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Toxocara canis

Toxocara canis Dog roundworm disease, visceral larva migrans... [Pg.517]

Fig. 9.1. Transmission electron micrographs of parasitic nematode cuticles in transverse section. The structurally distinct layers and the underlying hypodermal syncytia are indicated. Nematodes depicted are the infective larval stage of the canid parasite Toxocara canis and the fourth larval stage of the human filarial parasite Brugia malayi. Fig. 9.1. Transmission electron micrographs of parasitic nematode cuticles in transverse section. The structurally distinct layers and the underlying hypodermal syncytia are indicated. Nematodes depicted are the infective larval stage of the canid parasite Toxocara canis and the fourth larval stage of the human filarial parasite Brugia malayi.
Badley, J.E., Grieve, R.B., Bowman, D.D., Glickman, L.T. and Rockey,J.H. (1987) Analysis of Toxocara canis larval excretory-secretory antigens physicochemical characterization and antibody recognition. Journal of Parasitology 73, 593-600. [Pg.251]

Burke, T.M. and Roberson, E.L. (1985) Prenatal and lactational transmission of Toxocara canis and Ancylostoma caninum experimental infection of the bitch before pregnancy. InternationalJournal for Parasitology 15, 71—75. [Pg.251]

Falcone, F., Tetteh, K.K.A., Hunt, P., Blaxter, M.L., Loukas, A.C. and Maizels, R.M. (2000) The new subfamily of cathepsin Z-like protease genes includes Tc-cpz-1, a cysteine protease gene expressed in Toxocara canis adults and infective larvae. Experimental Parasitology 94, 201-203. [Pg.251]

Fattah, D.I., Maizels, R.M., McLaren, D.J. and Spry, C.J.F. (1986) Toxocara canis interaction of human eosinophils with infective larvae in vitro. Experimental Parasitology 61, 421-433. [Pg.251]

Gems, D.H. and Maizels, R.M. (1996) An abundantly expressed mucin-like protein from Toxocara canis infective larvae the precursor of the larval surface coat glycoproteins. Proceedings of the National Academy of Sciences USA 93,1665-1670. [Pg.251]

Kennedy, M.K., Maizels, R.M., Meghji, M., Young, L., Qureshi, F. and Smith, H.V. (1987) Species-specific and common epitopes on the secreted and surface antigens of Toxocara cati and Toxocara canis infective larvae. Parasite Immunology 9, 407-420. [Pg.252]

Khoo, K-H., Morris, H.R. and Dell, A. (1993) Structural characterisation of the major glycans of Toxocara canis ES antigens. In Lewis, J. and Maizels, R.M. (eds) Toxocara and Toxocariasis Clinical, Epidemiological and Molecular Perspectives. Institute of Biology, London, pp. 133-140. [Pg.252]

Loukas, A., Selzer, P.M. and Maizels, R.M. (1998) Characterisation of Tc-cpl-1, a cathepsin L-like cysteine protease from Toxocara canis infective larvae. Molecular and Biochemical Parasitology 92, 275—289. [Pg.252]

Loukas, A.C., Doedens, A., Hintz, M. and Maizels, R.M. (2000) Identification of a new C-type lectin, TES-70, secreted by infective larvae of Toxocara canis, which binds to host endothelial cells. Parasitology (in press). [Pg.252]

Maizels, R.M. and Page, A.P. (1990) Surface associated glycoproteins from Toxocara canis L2 parasites. Acta Tropica 47, 355-364. [Pg.253]

Maizels, R.M. and Robertson, B.D. (1991) Toxocara canis. secreted glycoconjugate antigens in immunobiology and immunodiagnosis. In Kennedy, M. (ed.) Parasitic Nematodes - Antigens, Membranes and Genes. Taylor and Francis Ltd, London, pp. 95-115. [Pg.253]

Maizels, R.M., de Savigny, D. and Ogilvie, B.M. (1984) Characterization of surface and excretory-secretory antigens of Toxocara canis infective larvae. Parasite Immunology 6, 23-37. [Pg.253]

Maizels, R.M., Tetteh, KK.A. and Loukas, A.C. (2000) Toxocara canis genes expressed by the arrested infective larval stage of a parasitic nematode. InternationalJournal of Parasitology 30, 495-508. [Pg.253]

Page, A.P. and Maizels, R.M. (1992) Biosynthesis and glycosylation of serine/ threonine-rich secreted proteins from Toxocara canis larvae. Parasitology 105, 297-308. [Pg.253]

Scothorn, M.W., Koutz, F.R. and Groves, H.F. (1965) Prenatal Toxocara canis infection in pups. Journal of the American Veterinary Medical Association 146, 45-48. [Pg.254]

Smith, H.V., Quinn, R., Kusel, J.R. and Girdwood, R.W.A. (1981) The effect of temperature and antimetabolites on antibody binding to the outer surface of second stage Toxocara canis larvae. Molecular and Biochemical Parasitology 4, 183-193. [Pg.254]

Sugane, K and Oshima, T. (1983) Purification and characterization of excretory and secretory antigen of Toxocara canis larvae. Immunology 50, 113-120. [Pg.254]

Warren, E.G. (1969) Infections of Toxocara canis in dogs fed infected mouse tissues. [Pg.254]

Kennedy, M.W., Qureshi, F., Fraser, E.M., Haswell-Elkins, M.R., Elkins, D.B. and Smith, H.V. (1989) Antigenic relationships between the surface-exposed, secreted and somatic materials of the nematode parasites Ascaris lumbricoides, Ascaris suum and Toxocara canis. Clinical and Experimental Immunology 75, 493-500. [Pg.311]

Christie, J.F., Dunbar, B. and Kennedy, M.W. (1993) The ABA-1 allergen of the nematode Ascaris suum. epitope stability, mass spectrometry, and N-terminal sequence comparison with its homologue in Toxocara canis. Clinical and Experimental Immunology 92, 125-132. [Pg.333]


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Canis

Toxocara

Toxocara cani

Toxocara cani

Toxocara canis antigens

Toxocara canis surface antigens

Toxocara canis surface glycoproteins

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