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[1] Adjogble, K.D., Mercier, C., Dubremetz, J.F., Hucke, C., Mackenzie, C.R., Cesbron-Delauw, M.F., Daubener, W. GRA9, a new Toxoplasma gondii dense granule protein associated with the intravacuolar network of tubular membranes. Int. J. Parasitol. 2004.

34:1255-1264.

[2] Ahn, H.J., Kim, S., Nam, H.W. Host cell binding of GRA10, a novel, constitutively secreted dense granular protein from Toxoplasma gondii. Biochem. Biophys. Res.

Commun. 2005. 331:614-620.

[3] Aubert, D., Maine, G.T., Villena, I., Hunt, J.C., Howard, L., Sheu, M., Brojanac, S., Chovan, L.E., Nowlan, S.F., Pinon, J.M. Recombinant antigens to detect Toxoplasma gondii-specific immunoglobulin G and immunoglobulin M in human sera by Enzyme Immunoassay J. Clin. Microbiol. 2000. 38:1144-1150.

[4] Beghetto, E., Spadoni, A., Bruno, L., Buffolano, W., Gargano, N. Chimeric antigens of Toxoplasma gondii: toward standardization of toxoplasmosis serodiagnosis using recombinant products. J. Clin. Microbiol. 2006. 44:2133-2140.

[5] Biemans, R., Grégoire, D., Haumont, M., Bosseloir, A., Garcia, L., Jacquet, A., Dubeaux, C., Bollen, A. The conformation of purified Toxoplasma gondii SAG1 antigen, secreted from engineered Pichia pastoris, is adequate for serorecognition and cell proliferation. J. Biotechnol. 1998. 66:137-146.

[6] Bitkowska, E., Dzbe ski, T.H. Wykrywanie kr cego antygenu Toxoplasma gondii metod dot – ELISA. Wiad. Parazytol. 1989. 35: 283-242.

[7] Black, M.W., Boothroyd, J.C. Lytic cycle of Toxoplasma gondii.

Microbiol. Mol. Biol. Rev. 2000. 64:607-623.

[8] Bohne, W., Gross, U., Ferguson, D.J., Heesemann, J. Cloninig and characterization of a bradyzoite-specifically expressed gene (hsp30/bag1) of Toxoplasma gondii, related to genes encoding small heat-shock proteins of palnts. Mol. Microbiol. 1995. 16:1221-1230.

[9] Bonhomme, A., Pingret, L., Pinon, J.M. Toxoplasma gondii cellular invasion.

Parassitologia. 1992. 34:31-43.

[10] Bonhomme, A., Maine, G.T., Beorchia, A., Burlet, H., Aubert, D., Villena, I., Hunt, J., Chovan, L., Howard, L., Brojanac, S., Sheu, M., Tyner, J., Pluot, M., Pinon, J.M.

Quantitative immunolocalization of a P29 protein (GRA7), a new antigen of Toxoplasma gondii. J. Histochem. Cytochem. 1998. 46:1411-1422.

[11] Boothroyd, J.C. Population biology of Toxoplasma: clonality, virulence, and speciation (or not). Infect. Agents Dis. 1993. 2:100-102.

[12] Boyer, K.M. Congenital toxoplasmosis: current status of diagnosis, treatment, and prevention. Semin. Pediatr. Infect. Dis. 2000. 11:165-171.

[13] Bradley, P.J., Boothroyd, J.C. The pro region of Toxoplasma ROP1 is a rhoptry-targeting signal. Inter. J. Parasitol. 1999. 31:1177-1186.

[14] Brooks, R.G., McCabe, R.E., Remington, J.S. Role of serology in the diagnosis of toxoplasmosis lymphadenopathy. Rev. Infect. Dis. 1987. 9:1055-1062.

[15] Buffolano, W., Beghetto, E., Del Pezzo, M., Spadoni, A., Di Cristina, M., Petersen, E., Gargano, N. Use of recombinant antigens for early postnatal diagnosis of congenital toxoplasmosis. J. Clin. Microbiol. 2005. 43:5916-5924.

[16] Burg, J.L., Perelman, D., Kasper, L.H,, Ware, P.L., Boothroyd, J.C. Molecular analysis of the gene encoding the major surface antigen of Toxoplasma gondii. J. Immunol.

1988. 141:3584-3591.

[17] Candolfi, E., M. Bessieres, H., Mart, P., Cimon, B., Gandilhon, F., Pelloux, H., Thulliez, P. Determination of a new cut-off value for the diagnosis of congenital toxoplasmosis by detection of specific IgM in an enzyme immunoassay. Eur. J. Clin. Microbiol. Infect. Dis.

1993. 12:396–398.

[18] Caramello, P. Atlas of Medical Parasytology. 2001. Carlo Denegri Foundation, Turino [on-line].

[19] Carruthers, V.B. Armed and dangerous: Toxoplasma gondii uses an arsenal of secretory proteins to infect host cells. Parasitol. Int. 1999. 48:1-10.

[20] Carruthers, V.B., Giddings, O.K., Sibley, L.D. Secretion of micronemal proteins is associated with Toxoplasma invasion of host cell. Cell. Mcrobiol. 1999. 1:225-235.

[21] Carruthers, V.B., Hakansson, S., Giddings, O.K. Sibley, L.D. Toxoplasma gondii uses sulfated proteoglycans for substrate and host cell attachment. Infect. Immun. 2000.

68:4005-4011.

[22] Carruthers, V.B. Host cell invasion by the opportunistic pathogen Toxoplasma gondii.

Acta Trop. 2002. 81:111-122.

[23] Cazenave, J., Forestier, F., Bessieres, M.H., Broussin, B., Begueret, J. Contribution of a new PCR assay to the prenatal diagnosis of congenital toxoplasmosis. Prenat. Diagn.

1992. 2:119-127.

[24] Cesbron-Delauw, M.F., Guy, B., Torpier, G., Pierce, R.J., Lenzen, G., Cesbron, J.Y., Charif, H., Lepage, P., Darcy, F., Lecocq, J.P,, Capron, A.. Molecular characterization of a 23-kilodalton major antigen secreted by Toxoplasma gondii. Proc. Natl. Acad. Sci.

USA. 1989. 86:7537-7541.

[25] Cesbron-Delauw, M.F., Lecordier, R., Mercier, C. Role of secretory dense granule organelles in the pathogenesis of toxoplasmosis. Curr. Top. Microbiol. Immunol. 1996.

219:59-64.

[26] Cox, E.F. Control of coccidiosis: lessons from other sporozoa. Int. J. Parasitol. 1998.

28:165-179.

[27] Cox, E.F. Systematics of the parasitic Protozoa. Trends Parsitol. 2002. 18:108.

[28] Cozon, G.J., Ferrandiz, J., Nebhi, H., Wallon, M., Peyron, F. Estimation of the avidity of immunoglobulin G for routine diagnosis of chronic Toxoplasma gondii infection in pregnant women. Eur. J. Clin. Microbiol. Infect. Dis. 1998. 17:32-36.

[29] Darde, M.L. Genetic analysis of the diversity in Toxoplasma gondii. Ann. Ist. Super Sanità. 2004. 40:57-63.

[30] D browski, S., Kur, J. Cloning, overexpression, and purification of the recombinant His-tagged SSB protein of Escherichia coli and use in polymerase chain reaction amplification. Protein Expr. Purif. 1999. 16:96-102.

[31] Decoster, A,Darcy, F., Caron, A., Vinatier, D., Houze de L'Aulnoit, D., Vittu, G., Niel, G., Heyer, F., Lecolier, B., Delcroix, M. Anti-P30 IgA antibodies as prenatal markers of congenital toxoplasma infection. Clin. Exp. Immunol. 1992. 87:310-314.

[32] Del Bono, V., Canessa, A., Bruzzi, P., Fiorelli, M.A., Terragna, A. Significance of specific immunoglobulin M in the chronological diagnosis of 38 cases toxoplasimc lymphadenopathy. J. Clin. Microbiol. 1989. 27:2133-2135.

[33] D ugo ska, H. Odporno w zara eniach wywo anych przez Toxoplasma gondii. Post.

Hig. Med. Do w. 2000. 54:53-65.

[34] D ugo ska, H. Inwazyjno i wewn trzkomórkowe paso ytnictwo Toxoplasma gondii.

Wiad. Parazytol. 2005. 51:213-217.

[35] D ugo ska, H., Dytnerska, K. Proteom Toxoplasma gondii. Wiad. Parazytol. 2003. 49:3-10.

[36] Dobrowolski, J., Sibley, L.D. The role of the cytoskeleton in host invasion by Toxoplasma gondii. Behring Inst. Mitt. 1997. 99:90-96.

[37] Dytnerska, K., St czek, P., D ugo ska, H. 2004. Toxoplasma gondii - kosmopolityczny paso yt o ma ym zró nicowaniu genetycznym. Post. Mikrobiol. 43:141-154.

[38] Dubey, J.P., Lindsay D.S., Speer, C.A. Structures of Toxoplasma gondii tachyzoites, bradyzoites and sporozoites and biology and development of tissue cysts. Clin.

Microbiol. Rev. 1998. 11:267-299.

[39] Dubremetz, J.F. Host cell invasion by Toxoplasma gondii. Trends Microbiol. 1998. 6:27-30.

[40] Duzovali, O., Choroszy, M.S., Chan, K.W. Hyponatremia as the presenting feature of cerebral toxoplasmosis. Bone Marrow Transplant. 2005. 35:1221-1222.

[41] Dymon, M,. Kempi ska, A,. Ocena przydatno ci bada serologicznych w profilaktyce wrodzonej toksoplazmozy w materia ach zak adu parazytologii CM UJ. Wiad. Parazytol.

2001. 47:59-64.

[42] Dzierszinski, F., Mortuaire, M., Dendouga, N., Popescu, O., Tomavo, S. Differential expression of two plant-like enolases with distinct enzymatic and antigenic properties during stage conversion of the protozoan parasite Toxoplasma gondii. J. Mol. Biol.

2001. 309:1017-1027.

[43] Ferguson, D.J.P., Parmley, S.F. Toxoplasma gondii MAG1 protein expression. Trends Parasitol. 2002. 18:482.

[44] Fischer, H.G., Stachelhaus, S., Sahm, M., Meyer, H.E,, Reichmann, G. GRA7, an excretory 29 kDa Toxoplasma gondii dense granule antigen released by infected host cells. Mol. Biochem. Parasitol. 1998. 91(2): 251-262.

[45] Frankel, J.K. Toxoplasma in and around us. BioScience. 1973. 23:343-352.

[46] Fuentes, I., Rubio, J.M., Ramirez, C., Alvar, J. Genotypic characterization of Toxoplasma gondii strains associated with human toxoplasmosis in Spain: direct analysis from clinical samples. J. Clin. Microbiol. 2001. 39:1566-1570.

[47] Furtado, G.C., Cao, Y., Joiner, K.A. Laminin on Toxoplasma gondii mediates parasite binding to the beta 1 integrin receptor alpha 6 beta 1 on human foreskin fibroblasts and Chinese hamster ovary cells. Infect. Immun. 1992. 60:4925-4931.

[48] Gagne, S.S. Toxoplasmosis. Prim. Care Update Ob. Gyns. 2001. (3): 122-126.

[49] Garcia-Réguet, N., Lebrun, M., Fourmaux, M.N., Mercereau-Puijalon, O., Mann, T., Beckers, C.J.M., Samyn, B., Van Beeumen, J., Bout, D., Dubremetz, J.F. The microneme protein MIC3 of Toxoplasma gondii is a secretory adhesin that binds to both

the surface of the host cell and the surface of the parasite. Cell. Microbiol. 2000. 2:353-364.

[50] Gazzinelli, R.T., Hakim, F.T., Hieny, S., Shearer, G.M., Sher, A. Synergistic role of CD4+ and CD8+ T lymphocytes in IFN-gamma production and protective immunity induced by an attenuated Toxoplasma gondii vaccine. J. Immunol. 1991. 46:286-292.

[51] Gilbert, R., Dunn, D., Wallon, M., Hayde, M., Prusa, A., Lebech, M., Kortbeek, T., Peyron, F., Pollak, A., Petersen, E. Ecological comparison of the risks of mother-to-child transmission and clinical manifestations of congenital toxoplasmosis according to prenatal treatment protocol. Epidemiol. Infect. 2001. 127:113-120.

[52] Goldman, M. Staining Toxoplasma gondii with fluorescein-labelled antibody. II. A new serologic test for antibodies to Toxoplasma based upon inhibition of specific staining. J.

Exp. Med. 1957. 105:557-573.

[53] Golkar, M., Rafati, S., Abdel-Latif, MS., Brenier-Pinchart, M.P., Fricker-Hidalgo, H., Sima, B.K., Babaie, J., Pelloux, H., Cesbron-Delauw, M.F., Mercier, C. The dense granule protein GRA2, a new marker for the serodiagnosis of acute Toxoplasma infection: comparison of sera collected in both France and Iran from pregnant women.

Diagn. Microbiol. Infect. Dis. 2007. May 15.

[54] Grigg, M.E., Bonnefoy, S., Hehl, A.B., Suzuki, Y., Boothroyd, J.C. Success and virulence in Toxoplasma as the result of sexual recombination between two distinct ancestries. Science. 2001. 294:161-165.

[55] Grimwood, J., Smith, J.E. Toxoplasma gondii: the role of a 30-kDa surface protein in host cell invasion. Exp. Parasitol. 1992. 74:106-111.

[56] Harning, D., Spenter, J., Metsis, A., Vuust, J., Petersen, E. Recombinant Toxoplasma gondii surface antigen 1 (P30) expressed in Escherichia coli is recognized by human Toxoplasma-specific immunoglobulin M (IgM) and IgG antibodies. Clin. Diagn. Lab.

Immunol. 1996. 3:355-357.

[57] Hassan, M., Mansour, S., Atta, M., Schalaby, M., Seksaka, M., Awad, A. The importance of detecting circulating Toxoplasma antigens in human cases. J. Egyp. Soc.

Parasitol. 1997. 27:27-34.

[58] Herbrink, P., van Loon, A.M., Rotmans, J.P., van Knapen, F., van Dijk, W.C.

Interlaboratory evaluation of indirect enzyme-linked immunosorbent assay, antibody capture enzyme-linked immunosorbent assay, and immunoblotting for detection of immunoglobulin M antibodies to Toxoplasma gondii. J. Clin. Mirobiol. 1987. 25:100-105.

[59] Hedman, K., Lappalainen, M., Seppaia, I., Makela, O. Recent primary toxoplasma infection indicated by a low avidity of specific IgG. J. Infect. Dis. 1989. 159:736-40.

[60] Herwaldt, B.L. Laboratory – acquired parasitic infection from accidental exposures. Clin.

Microbiol. Rev. 2001. 14:659-699.

[61] Hiszczy ska-Sawicka, E., Brillowska-D browska, A., D browski, S., Pietkiewicz, H., Myjak, P., Kur, J. High yield expression and single-step purification of Toxoplasma gondii SAG1, GRA1, and GRA7 antigens in Escherichia coli. Protein Expr. Purif. 2003.

27:150-157.

[62] Hiszczy ska-Sawicka E., Kur J., Pietkiewicz H., Holec L., G sior A., Myjak P. Efficient production of the Toxoplasma gondii GRA6, p35 and SAG2 recombinant antigens and their applications in the serodiagnosis of toxoplasmosis. Acta Parasitol. 2005. 50:249-254.

[63] Hohlfeld, P., Daffos, F., Costa, J.M., Thuillez, P.H., Forestier, F., Vidaud, M. Prenatal diagnosis of congenital toxoplasmosis with a polymerase-chain reaction test on amniotic fluid. New Engl. J. Med. 1994. 331:695–699.

[64] Holec, L., Hiszczy ska-Sawicka, E., G sior, A., Brillowska-D browska, A., Kur, J. Use of MAG1 recombinant antigen for detection of Toxoplasma gondii infection in humans.

Clin. Vac. Immunol. 2007. 14:220-225.

[65] Holpert, M., Luder, C.G., Gross, U., Bohne, W. Bradyzoite specific expression of a P-type ATPase in Toxoplasma gondii. Mol. Biochem. Parasitol. 2001. 112:293-296.

[66] Holtkamp, M., Okuducu, A.F., Klingebiel, R., Ploner, C.J. Cerebral toxoplasmosis in a patient with common variable immunodeficiency. Neurology. 2004. 63:2192-2193.

[67] Howe, D.K., Sibley, L.D. Toxplasma gondii comprises three clonal lineages: correlation of parasite genotype with human disease. J. Infect. Dis. 1995. 172:1561-1566.

[68] Inouye, S., Hasegawa, A., Matsuno, S., Katow, S. Changes in antibody avidity after virus infections: detection by an immunosorbent assay in which a mild protein-denaturing agent is employed. J. Clin. Microbiol. 1984. 20:525-529.

[69] Jacobs, D., Dubremetz, J.F., Loyens, A., Bosman, F., Saman, E. Identification and heterologous expression of a new dense granule protein (GRA7) from Toxoplasma gondii. Mol. Biochem. Parasitol. 1998. 91:237-249.

[70] Jacobs, D., Vercammen, M., Saman, E. Evaluation of recombinant dense granule antigen 7 (GRA7) of Toxoplasma gondii for detection of immunoglobulin G antibodies and analysis of a major antigenic domain. Clin. Diagn. Lab. Immunol. 1999. 6:24-29.

[71] Johnson, A.M. i Illana, S. Cloning of Toxoplasma gondii gene fragments encoding diagnostic antigens. Gene. 1991. 99: 127-132.

[72] Kieschnick, H., Wakefield, T., Narducci, C.A., Beckers, C. Toxoplasma gondii attachment to host cells is regulated by a calmodulin-like domain protein kinase. J. Biol.

Chem. 2001. 276:12369-12377.

[73] Kmie , K., Wo niakowska-G sicka, T., Andrzejewski, A. Toksoplazmoza nabyta. Klin.

Pediat. 2003. 12:450-455.

[74] Knapp, S., Zlegelmaler, R., Küpper, H. Toxoplasma gondii antigens, their production and application. 1991. Patent Europejski 0431541A2.

[75] Knoll, L.J., Boothroyd, J.C. Isolation of developmentally regulated genes from Toxoplasma gondii by a gene trap with the positive and negative selectable marker hypoxantine-xantine-guanine phosphororibosyltransferase. Mol. Cell Biol. 1998. 18:807-814.

[76] Kruszewski, J., Miller, A. Toksoplazmoza. Alergia. 2004. 30-37.

[77] Labruyère, E., Lingnau, M., Mercie, C., Sibley, L.D. Differential membrane targeting of the secretory proteins GRA4 and GRA6 within the parasitophorous vacuole formed by Toxoplasma gondii. Mol. Biochem. Parasitol. 1999. 102:311-324.

[78] Laemmli, U.K. Cleavage of structural proteins during the assembly of the head of bacteriphage T4. Nature. 1970. 227(5259):680-685.

[79] Lebech, M., Andersen, O., Christensen, N.C., Hertel, J., Nielsen, H.E., Peitersen, B., Rechnitzer, C., Larsen, S.O., Norgaard-Pedersen, B., Petersen, E. Feasibility of neonatal screening for Toxoplasma infection in the absence of prenatal treatment.

Lancet. 1999. 353:1834-1837.

[80] Lecordier, L., Moleon-Borodowsky, I., Dubremetz, J.F., Tourvieille, B., Mercier, C., Deslée, D., Capron, A., Cesbron-Delauw, M.F. Characterization of a dense granule antigen of Toxoplasma gondii (GRA6) associated to the network of the parasitophorous vacuole. Mol. Biochem. Parasitol. 1995. 70:85-94.

[81] Lecordier L., Mercier C., Sibley L.D., Cesborn-Delauw M.F. Transmembrane insertion of the Toxoplasma gondii GRA5 protein occurs after soluble secretion into the host cell.

Mol. Biol. Cell. 1999. 10:1277-1287.

[82] Lekutis, C., Ferguson, D.J., Boothroyd, J.C. Toxoplasma gondii: identification of a developmentally regulated family of genes related to SAG2. Exp. Parasitol. 2000. 96:

89-96.

[83] Lekutis, C., Ferguson, D.J.P., Grigg, M.E., Camps, M., Boothroyd, J.C. Surface antigens of Toxoplasma gondii: variations of a theme. Inter. J. Parasitol. 2001. 31:1285-1292.

[84] Li, S., Galvan, G., Araujo, F.G., Suzuki, Y., Remington, J.S., Parmley, S. Serodiagnosis of recently acquired Toxoplasma gondii infection using an enzyme-linked immunosorbent assay with a combination of recombinant antigens. Clin. Diagn. Lab.

Immunol. 2000. 7:781-787.

[85] Lipka, B., Milewska-Bobula, B. Toksoplazmoza wrodzona. Pediat. Pol. 2001. 76:79-84.

[86] Lourenco, E.V., Pereira, S.R., Faca, V.M., Coelho-Castelo, A.A., Mineo, J.R., Roque-Barreira, M.C., Greene, L.J., Panunto-Castelo, A. Toxoplasma gondii micronemal protein MIC1 is a lactose-binding lectin. Glycobiology. 2001. 11:541-547.

[87] Lovett, J.L., Marchesini, N., Moreno, S.N., Sibley, L.D. Toxoplasma gondii microneme secretion involves intracellular Ca2+ release form inositol 1,4,5-triphosphate (IP3)/ryanodine-sensitive stores. J. Biol. Chem. 2002. 277:25870-25876.

[88] Lyons, R.E., McLeod, R., Roberts, C.W. Toxoplasma gondii tachyzoite-bradyzoite interconversion. Trends Parasitol. 2002. 18:198-201.

[89] Manger, I.D., Hehl, A.B., Boothroyd, J.C. The surface of Toxoplasma tachyzoites is dominated by a family of glycosylphosphatidylinositol-anchored antigens related to SAG1. Infect. Immun. 1998. 66:2237-2244.

[90] Martin, V., Arcavi, M., Santillan, G., Amendoeira, M.R.R., De Souza Neves, E., Griemberg, G., Guarnera, E., Garberi, J.C., Angel, S.O. Detection of human Toxoplasma - specific antigenic immunoglobulins A, M, and G with a recombinant Toxoplasma gondii ROP2 protein. Clin. Diagn. Lab. Immunol. 1998. 5:627-631.

[91] Mercier, C., Cesbron-Delauw, M.F., Sibley, L.D. The amphipathic alpha helices of the Toxoplasma protein GRA2 mediate post-secretory membrane association. J. Cell Science. 1998. 111:2171-2180.

[92] Meissner, M., Reiss, M., Viebig, N., Carruthers, V.B., Toursel, C., Tomavo, S., Ajioka, J.W., Soldati, D. A family of transmembrane microneme proteins of Toxoplasma gondii contain EGF-like domains and function as escorters. J. Cell Science. 2001. 115:563-574.

[93] Mevelec, M.N., Chardes, T., Mercereau-Puijalon, O., Bourguin, I., Achbarou, A., Dubremetz, J.F., Bout, D. Molecular cloning of GRA4, a Toxoplasma gondii dense granule protein recognized by mucosal IgA antibodies. Mol. Biochem. Parasitol. 1992.

56:227-238.

[94] Montoya, J.G., Liesenfeld, O. Toxoplasmosis. Lancet. 2004. 363:1965-1976.

[95] Murray, A., Mercier, C., Decoster, L., Lecordier, A., Capron, A., Cesbron-Delauw, M.F.

Muliple B-cell epitopes in a recombinant GRA2 secreted antigen of Toxoplasma godnii.

Appl. Parasitol. 1993. 34:235-244.

[96] Niewiadomska, K., Pojma ska, T., Machnicka, B., Czubaj, A. Zarys parazytologii ogólnej. Wyd. Naukowe PWN Warszawa, 2001.

[97] Nockemann, S.H., D ugo ska, H., Henrich, B., Kitzerow, A., Daubener, W. Expression, characterization and serological reactivity of a 41 kDa excreted-secreted (ESA) from Toxoplasma godnii. Mol. Biochem. Parasitol. 1998. 97:109-121.

[98] Ossorio, P.N., Achwartzman, J.D., Boothroyd, J.C. A Toxoplasma gondii rhoptry protein associated with host cell penetration has unusual charge asymmetry. Mol. Biochem.

Parasitol. 1992. 50:1-16.

[99] Ödberg-Ferragut, C., Soete, M., Engels, A., Samyn, B., Loyens, A., Beeumen, J.V., Camus, D., Dubremetz, J.F. Molecular cloning of the Toxoplasma gondii sag4 gene encoding an 18 kDa badyzoite specific surface protein. Mol. Biochem. Parasitol. 1996.

82:237-244.

[100] Parmley, S.F., Sgarlato, G.D., Mark, J., Prince, J.B., Remington, J.S. Expression, characterization, and serologic reactivity of recombinant surface antigen P22 of Toxoplasma gondii. J. Clin. Microbiol. 1992. 30:1127-1133.

[101] Parmley, S. F., Yang, S., Harth, G., Sibley, L.D., Sucharczuk, A., Remington, J.S.

Molecular characterization of a 65-kilodalton Toxoplasma gondii antigen expressed abundantly in the matrix of tissue cysts. Mol. Biochem. Parasitol. 1994. 66:283-296.

[102] Parmley, S.F., Weiss, L.M., Yang, S. Cloning of bradyzoite-specific gene of Toxoplasma gondii encoding a cytoplasmic antigen. Mol. Biochem. Parasitol. 1995. 73:253-257.

[103] Pfrepper, K.I., Anders, G., Gohl, M., Krczal, D., Hlobil, H., Wassenberg, D., Soutschek, E. Seroreactivity to and avidity for recombinant antigens in toxoplasmosis. Clin. Diagn.

Lab. Immunol. 2005. 12:977-982.

[104] Pietkiewicz H., Hiszczy ska-Sawicka E., Kur J., Petersen E., Nielsen H.V., Stankiewicz M., Andrzejewska I., Myjak P. Usefulness of Toxoplasma gondii-specific recombinant antigens in serodiagnosis of human toxoplasmosis. J. Clin. Microb. 2004. 42:1779-1781.

[105] Pinard, J.A., Leslie, N.S., Irvine, P.J. Maternal serologic screening for toxoplasmosis. J.

Midwifery Womens Health. 2003. 48:308-316.

[106] Pinon, J.M., Toubas, D., Marx, C., Mougeot, G., Bonnin, A., Bonhomme, A., Villaume, M., Foudrinier, F., Lepan, H. Detection of specific immunoglobulin E in patients with toxoplasmosis. J. Clin. Microbiol. 1990. 28:1739-1743.

[107] Pinon, J. M., Dumon, H., Chemla, C., Franck, J., Petersen, E., Lebech, M., Zufferey, J., Bessieres, M.H., Marty, P., Holiman, R., Johnson, J., Luyasu, V., Lecolier, B., Guy, E., Joynson D.H., Decoster, A., Enders, G., Pelloux, H., Candolfi, E. Strategy for diagnosis of congenital toxoplasmosis: evaluation of methods comparing mothers and newborns and standard methods for postnatal detection of immunoglobulin G, M, and A antibodies. J. Clin. Microbiol. 2001. 39:2267-2271.

[108] Prince, J.B., Araujo, F.G., Remington, J.S., Burg, J.L., Boothroyd, J.C., Sharma, S.D.

Cloning of cDNAs encoding a 28 kDa antigen of Toxoplasma gondii. Mol. Biochem.

Parasitol. 1989. 34:3-14.

[109] Prince, J.B., Auer, K.L., Huskinson, J., Parmley, S.F., Araujo, F.G., Remington, J.S.

Cloning, expression, and cDNA sequence of surface antigen P22 from Toxoplasma gondii. Mol. Biochem. Parasitol. 1990. 43:97-106.

[110] Redlich, A., Müller, W.A. Serodiagnosis of acute toxoplasmosis using a recombinant from of the dense granule antigen GRA6 in a enzyme-linked immunosorbent assay.

Parasitol. Res. 1998. 84:700-706.

[111] Reichman, G., D ugo ska, H., Hiszczy ska-Sawicka, E., Fischer, H.G. Tachyzoite-specific isoform of Toxoplasma gondii lactate dehydrogenase is the target antigen of a murine CD4+ T-cell clone. Microb. Infect. 2001. 3:779-787.

[112] Roitt, I., Brostoff, J., Male, D. Immunologia. Wyd. Lekarskie PZWL, Warszawa i Wyd.

Medyczne S owi ski Verlag, Brema. 2000.

[113] Saavedra, R., De Meuter, F., Decourt, J.L., Hérion, P. Human T cell clone identified a potentially protective 54 kDa protein antigen of Toxoplasma godnii cloned and expression in Escherichia coli. J. Immunol. 1991. 147:1975-1982.

[114] Sabin, A.B., Feldman, H.A. Dyes as microchemical indicators of a new immunity phenomenon affecting a protozoan parasite (Toxoplasma). Science. 1948. 108:660-663.

[115] Saffer, L.D., Mercereau-Puijalon, O., Dubremetz, J.F., Schwartzman, J.D. Localization of a Toxoplasma gondii rhoptry protein by immunoelectron microscopy during and after host cell penetration. J. Protozool. 1992. 39:526-530.

[116] Sam-Yellowe, T.Y. Rhoptry organelles of the Apicomplexa: their role in host cell invasion and intracellular survival. Parisitol. Today. 1996. 12:308-316.

[117] Sambrook, J., Manniatis, T., Fritsch, E.F. Molecular Cloning. A Laboratory Manual.

Manniatis T and Sambrook Editors. Cold Spring Harbor Laboratory Press Edit Second Edition. New York: 1989.

[118] Saouros, S., Edwards-Jones, B., Reiss, M., Sawmynaden, K., Cota, E., Simpson, P., Dowse, T.J., Jäkle, U., Ramboarina, S., Shivarattan, T., Matthews, S., Soldati-Favre, D.

A novel galection-like domain from Toxoplasma gondii micronemal protein 1 assists the folding, assembly, and transport of cell adhesion complex. J. Biol. Chem. 2005.

280:38583-38591.

[119] Schnyder, C.C. Toxoplasmosis and ocular pathology. Schweiz. Med. Wochenschr.

Suppl. 1995. 65:82-88.

[120] Sensini, A., Pascoli, S., Marchetti, D., Castronari, R., Marangi, M., Sbaraglia, G., Cimmino, C., Favero, A., Castelletto, M., Mottola, A. IgG avidity in the serodiagnosis of acute Toxoplasma gondii infection, a multicenter study. Clin. Microbiol. Infect. 1996.

2:25-29.

[121] Sibley, L.D., Boothroyd, J.C. Virulent strains of Toxoplasma gondii comparise a single clonal line-age. Nature. 1992. 359:82-85.

[122] Sobieszcza ska, B.M. Ocena przydatno ci badania awidno ci przeciecia klasy G w serodiagnostyce toksoplazmozy. Pol. Merk. Lek. 2002. XIII,111-115.

[123] Soldati, D., Kim, K., Kampmeier, J., Dubremetz, J.F., Boothroyd, J.C. Complementation of a Toxoplasma gondii ROP1 knock-out mutant using phleomycin selection. Mol.

Biochem. Parasitol. 1995. 74:87-97.

[124] Soldati, D., Lassen, A., Dubremetz, J.F., Boothroyd, J.C. Processing of Toxoplasma ROP1 protein in nascent rhoptries. Mol. Biochem. Parasitol. 1998. 96:37-48.

[125] Speer, C.A., Clarke, S., Dubey, J.P. Ultrastructure of the oocysts, sporocysts and sporozoites of the VEG strain of Toxoplasma gondii. J. Parasitol. 1998. 84:505-512.

[126] Steward, M.W., Lew, A.M. The importance of antibody affinity in the performance of immunoassays for antibody. J. Immunol. Methods. 1985. 78:173-190.

[127] Stray-Pedersen, B. Toxoplasmosis in pregnancy. Baillieres Clin. Obstet. Gynaecol.

1993. 7:107-137.

[128] Suzuki, L.A., Rocha, R.J., Rossi, C.L. Evaluation of serological markers for the immunodiagnosis of acute acquired toxoplasmosis. J. Med. Microbiol. 2001. 50:62-70.

[129] piewak, E., Ma afiej, E. 1996. Toksoplazmoza – wybrane zagadnienia epidemiologii, kliniki i diagnostyki. Mikrob. Med. 1: 14-28.

[130] Tenter, A.M., Johnson, A.M. Recognition of recombinant Toxoplasma gondii antigens by human sera in an ELISA. Parasitol. Res. 1991. 77:197-203.

[131] Tenter, A.M., Heckeroth, A.R., Weiss, L.M. Toxoplasma gondii: from animals to humans.

Int. J. Parasitol. 2000. 30:1217-1258.

[132] Tomavo, S. The differential expression of multiple isoenzyme forms during stage conversion of Toxoplasma gondii: an adaptive developmental strategy. Int. J. Parasitol.

2001. 31:1023-1031.

[133] Tomley, F.M., Soldati, D.S. Mix and match modules: structure and function of microneme proteins in apicomplexan parasites. Trends Parasitol. 2001. 17:81-88.

[134] Vallochi, A.L., Nakamura, M.V., Schlesinger, D., Martins, M.C., Silveira, C., Belfort, R., Rizzo, L.V. Ocular toxoplasmosis: more than just what meets the eye. Scand. J.

Immunol. 2002. 55:324-328.

[135] Van Gelder, V., Bosman, F., De Meuter, F., Van Heuverswyn, H., Hérion, P.

Serodiagnosis of toxoplasmosis by using a recombinant from of the 54-kilodalton rhoptry antigen expressed in Escherichia coli. J. Clin. Microbiol. 1993. 31:9-15.

[136] Wilson, R.J., Williamson, D.H. Extrachromosomal DNA in the Apicomplexa. Microbiol.

Mol. Biol. Rev. 1997. 61:1-16.

[137] Wong, S.Y., Hajdu, M.P., Ramirez, R., Thulliez, P., McLeod, R., Remington, J.S. Role of specific immunoglobulin E in diagnosis of acute Toxoplasma infection and toxoplasmosis. J. Clin. Microbiol. 1993. 31:2952-2959.

[138] Yang, S., Parmley, S.F. A bradyzoite stage-specifically expressed gene of Toxoplasma gondii encodes a polypeptide homologous to lactate dehydrogenase. Mol. Biochem.

Parasitol. 1995. 73:291-294.

[139] Yang, S., Parmley, S.F. Toxoplasma gondii expresses two distinct lactate dehydrogenase homologous genes during its life cycle in intermediate hosts. Gene.

1997. 184:1-12.

[140] Zhang, Y.W., Kim, K., Ma, Y.F., Wittner, M., Tanowitz, H.B., Weiss, L.M. Disruption of the Toxoplasma gondii bradyzoite-specific gene BAG1 decreases in vivo cyst formation.

Mol. Microbiol. 1999. 31:691-701.

[141] Zhang, Y.W., Halonen, S.K., Ma, Y.F., Wittner, M., Weiss, L.M. Initial characterization of CST1, a Toxoplasma gondii cyst wall glycoprotein. Infect. Immun. 2001. 69:501-507.

[142] Zinecker, C.F., Striepen, B., Tomavo, S., Dubremetz, J.F., Schwarz, R.T. The dense granule antigen, GRA2 of Toxoplasma gondii is a glycoprotein containing O-linked oligosaccharides. Mol. Biochem. Parasitol. 1998. 97:241-246.