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Items: 1 to 20 of 48

1.

Key gaps in the knowledge of Plasmodium vivax, a neglected human malaria parasite.

Mueller I, Galinski MR, Baird JK, Carlton JM, Kochar DK, Alonso PL, del Portillo HA.

Lancet Infect Dis. 2009 Sep;9(9):555-66. doi: 10.1016/S1473-3099(09)70177-X. Review.

PMID:
19695492
2.
3.

Plasmodium vivax: who cares?

Galinski MR, Barnwell JW.

Malar J. 2008 Dec 11;7 Suppl 1:S9. doi: 10.1186/1475-2875-7-S1-S9. Review.

4.

Evaluation of MHC-II peptide binding prediction servers: applications for vaccine research.

Lin HH, Zhang GL, Tongchusak S, Reinherz EL, Brusic V.

BMC Bioinformatics. 2008 Dec 12;9 Suppl 12:S22. doi: 10.1186/1471-2105-9-S12-S22.

5.

Naturally acquired humoral and cellular immune responses to Plasmodium vivax merozoite surface protein 9 in Northwestern Amazon individuals.

Lima-Junior JC, Tran TM, Meyer EV, Singh B, De-Simone SG, Santos F, Daniel-Ribeiro CT, Moreno A, Barnwell JW, Galinski MR, Oliveira-Ferreira J.

Vaccine. 2008 Dec 2;26(51):6645-54. doi: 10.1016/j.vaccine.2008.09.029.

6.

Expression, purification, and characterization of the immunological response to a 40-kilodalton Plasmodium vivax tryptophan-rich antigen.

Siddiqui AA, Bora H, Singh N, Dash AP, Sharma YD.

Infect Immun. 2008 Jun;76(6):2576-86. doi: 10.1128/IAI.00677-07. Epub 2008 Mar 24.

7.

Vivax malaria: neglected and not benign.

Price RN, Tjitra E, Guerra CA, Yeung S, White NJ, Anstey NM.

Am J Trop Med Hyg. 2007 Dec;77(6 Suppl):79-87. Review.

8.
9.

Identification of novel consensus CD4 T-cell epitopes from clade B HIV-1 whole genome that are frequently recognized by HIV-1 infected patients.

Fonseca SG, Coutinho-Silva A, Fonseca LA, Segurado AC, Moraes SL, Rodrigues H, Hammer J, Kallás EG, Sidney J, Sette A, Kalil J, Cunha-Neto E.

AIDS. 2006 Nov 28;20(18):2263-73.

PMID:
17117012
10.

Major histocompatibility complex and T cell interactions of a universal T cell epitope from Plasmodium falciparum circumsporozoite protein.

Parra-López C, Calvo-Calle JM, Cameron TO, Vargas LE, Salazar LM, Patarroyo ME, Nardin E, Stern LJ.

J Biol Chem. 2006 May 26;281(21):14907-17. Epub 2006 Mar 23.

11.

Priming of CD4+ T cells and development of CD4+ T cell memory; lessons for malaria.

Stephens R, Langhorne J.

Parasite Immunol. 2006 Jan-Feb;28(1-2):25-30. Review.

12.

Antibody response profiles induced by Plasmodium falciparum glutamate-rich protein in naturally exposed individuals from a Brazilian area endemic for malaria.

Pratt-Riccio LR, Lima-Junior JC, Carvalho LJ, Theisen M, Espíndola-Mendes EC, Santos F, Oliveira-Ferreira J, Goldberg AC, Daniel-Ribeiro CT, Banic DM.

Am J Trop Med Hyg. 2005 Dec;73(6):1096-103.

PMID:
16354819
13.

Chimeric epitopes delivered by polymeric synthetic linear peptides induce protective immunity to malaria.

Caro-Aguilar I, Lapp S, Pohl J, Galinski MR, Moreno A.

Microbes Infect. 2005 Oct;7(13):1324-37. Epub 2005 Jul 13.

PMID:
16253535
14.

Different antibody- and cytokine-mediated responses to Plasmodium falciparum parasite in two sympatric ethnic tribes living in Mali.

Farouk SE, Dolo A, Bereczky S, Kouriba B, Maiga B, Färnert A, Perlmann H, Hayano M, Montgomery SM, Doumbo OK, Troye-Blomberg M.

Microbes Infect. 2005 Jan;7(1):110-7. Epub 2004 Dec 16.

PMID:
15716067
16.
17.

Immunogenicity of Plasmodium vivax merozoite surface protein-9 recombinant proteins expressed in E. coli.

Oliveira-Ferreira J, Vargas-Serrato E, Barnwell JW, Moreno A, Galinski MR.

Vaccine. 2004 May 7;22(15-16):2023-30.

PMID:
15121316
18.

Polytope vaccines for the codelivery of multiple CD8 T-cell epitopes.

Suhrbier A.

Expert Rev Vaccines. 2002 Aug;1(2):207-13. Review.

PMID:
12901559
19.

MHC allele-specific binding of a malaria peptide makes it become promiscuous on fitting a glycine residue into pocket 6.

Vargas LE, Parra CA, Salazar LM, Guzmán F, Pinto M, Patarroyo ME.

Biochem Biophys Res Commun. 2003 Jul 18;307(1):148-56.

PMID:
12849994
20.

Amino acid dimorphism and parasite immune evasion: cellular immune responses to a promiscuous epitope of Plasmodium falciparum merozoite surface protein 1 displaying dimorphic amino acid polymorphism are highly constrained.

Daubenberger CA, Nickel B, Ciatto C, Grütter MG, Pöltl-Frank F, Rossi L, Siegler U, Robinson J, Kashala O, Patarroyo ME, Pluschke G.

Eur J Immunol. 2002 Dec;32(12):3667-77.

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