Hostname: page-component-7479d7b7d-pfhbr Total loading time: 0 Render date: 2024-07-09T11:24:54.695Z Has data issue: false hasContentIssue false

Detection of gastrointestinal helminth infections using coproantigen and molecular diagnostic approaches

Published online by Cambridge University Press:  05 June 2009

A. Fraser
Affiliation:
Department of Biological Sciences, University of Salford, Salford, M5 4WT, UK
P.S. Craig
Affiliation:
Department of Biological Sciences, University of Salford, Salford, M5 4WT, UK

Extract

Intestinal helminth parasites are responsible for a significant amount of pathology in both humans and farmed animals, resulting in a reduction in the quality of life, and occasionally lethal infection as well as causing decreases in livestock productivity. The importance of these parasites globally has resulted in efforts to understand the mechanisms of the host–parasite interaction epidemiology, and to develop methods for diagnosis and control.

Type
Symposium Papers
Copyright
Copyright © Cambridge University Press 1997

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Allan, J. C. & Craig, P. S. (1989) Coproantigens in gut tapeworm infections; Hymenolepis diminuta in rats. Parasitology Research 76, 6873.CrossRefGoogle ScholarPubMed
Allan, J. C. & Craig, P. S. (1994) Partial characterisation and time course analysis of Hymenolepis diminuta coproantigens. Journal of Helminthology 68, 97103.CrossRefGoogle ScholarPubMed
Allan, J. C., Avila, G., Garcia-Noval, J., Flisser, A. & Craig, P. S. (1990) Immunodiagnosis of taeniasis by coproantigen detection. Parasitology 101, 473477.CrossRefGoogle ScholarPubMed
Allan, J. C., Craig, P. S., Garcia-Noval, J., Mencos, F., Liu, D., Wang, Y., Wen, H., Zhou, P., Stringer, R., Rogan, M. & Zeyhle, E. (1992) Coproantigen detection for immunodiagnosis of echinococcosis and taeniasis in dogs and humans. Parasitology 104, 347355.CrossRefGoogle ScholarPubMed
Allan, J. C., Mencos, F., Garcia-Noval, J., Sarti, E., Flisser, A., Wang, Y., Liu, D. & Craig, P. S. (1993) Dipstick dot ELISA for the detection of Taenia coproantigens in humans. Parasitology 107, 7985.CrossRefGoogle ScholarPubMed
Allan, J. C., Velasquez-Tohom, M., Torres-Alvarez, R., Yurrita, P. & Garcia-Noval, J. (1996) Field trial of the coproantigen-based diagnosis of Taenia solium taeniasis by enzyme-linked immunosorbent assay. American Journal of Tropical Medicine and Hygiene 54, 352356.CrossRefGoogle ScholarPubMed
Babos, S. & Nemeth, I. (1962) Az echinococcis szerodiagnosztikajanak kederesehez. Magyar Allatorvosok Lapja 17, 5860.Google Scholar
Baily, G. G. (1996) Cysticercosis. pp. 15091516 in Saunders, (Ed.) Manson's tropical diseases. 20th edn., London.Google Scholar
Baumann, D. & Gottstein, B. (1987) A double-antibody sandwich ELISA for the detection of Entamoeba histolytica antigen in stool samples of humans. Tropical and Medical Parasitology 38, 8185.Google ScholarPubMed
Bretagne, S., Guillou, J. P., Morand, M. & Houin, R. (1993) Detection of Echinococcus multilocularis DNA in fox faeces using DNA amplification. Parasitology 106, 193199.CrossRefGoogle ScholarPubMed
Chaicumpa, W., Ybanez, L., Kitikoon, V., Pungpak, S., Ruangkunaporn, Y., Chongsa-Nguan, M. & Sornmani, S. (1992) Detection of Opisthorchis viverrini antigens in stools using specific monoclonal antibody. International Journal for Parasitology 22, 527531.CrossRefGoogle ScholarPubMed
Chapman, A., Vallejo, V., Mossie, K. G., Ortiz, D., Agabian, N. & Flisser, A. (1995) Isolation and characterisation of species-specific DNA probes from Taenia solium and Taenia saginata and their use in an egg detection assay. Journal of Clinical Microbiology 33, 12831288.CrossRefGoogle Scholar
Craig, P. S., Macpherson, C. N. L. & Nelson, G. S. (1986) The identification of eggs of Echinococcus by immunofluorescence using a specific anti-oncospheral monoclonal antibody. American Journal of Tropical Medicine and Hygiene 35, 152158.CrossRefGoogle ScholarPubMed
Craig, P. S., Gasser, R. B., Parada, L., Cabrera, P., Parietti, S., Borgues, C., Acuttis, A., Agulla, J., Snowden, K. & Paolillo, E. (1995) Diagnosis of canine echinococcosis: comparison of coproantigen and serum antibody tests with arecoline purgation in Uruguay. Veterinary Parasitology 56, 293301.CrossRefGoogle ScholarPubMed
Denham, D. A. & Suswillo, R. R. (1995) Diagnosis of intestinal helminth infections. pp. 253265 in Gillespie, S. H. & Hawkey, P. M. (Eds) Medical parasitology: a practical approach. Oxford, IRL Press.CrossRefGoogle Scholar
Deplazes, P., Eckert, J., Pawlowski, Z. S., Machowska, L. & Gottstein, B. (1991) An enzyme-linked immunosorbent assay for diagnostic detection of Taenia saginata coproantigens in humans. Transactions of the Royal Society of Tropical Medicine and Hygiene 85, 391396.CrossRefGoogle ScholarPubMed
Deplazes, P., Gottstein, B., Stingelin, Y. & Eckert, J. (1990) Detection of Taenia hydatigena coproantigens by ELISA in dogs. Veterinary Parasitology 36, 91103.CrossRefGoogle ScholarPubMed
Deplazes, P., Gottstein, B., Eckert, J., Jenkins, D. J., Ewald, D. & Jimenez-Palacios, S. (1992) Detection of Echinococcus coproantigens by enzyme-linked immunosorbent assay in dogs, dingoes and foxes. Parasitology Research 78, 303308.CrossRefGoogle ScholarPubMed
Dumenigo, B. E., Espino, A. M. & Finlay, C. M. (1996) Detection of Fasciola hepatica antigen in cattle faeces by a monoclonal antibody-based sandwich immunoassay. Research in Veterinary Science 60, 278279.CrossRefGoogle ScholarPubMed
Ellis, T. M., Tumor, G. R., Kalkhoven, M. & Wroth, R. H. (1993) Detection of Haemonchus contortus surface antigen in faeces from infected sheep. Veterinary Parasitology 51, 8597.CrossRefGoogle ScholarPubMed
Espino, A. M. & Finlay, C. M. (1994) Sandwich enzyme-linked immunosorbent assay for detection of excretory/secretory antigens in humans with fascioliasis. Journal of Clinical Microbiology 32, 190193.CrossRefGoogle ScholarPubMed
Fedorko, D. P., Nelson, N. A. & Cartwright, C. P. (1995) Identification of microsporidia in stool specimens by using PCR and restriction endonucleases. Journal of Clinical Microbiology 33, 17391741.CrossRefGoogle ScholarPubMed
Flisser, A., Reid, A., Garcia-Zepeda, E. & McManus, D. P. (1988) Specific detection of Taenia saginata eggs by DNA hybridization. Lancet ii, 14291430.CrossRefGoogle Scholar
Garcia-Allan, C., Martinez, N., Flisser, A., Aluja, A., Allan, J. C. & Craig, P. S. (1996) Immunocharacterisation of Taenia solium oncosphere and metacestone antigens. Journal of Helminthology 70, 271280.CrossRefGoogle Scholar
Gasser, R. B. & Chilton, N. B. (1995) Characterisation of taeniid cestode species by PCR-RFLP of ITS2 ribosomal DNA. Acta Tropica 59, 3140.CrossRefGoogle ScholarPubMed
Gasser, R. B., Chilton, N. B., Hoste, H. & Stevenson, L. A. (1994) Species identification of trichostrongyle nematodes by PCR-linked RFLP. International Journal for Parasitology 24, 291293.CrossRefGoogle ScholarPubMed
Gottstein, B., Deplazes, P., Tanner, I. & Skaggs, J. S. (1991) Diagnostic identification of Taenia saginata with the polymerase chain reaction. Transactions of the Royal Society of Tropical Medicine and Hygiene 85, 248249.CrossRefGoogle ScholarPubMed
Green, E. L. (1986) Immunological detection of parasite antigen in faeces. Parasitology Today 2, 198200.CrossRefGoogle ScholarPubMed
Grundy, M. S. (1982) Preliminary observations using a multilayer ELISA method for the detection of Entamoeba histolytica trophozoite antigens in stool samples. Transactions of the Royal Society of Tropical Medicine and Hygiene 76, 396400.CrossRefGoogle ScholarPubMed
Guo, Z. Z., Zhu, H. & An, Y.J. (1995) Application of PCR to the epidemiological study of amoebiasis. Chinese Journal of Epidemiology 16, 303305.Google Scholar
Hanvanich, M., Viscidi, R., Laugon, B. E., Bartlett, J.G & Yolken, R. H. (1985) Stool desorbing activity: a possible cause of false-positive reactions in competitive enzyme immunoassays. Journal of Clinical Microbiology 21, 184188.CrossRefGoogle ScholarPubMed
Jenkins, D. J. & Rickard, M. D. (1986) Specific antibody responses in dogs experimentally infected with Echinococcus granulosus. American Journal of Tropical Medicine and Hygiene 35, 345349.CrossRefGoogle ScholarPubMed
Johnson, M. J., Behnke, J. M. & Coles, G. C. (1996) Detection of gastrointestinal nematodes by a coproantigen capture ELISA. Research in Veterinary Science 60, 712.CrossRefGoogle ScholarPubMed
Katzwinkel-Wladarsch, S., Loscher, T. & Rinder, H. (1994) Direct amplification differentiation of pathogenic and non-pathogenic Entamoeba histolytica DNA from stool specimens. American Journal of Tropical Medicine and Hygiene 51, 115119.CrossRefGoogle Scholar
Kohno, H. (1991) Detection of Echinococcus multilocularis copro-antigens in experimentally infected dogs using murine monoclonal antibodies prepared against the adult worms. Japanese Journal of Veterinary Research 39, 65.Google Scholar
Kohno, H., Sakai, H., Okamoto, M., Ito, M., Oku, Y. & Kamiya, M. (1995) Development and characterisation of murine monoclonal antibodies to Echinococcus multilocularis adult worms and its use for the coproantigen detection. Japanese Journal of Parasitology 44, 404412.Google Scholar
Maas, M., Delgado, E. & Knobloch, J. (1991) Detection of Taenia solium antigens in merthiolate-formalin preserved stool samples. Tropical and Medical Parasitology 42, 112114.Google Scholar
Maas, M., Delgado, E. & Knobloch, J. (1992) Isolation of an immunodiagnostic Taenia solium coproantigen. Tropical and Medical Parasitology 43, 210–202.Google Scholar
Machnicka, B. & Krawczuk, S. (1988) Hymenolepis diminuta antigen: detection in faeces of rats. Bulletin of the National Acadmy of Sciences: Biological Sciences 36, 46.Google Scholar
Machnicka, B., Dzieman, E. & Zwierz, C. (1996a) Factors conditioning detection of Taenia saginata antigens in faeces. Applied Parasitology 37, 99105.Google ScholarPubMed
Machnicka, B., Dzieman, E. & Zwierz, C. (1996b) Detection of Taenia saginata antigens in faeces by ELISA. Applied Parasitology 37, 106110.Google ScholarPubMed
Mathis, A., Deplazes, P. & Eckert, J. (1996) An improved test system for PCR-based specific detection of Echinococcus multilocularis eggs. Journal of Helminthology 70, 219222.CrossRefGoogle ScholarPubMed
McManus, D. P. & Bowles, J. (1996) Molecular-genetic approaches to parasite identification - their value in diagnostic parasitology and systematics. International Journal for Parasitology 26, 687704.CrossRefGoogle ScholarPubMed
Montenegro, T. C., Miranda, E. A., Gilman, R. & the Cysticercosis Working Group in Peru (1996) Production of monoclonal antibodies for the identification of the eggs of Taenia solium. Annals of Tropical Medicine and Parasitology 90, 145155.CrossRefGoogle ScholarPubMed
Nageswaran, C., Craig, P. S. & Devaney, E. (1994) Coproantigen detection in rats experimentally infected with Strongyloides ratti. Parasitology 108, 335342.CrossRefGoogle ScholarPubMed
Palmer, S. R., Biffin, A. H., Craig, P. S. & Walters, T. M. (1996) Control of hydatid disease in Wales. British Medical Journal 312, 674675.CrossRefGoogle ScholarPubMed
Rishi, A. K. & McManus, D. P. (1987) Molecular cloning of Taenia solium DNA and characterisation of taeniid cestodes by DNA analysis. Parasitology 97, 161176.CrossRefGoogle Scholar
Roos, M. H. & Grant, W. M. (1993) Species-specific PCR for the parasitic nematodes Haemonchus contortus and Trichostrongylus colubriformis allows differentiation from sheep nematodes, including eggs. International Journal for Parasitology 23, 419421.CrossRefGoogle Scholar
Sakai, H., Malgor, R., Basmadjian, I., Gallardo, R., Carmona, C., Sato, H., Oky, Y. & Kamiya, M. (1995) An enzyme-linked immunosorbent assay for the detection of Echinococcus granulosus coproantigen in dogs. Japanese Journal of Parasitology 6, 453461.Google Scholar
Sakashita, M., Sakai, H., Kohno, H., Ooi, H-K., Oku, Y., Yagi, K., Ito, M. & Kamiya, M. (1995) Detection of Echinococcus multilocularis coproantigens in experimentally infected dogs using murine monoclonal antibody against adult worms. Japanese Journal of Parasitology 44, 413420.Google Scholar
Schmidt, G. D. & Roberts, L. S. (1981) Superorder Epitheliocystidia: orders Plagiorchiata and Opisthorchiata pp. 308330 in Schmidt, G. D. & Roberts, L. S. (Eds) Foundations of parasitology. 2nd ednMissouri, C. V. Mosby Co.Google Scholar
Schniering, A. (1995) Untersuchungen zum Koproantigen-Nachweis des Intestinalparasiten Ascaris suum unter verwendung von aviaren vitellinen antikorpern. PhD thesis, Free University of Berlin, journal number 1837.Google Scholar
Sirisinha, S., Chawengkirttikul, R., Sermswan, R., Amornpant, S., Mongkolsuk, S. & Panyim, S. (1991) Detection of Opisthorchis viverrini by monoclonal antibody-based ELISA and DNA hybridization. American Journal of Tropical Medicine and Hygiene 44, 140145.CrossRefGoogle ScholarPubMed
Snowden, K. & Hommel, M. (1991) Antigen detection immunoassay using dipsticks and colloidal dyes. Journal of Immunological Methods 140, 5765.CrossRefGoogle ScholarPubMed
Stibbs, H. H., Samadpour, M. & Manning, J. F. (1988) Enzyme immunoassay for detection of Giardia lamblia cyst antigens in formalin-fixed and unfixed human stool. Journal of Clinical Microbiology 26, 16651669.CrossRefGoogle ScholarPubMed
Sykes, A. R. (1994) Parasitism and production in farm animals. Animal Production 59, 155172.Google Scholar
Ungar, B. L. P. (1990) Enzyme-linked immunoassay for detection of Cryptosporidium antigens in fecal specimens. Journal of Clinical Microbiology 58, 961969.Google Scholar
Vinayak, V. K., Dutt, P. & Puri, M. (1991) An immunoenzymatic dot-ELISA for the detection of Giardia lamblia antigen in stool eluates of clinical cases of giardiasis. Journal of Immunological Methods 137, 245251.CrossRefGoogle ScholarPubMed
Viscidi, R., Laughon, B. E., Hanvanich, M., Bartlett, J. G. & Yolken, R. H. (1984) Improved enzyme immunoassays for the detection of antigens in fecal specimens. Investigation and correction of interfering factors. Journal of Immunological Methods 67, 129143.CrossRefGoogle ScholarPubMed