]
  9. Comparative molecular and three-dimensional analysis of the peptide-MHC II binding region in both human and Aotus MHC-DRB molecules confirms their usefulness in antimalarial vaccine development. Patarroyo, M.E., Cifuentes, G., Baquero, J. Immunogenetics (2006) [Pubmed]
  10. Peptides inducing short-lived antibody responses against Plasmodium falciparum malaria have shorter structures and are read in a different MHC II functional register. Patarroyo, M.E., Alba, M.P., Vargas, L.E., Silva, Y., Rosas, J., Rodríguez, R. Biochemistry (2005) [Pubmed]
  11. Based on HLA-DR beta1* allele binding specificities, striking differences in distance and TCR Contacting Residue Orientation can be observed in modified protection-inducing malarial synthetic peptides. Patarroyo, M.E., Cifuentes, G., Salazar, L.M., Espejo, F., Alba, M.P., Bermúdez, A. Curr. Med. Chem. (2005) [Pubmed]
  12. Structural modifications enable conserved peptides to fit into MHC molecules thus inducing protection against malaria. Patarroyo, M.E., Cifuentes, G., Vargas, L.E., Rosas, J. Chembiochem (2004) [Pubmed]
  13. Protection against experimental malaria associated with AMA-1 peptide analogue structures. Salazar, L.M., Alba, M.P., Torres, M.H., Pinto, M., Cortes, X., Torres, L., Patarroyo, M.E. FEBS Lett. (2002) [Pubmed]
 
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