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276 related items for PubMed ID: 22411452

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  • 2. 'Coinfection-helminthes and tuberculosis'.
    Rafi W, Ribeiro-Rodrigues R, Ellner JJ, Salgame P.
    Curr Opin HIV AIDS; 2012 May; 7(3):239-44. PubMed ID: 22411453
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  • 14. From host immunity to pathogen invasion: the effects of helminth coinfection on the dynamics of microparasites.
    Ezenwa VO, Jolles AE.
    Integr Comp Biol; 2011 Oct; 51(4):540-51. PubMed ID: 21727178
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  • 15. Induction of regulatory cells by helminth parasites: exploitation for the treatment of inflammatory diseases.
    Finlay CM, Walsh KP, Mills KH.
    Immunol Rev; 2014 May; 259(1):206-30. PubMed ID: 24712468
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  • 16. Protein phosphatase, Mg2+/Mn2+-dependent 1A controls the innate antiviral and antibacterial response of macrophages during HIV-1 and Mycobacterium tuberculosis infection.
    Sun J, Schaaf K, Duverger A, Wolschendorf F, Speer A, Wagner F, Niederweis M, Kutsch O.
    Oncotarget; 2016 Mar 29; 7(13):15394-409. PubMed ID: 27004401
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  • 17. T cells and adaptive immunity to Mycobacterium tuberculosis in humans.
    Jasenosky LD, Scriba TJ, Hanekom WA, Goldfeld AE.
    Immunol Rev; 2015 Mar 29; 264(1):74-87. PubMed ID: 25703553
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  • 19. Productive HIV-1 infection is enriched in CD4(-)CD8(-) double negative (DN) T cells at pleural sites of dual infection with HIV and Mycobacterium tuberculosis.
    Meng Q, Canaday DH, McDonald DJ, Mayanja-Kizza H, Baseke J, Toossi Z.
    Arch Virol; 2016 Jan 29; 161(1):181-7. PubMed ID: 26497177
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  • 20. Deficient in vitro anti-mycobacterial immunity despite successful long-term highly active antiretroviral therapy in HIV-infected patients with past history of tuberculosis infection or disease.
    Mendonça M, Tanji MM, Silva LC, Silveira GG, Oliveira SC, Duarte AJ, Benard G.
    Clin Immunol; 2007 Oct 29; 125(1):60-6. PubMed ID: 17631053
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