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Askonas, B. A (1985). Macrophages as mediators of immunosuppression in murine African trypanosomiasis. Curr. Top. Microbiol. Immunol 117, 119-127.[Medline]

Barry, J. D., Crowe, J. S. and Vickerman, K (1983). Instability of the Trypanosoma brucei rhodesiense metacyclic variable antigen repertoire. Nature 306, 699-701.[Medline]

Barry, J. D. and Emery, D. L (1984). Parasite development and host responses during the establishment of Trypanosoma brucei infection transmitted by tsetse fly. Parasitology 88, 67-84.

Barry, J. D (1986). Antigenic variation during Trypanosoma vivax infections of different host species. Parasitology 92, 51-65.

Barry, J. D., Graham, S. V., Matthews, K. R., Shiels, P. G. and Shonekan, O. A (1990). Stage-specific mechanisms for activation and expression of variant surface glycoprotein genes in Trypanosoma brucei. Biochem. Soc. Trans 18, 708-710.[Medline]

Borowy, N. K., Sternberg, J. M., Schreiber, D., Nonnengasser, C. and Overath, P (1990). Suppressive macrophages occurring in murine Trypanosoma brucei infection inhibit T-cell responses in vivo and in vitro. Parasite Immunol 12, 233-246.[Medline]

Capbern, A., Giroud, C., Baltz, T. and Mattern, P (1977). Trypanosoma equiperdum : etude des variation antigeniques au cours de la trypanosomose experimentale du lapin. Exp. Parasitol 42, 6-13.[Medline]

Cross, G. A. M (1996). Antigenic variation in trypanosomes: secrets slowly surface. BioEssays 18, 283-291.[Medline]

Darji, A., Sileghem, M., Heremans, H., Brys, L. and de Baetselier, P (1993). Inhibition of T-cell responsiveness during experimental infections with Trypanosoma brucei : active involvement of endogenous gamma interferon. Infect. Immun 61, 3098-3102.[Abstract/Free Full Text]

Ferrante, A. andAllison, A. C (1983). Alternative pathway activation of complement by African trypanosomes lacking a glycoprotein coat. Parasite Immunol 5, 491-498.[Medline]

Graham, S. V., Matthews, K. R., Shiels, P. G. and Barry, J. D (1990). Distinct, developmental stage-specific activation mechanisms of trypanosome VSG genes. Parasitology 101, 361-367.

Gray, A. R (1965). Antigenic variation in a strain of Trypanosoma brucei transmitted by Glossina morsitans and G. palpalis. J. Gen. Microbiol 41, 195-214.[Medline]

Hajduk, S. L. and Vickerman, K (1981). Antigenic variation in cyclically transmitted Trypanosoma brucei . Variable antigen type composition of the first parasitaemia in mice bitten by trypanosome-infected Glossina morsitans. Parasitology 83, 609-621.

Hertz, C. J., Filutowicz, H. and Mansfield, J. M (1998). Resistance to theAfrican trypanosomes is IFN-dependent. J. Immunol 161, 6775-6783.[Abstract/Free Full Text]

Jackson, D. G., Owen, M. J. and Voorheis, H. P (1985). A new method for the rapid purification of both the membrane-bound and released forms of the variant surface glycoprotein from Trypanosoma brucei. Biochem. J 230, 195-202.[Medline]

Kosinski, R. J (1980). Antigenic variation in trypanosomes: a computer analysis of variant order. Parasitology 80, 343-587.[Medline]

Mabbott, N. A., Sutherland, I. A. and Sternberg, J. M (1995). Suppressor macrophages in Trypanosoma brucei infection: nitric oxide is related to both suppressive activity and lifespan in vivo. Parasite Immunol 17, 143-150.[Medline]

Mabbott, N. A., Coulson, P. S., Smythies, L. E., Wilson, R. A. and Sternberg, J (1998). African trypanosome infections in mice that lack the interferon-gamma receptor gene: nitric oxide dependent and independent suppression of T-cell proliferative responses and the development of anaemia. Immunology 94, 476-480.[Medline]

Macleod, A., Turner, C. M. R. and Tait, A (1999). A high level of mixed T. brucei infections in tsetse flies detected by three hypervariable minisatellites. Mol. Biochem. Parasitol 102, 237-248.

Maudlin, I. and Welburn, S. C (1989). A single trypanosome is sufficient to infect a tsetse fly. Ann. Trop. Med. Parasitol 83, 431-433.[Medline]

Millar, A. E., Sternberg, J., McSharry, C., Wei, X.-Q., Liew, F. Y and Turner, C. M. R (1999). T-cell responses during chronic Trypanosoma brucei infections in mice deficient in inducible nitric oxide synthase. Infect. Immun 67, 3334-3338.[Abstract/Free Full Text]

Miller, E. N. and Turner, M. J (1980). Analysis of antigenic types appearing in first relapse populations of clones of Trypanosoma brucei. Parasitology 82, 63-80.

Moxon, E. R., Rainey, P. B., Nowak, M. A. and Lenski, R. E (1994). Adaptive evolution of highly mutable loci in pathogenic bacteria. Curr. Biol 4, 24-33.[Medline]

Nantulya, V. M (1989). An antigen detection enzyme immunoassay for thediagnosis of rhodesiense sleeping sickness. Parasite Immunol 11, 69-75.[Medline]

Olenick, J. G., Wolff, R.,Nauman, R. K. and McLaughlin, J (1988). A flagellar pocket membrane fraction from Trypanosoma rhodesiense : immunogold localization and nonvariant immunoprotection. Infect. Immun 56, 92-98.[Abstract/Free Full Text]

Pearson, T. W., Liu, M., Gardiner, I. C., Longridge, D., Beecroft, R. P., Sayer, P. D., Gould, S. S., Waitumbi, J. N. and Njogu, A. R (1986). Use of procyclic trypanosomes for detection of antibodies in sera from vervet monkeys infected with Trypanosoma rhodesiense : an immunodiagnostic test for African sleeping sickness. Acta Trop 43, 391-399.[Medline]

Reuner, B., Vasella, E., Yutzy, B. and Boshart, M (1997). Cell density triggers slender to stumpy differentiation of Trypanosoma brucei bloodstream forms in culture. Mol. Biochem. Parasitol 90, 269-280.[Medline]

Roberts, D. J., Craig, A. G., Berendt, A. R., Pinches, R., Nash, G., Marsh, K. and Newbold, C. I (1992). Rapid switching to multiple antigenic and adhesive phenotypes in malaria. Nature 357, 689-692.[Medline]

Schleifer, K. W. and Mansfield, J. M (1993). Suppressor macrophages in African trypanosomiasis inhibit T-cell proliferative responses by nitric oxide and prostaglandins. J. Immunol 151, 5492-5503.[Abstract]

Serkin, C. D. and Seifert, S. H (1998). Frequency of pilin antigenic variation in Neisseria gonorrhoeae. J. Bacteriol 180, 1955-1958.[Abstract/Free Full Text]

Slutsky, B., Buffo, J. and Soll, D. R (1985). High-frequency switching of colony morphology in Candida albicans. Science 230, 666-669.[Abstract/Free Full Text]

Stern, A., Nickel, P., Meyer, T. F. and So, M (1984). Opacity determinants of Neisseria gonorrhoeae : gene expression and chromosomal linkage to the gonococcal pilus gene. Cell 37, 447-456.[Medline]

Stoenner, H. G., Dodd, T. and Larsen, C (1982). Antigenic variation of Borrelia hermsii. J. Exp. Med 156, 1297-1311.[Abstract/Free Full Text]

Turner, C. M. R. andBarry, J. D (1989). High frequency of antigenic variation in Trypanosoma brucei rhodesiense infections. Parasitology 99, 67-75.

Turner, C. M. R., Aslam, N. and Dye, C (1995). Replication, differentiation, growth and the virulence of Trypanosoma brucei infections. Parasitology 111, 289-300.

Turner, C. M. R., Aslam, N. and Angus, S. D (1996). Inhibition of growth of Trypanosoma brucei parasites in chronic infections. Parasitol. Res 82, 61-66.[Medline]

Turner, C. M. R (1997). The rate of antigenic variation in fly-transmitted and syringe-passaged infections of Trypanosoma brucei. FEMS Microbiol. Lett 153, 227-231.[Medline]

Vervoort, T., Berbet, A. F., Musoke, A. J., Magnus, E., Mpimbaza, G. and Van Meirvenne, N (1981). Isotypic surface glycoproteins of trypanosomes. Immunology 44, 223-232.[Medline]

Vickerman, K (1969). On the surface coat and flagellar adhesion in trypanosomes. Cell Sci 5, 163-194.

Vickerman, K (1989). Trypanosome sociology and antigenic variation. Parasitology 99, 37-.

Zhang, J.-R., Harham, J. M., Barbour, A. G. and Norris, S. J (1997). Antigenic variation in Lyme disease Borreliae by promiscuous recombination of VMP-like sequence cassettes. Cell 89, 275-285.[Medline]




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