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Fernandes, S. S., Nunes, A., Gomes, A. R., de Castro, B., et al. (2010). Identification of a new hexadentate iron chelator capable of restricting the intramacrophagic growth of Mycobacterium avium. Microbes and Infection, 12(4), 287 - 294.
Roque, S., Nobrega, C., Appelberg, R., & Correia-Neves, M. (2007). IL-10 underlies distinct susceptibility of BALB/c and C57BL/6 mice to Mycobacterium avium infection and influences efficacy of antibiotic therapy. Journal of Immunology, 178(12), 8028 - 8035.
Gomes-Pereira, S., Rodrigues, P. N., Appelberg, R., & Gomes, M. S. (2008). Increased susceptibility to Mycobacterium avium in hemochromatosis protein HFE-deficient mice. Infection and Immunity, 76(10), 4713 - 4719.
Pais, T. F., & Appelberg, R. (2004). Induction of Mycobacterium avium growth restriction and inhibition of phagosome-endosome interactions during macrophage during macrophage activation and apoptosis induction by picolinic acid plus IFNγ. Microbiology, 150(5), 1507 - 1518.
Resende, M., Cardoso, M. S., Ribeiro, A. R., Flórido, M., et al. (2017). Innate IFN-γ-Producing cells developing in the absence of IL-2 receptor common γ-chain. Journal of Immunology, 199(4), 1429 - 1439.
Vale-Costa, S., Gomes-Pereira, S., Teixeira, C. M., Rosa, G., et al. (2013). Iron Overload Favors the Elimination of Leishmania infantum from Mouse Tissues through Interaction with Reactive Oxygen and Nitrogen Species. PLoS Neglected Tropical Diseases, 7(2).

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