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Journal Abstract Search


152 related items for PubMed ID: 6304225

  • 21. Trypanosoma cruzi Differentiates and Multiplies within Chimeric Parasitophorous Vacuoles in Macrophages Coinfected with Leishmania amazonensis.
    Pessoa CC, Ferreira ÉR, Bayer-Santos E, Rabinovitch M, Mortara RA, Real F.
    Infect Immun; 2016 May; 84(5):1603-1614. PubMed ID: 26975994
    [Abstract] [Full Text] [Related]

  • 22. The biogenesis and properties of the parasitophorous vacuoles that harbour Leishmania in murine macrophages.
    Antoine JC, Prina E, Lang T, Courret N.
    Trends Microbiol; 1998 Oct; 6(10):392-401. PubMed ID: 9807783
    [Abstract] [Full Text] [Related]

  • 23. Depletion of secondary lysosomes in mouse macrophages infected with Leishmania mexicana amazonensis: a cytochemical study.
    Barbieri CL, Brown K, Rabinovitch M.
    Z Parasitenkd; 1985 Oct; 71(2):159-68. PubMed ID: 3993184
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  • 24. Evidence that Leishmania donovani utilizes a mannose receptor on human mononuclear phagocytes to establish intracellular parasitism.
    Wilson ME, Pearson RD.
    J Immunol; 1986 Jun 15; 136(12):4681-8. PubMed ID: 3711662
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  • 25. Characterization of the mannose/fucose receptor on human mononuclear phagocytes.
    Shepherd VL, Campbell EJ, Senior RM, Stahl PD.
    J Reticuloendothel Soc; 1982 Dec 15; 32(6):423-31. PubMed ID: 6298410
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  • 26. Expression of a mannosyl-fucosyl receptor for endocytosis on cultured primary macrophages and their hybrids.
    Stahl P, Gordon S.
    J Cell Biol; 1982 Apr 15; 93(1):49-56. PubMed ID: 6279673
    [Abstract] [Full Text] [Related]

  • 27. Sugar receptor mediated drug delivery to macrophages in the therapy of experimental visceral leishmaniasis.
    Chakraborty P, Bhaduri AN, Das PK.
    Biochem Biophys Res Commun; 1990 Jan 15; 166(1):404-10. PubMed ID: 2302213
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  • 28. Involvement of serum mannan binding proteins and mannose receptors in uptake of mannosylated liposomes by macrophages.
    Opanasopit P, Higuchi Y, Kawakami S, Yamashita F, Nishikawa M, Hashida M.
    Biochim Biophys Acta; 2001 Mar 09; 1511(1):134-45. PubMed ID: 11248212
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  • 32. In vivo depletion of mannose receptor bearing cells from rat liver by ricin A chain: effects on clearance of beta-glucuronidase.
    Simmons BM, Stahl PD, Russell JH.
    Biochem Biophys Res Commun; 1987 Jul 31; 146(2):849-54. PubMed ID: 2441698
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  • 34. Intracellular trafficking and the parasitophorous vacuole of Leishmania mexicana-infected macrophages.
    Russell DG, Xu S, Chakraborty P.
    J Cell Sci; 1992 Dec 31; 103 ( Pt 4)():1193-210. PubMed ID: 1487496
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  • 35. Leishmania mexicana: acid phosphatase ultrastructural cytochemistry of infected mouse macrophage cultures treated with phenazine methosulfate.
    Ryter A, Dedet JP, Rabinovitch M.
    Exp Parasitol; 1983 Apr 31; 55(2):233-42. PubMed ID: 6832281
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  • 36. Neoglycosylated liposomes as efficient ligands for the evaluation of specific sugar receptors on macrophages in health and in experimental leishmaniasis.
    Dutta M, Bandyopadhyay R, Basu MK.
    Parasitology; 1994 Aug 31; 109 ( Pt 2)():139-47. PubMed ID: 8084660
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  • 37. The diverse and dynamic nature of Leishmania parasitophorous vacuoles studied by multidimensional imaging.
    Real F, Mortara RA.
    PLoS Negl Trop Dis; 2012 Aug 31; 6(2):e1518. PubMed ID: 22348167
    [Abstract] [Full Text] [Related]

  • 38. Leishmania donovani. Hamster macrophage interactions in vitro: cell entry, intracellular survival, and multiplication of amastigotes.
    Chang KP, Dwyer DM.
    J Exp Med; 1978 Feb 01; 147(2):515-30. PubMed ID: 564391
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  • 39. Biochemical analysis of proteins and lipids found in parasitophorous vacuoles containing Leishmania amazonensis.
    Henriques C, Atella GC, Bonilha VL, de Souza W.
    Parasitol Res; 2003 Jan 01; 89(2):123-33. PubMed ID: 12489012
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