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Gazanion, E., Garcia, D., Silvestre, R., Gérard, C., et al. (2011). The Leishmania nicotinamidase is essential for NAD + production and parasite proliferation. Molecular Microbiology, 82(1), 21 - 38.
Belo, R., Santarém, N., Pereira, C., Pérez-Cabezas, B., et al. (2017). Leishmania infantum exoproducts inhibit human invariant NKT cell expansion and activation. Frontiers in Immunology, 8(JUN).
Menezes Cabral, S., Leal Silvestre, R., Moreira Santarém, N., Costa Tavares, J., et al. (2008). A Leishmania infantum cytosolic tryparedoxin activates B cells to secrete interleukin-10 and specific immunoglobulin. Immunology, 123(4), 555 - 565.
Tavares, J., Ouaissi, A., Santarém, N., Sereno, D., et al. (2008). The Leishmania infantum cytosolic SIR2-related protein 1 (LiSIR2RP1) is an NAD+-dependent deacetylase and ADP-ribosyltransferase. Biochemical Journal, 415(3), 377 - 386.
Faria, J., Loureiro, I., Santarém, N., Macedo-Ribeiro, S., et al. (2016). Leishmania infantum Asparagine Synthetase A Is Dispensable for Parasites Survival and Infectivity. PLoS Neglected Tropical Diseases, 10(1).
Silvestre, R., Cordeiro-da-Silva, A., Tavares, J., Sereno, D., & Ouaissi, A. (2006). Leishmania cytosolic silent information regulatory protein 2 deacetylase induces murine B-cell differentiation and in vivo production of specific antibodies. Immunology, 119(4), 529 - 540.
Pérez-Cabezas, B., Cecílio, P., Robalo, A. L., Silvestre, R., et al. (2016). Interleukin-27 early impacts Leishmania infantum infection in mice and correlates with active visceral disease in humans. Frontiers in Immunology, 7(NOV).
Carvalho-Gontijo, R., Moreira, D. R., Resende, M., Costa-Silva, M. F., et al. (2017). Infection of hematopoietic stem cells by Leishmania infantum increases erythropoiesis and alters the phenotypic and functional profiles of progeny. Cellular Immunology.
Borges, O., Borchard, G., de Sousa, A., Junginger, H. E., & Cordeiro-da-Silva, A. (2007). Induction of lymphocytes activated marker CD69 following exposure to chitosan and alginate biopolymers. International Journal of Pharmaceutics, 337(1-2), 254 - 264.
Tavares, J., Costa, D. M., Teixeira, A. R., Cordeiro-da-Silva, A., & Amino, R. (2017). In vivo imaging of pathogen homing to the host tissues. Methods, 127, 37 - 44.
Silva, R., Carmo, H., Dinis-Oliveira, R., Cordeiro-da-Silva, A., et al. (2011). In vitro study of P-glycoprotein induction as an antidotal pathway to prevent cytotoxicity in Caco-2 cells. Archives of Toxicology, 85(4), 315 - 326.
Lin, P. K. T., Hoskins, C., Ouaissi, M., Lima, S. C., et al. (2010). In vitro and in vivo anticancer activity of a novel nano-sized formulation based on self-assembling polymers against pancreatic cancer. Pharmaceutical Research, 27(12), 2694 - 2703.
Moreira, D., Santarém, N., Loureiro, I., Tavares, J., et al. (2012). Impact of continuous axenic cultivation in Leishmania infantum virulence. PLoS Neglected Tropical Diseases, 6(1).
Cordeiro-da-Silva, A., Tavares, J., Araújo, N., Cerqueira, F., et al. (2004). Immunological alterations induced by polyamine derivatives on murine splenocytes and human mononuclear cells. International Immunopharmacology, 4(4), 547 - 556.
Santarém, N., Silvestre, R., Tavares, J., Silva, M., et al. (2007). Immune response regulation by Leishmania secreted and nonsecreted antigens. Journal of Biomedicine and Biotechnology, 2007.
Borges, O., Cordeiro-da-Silva, A., Tavares, J., Santarém, N., et al. (2008). Immune response by nasal delivery of hepatitis B surface antigen and codelivery of a CpG ODN in alginate coated chitosan nanoparticles. European Journal of Pharmaceutics and Biopharmaceutics, 69(2), 405 - 416.
Santarém, N., Racine, G., Silvestre, R., Cordeiro-da-Silva, A., & Ouellette, M. (2013). Exoproteome dynamics in Leishmania infantum. Journal of Proteomics, 84, 106 - 118.
Borges, O., Tavares, J., de Sousa, A., Borchard, G., et al. (2007). Evaluation of the immune response following a short oral vaccination schedule with hepatitis B antigen encapsulated into alginate-coated chitosan nanoparticles. European Journal of Pharmaceutical Sciences, 32(4-5), 278 - 290.
Silvestre, R., Santarém, N., Teixeira, L., Cunha, J., et al. (2009). Evaluation of Leishmania species reactivity in human serologic diagnosis of leishmaniasis. American Journal of Tropical Medicine and Hygiene, 81(2), 202 - 208.
Moraes, C. B., White, K. L., Braillard, S., Perez, C., et al. (2015). Enantiomers of nifurtimox do not exhibit stereoselective anti-Trypanosoma cruzi activity, toxicity, or pharmacokinetic properties. Antimicrobial Agents and Chemotherapy, 59(6), 3645 - 3647.
Sousa, C., Nunes, C., Lúcio, M., Ferreira, H., et al. (2008). Effect of nonsteroidal anti-inflammatory drugs on the cellular membrane fluidity. Journal of Pharmaceutical Sciences, 97(8), 3195 - 3206.
Ferreira, H., Lúcio, M., Lima, J. L. F. C., Cordeiro-da-Silva, A., et al. (2005). Effect of anti-inflammatory drugs on splenocyte membrane fluidity. Analytical Biochemistry, 339(1), 144 - 149.


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