• Title/Summary/Keyword: sporozoite

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Production of a Monoclonal Antibody and Ultrastructure of the Sporozoite of Cryptosporidium parvum

  • Choi, Young-Sook;Lee, Sung-Tae;Cho, Myung-Hwan
    • Journal of Microbiology
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    • v.34 no.4
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    • pp.379-383
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    • 1996
  • Cryptosporidium parvum causes a life-threatening diarrhea in acquired immunodeficiency syndrome (AIDS) patients. THe sporozoite stage of C. parvum has been known to be a target in treating cryptosporidiosis in AIDS patients as it is an extracellular stage. A sporozoite was ultrastructurally observed. It has a creascent shape with a rounded posterior end and a tapering body. The compact nucleus was located at the posterior end. A monoclonal antibody was produced, which recognized a 43 kDa of sporozoite antigens in a western blot analysis and showed the surface labeling in immunofluorescence.

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Production of Monoclonal Antibodies by Hybridomas Sensitized to Sporozoites of Cryptosporidium parvum (Cryptosporidium parvum Sporozoites 에 감작된 Hybridomas 에서의 Monoclonal Antibody 생산)

  • Cho, Myung-Hwan
    • Microbiology and Biotechnology Letters
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    • v.17 no.5
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    • pp.494-498
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    • 1989
  • Hybridoma cell lines, which secrete monoclonal antibodies (mAbs) against the surface antigens of Cryptosporidium parvum Sporozoites, were produced by fusing spleen cells of C. parvum Sporozoite-immunized mice with P3-X63-Ag8 myeloma cells. Two cloned antibody-secreting cell lines, Kor1 and Ea2, were established and produced IgG1 and IgG2a antibodies, respectively. Percoll-purified sporozoites were solubilized and separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis. Western blot assay demonstrates that an antigen of 20-kDa was bound by monoclonals. By indirect immunofluorescence microscopy, mAb exhibited uniform binding to the sporozoite surface.

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Ultrastructural Localization of a Common Antigen of Sporozoites and Merozoites of Cryptosporidium by Immunogold Labeling Technique Using a Monoclonal Antibody (Monoclonal Antibody와 Immunogold 표지법에 의한 Cryptosporidium의 Sporozoites와 Merozoites의 공통항원의 구조적 위치 결정)

  • Cho, Myung-Hwan
    • Microbiology and Biotechnology Letters
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    • v.17 no.5
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    • pp.499-503
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    • 1989
  • Relatively little is known about the antigenic relatedness of the different developmental stages of Cryptosporidium. A monoclonal antibody (mAb), an IgG3, was produced against the Cryp-tosporidium merozoite stage by immunizing mice with merozoite preparation. This monoclonal was reacted with sporozoite antigens in Western blotting resulting in recognition of an epitope on a 3.5-kDa antigen. An immunoelectron microscopic technique was used to investigate the antigenic relatedness of Cryptosporidium Sporozoites and merozoites. Mouse intestine was fixed with 1 % glutaraldehyde and embedded in LR White. Thin sections were then sequentially treated with murine IgG3 mAb and anti-mouse IgG conjugated to 15-nm diameter colloidal gold. This mAb showed similar (sur-face/cytoplasmic) immunoelectron microsropic colloidal gold labeling patterns with sporozoites and merozoites, indicalting epitope sharing between these two stages. This information might be useful for identifying possible epitopes to which a vaccine could be developed.

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Cultivation of Avian Coccidia(Eimeria tenella) in Chicken Embryonic Eggs by Serial Passage (부화 계란내 닭 콕시듐 원충(Eimeria tenella)의 연속계대 배양)

  • 김기석;이희수;정갑수;최상호;김상희;남궁선
    • Korean Journal of Poultry Science
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    • v.19 no.2
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    • pp.107-112
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    • 1992
  • Sporozoite of Eimeria tenella inoculated into the allantoic cavities of embryonating eggs completed their life-cycle in the chorioallantoic membranes (CAM ) and produced viable oocysts. And the strain continued to adapt to the CAM through the period of the passages. In embryos, the reproduction of the strain, judged by oocyst production increased, but the pathogenicity, judged by mortality of embryo decreased, with increasing numbers of passage in eggs.

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Mosquito Species Composition and Plasmodium vivax Infection Rates on Baengnyeong-do (Island), Republic of Korea

  • Foley, Desmond H.;Klein, Terry A.;Lee, In-Yong;Kim, Myung-Soon;Wilkerson, Richard C.;Harrison, Genelle;Rueda, Leopoldo M.;Kim, Heung-Chul
    • Parasites, Hosts and Diseases
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    • v.49 no.3
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    • pp.313-316
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    • 2011
  • Vivax malaria is a significant military and civilian health threat in the north of the Republic of Korea (ROK). The island of Baengnyeong-do is the westernmost point of the ROK and is located close to the southwestern coast of the Democratic People's Republic of Korea (DPRK). Mosquitoes were collected using a black light trap on Baengnyeong-do, and Anopheles spp. were assayed by PCR, to identify the species, and screened for sporozoites of Plasmodium vivax. Of a subsample of 257 mosquitoes, Anopheles lesteri was the most frequently collected (49.8%), followed by Anopheles sinensis (22.6%), Anopheles pullus (18.7%), Anopheles kleini (7.8%), and Anopheles belenrae (1.2%). The overall sporozoite rate was 3.1%, with the highest rates observed in An. kleini (15.0%), An. sinensis (5.2%), and An. lesteri (1.6%). No sporozoite positive An. pullus or An. belenrae were observed. The results extend our knowledge of the distribution and potential role in malaria transmission of An. kleini, An. lesteri, and An. sinensis, for an area previously considered to be at a low risk for contracting vivax malaria.

Malaria Vector Surveillance in Ganghwa-do, a Malaria-Endemic Area in the Republic of Korea

  • Oh, Sung-Suck;Hur, Myung-Je;Joo, Gwang-Sig;Kim, Sung-Tae;Go, Jong-Myoung;Kim, Yong-Hee;Lee, Wook-Gyo;Shin, E-Hyun
    • Parasites, Hosts and Diseases
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    • v.48 no.1
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    • pp.35-41
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    • 2010
  • We investigated the seasonality of Anopheles mosquitoes, including its species composition, density, parity, and population densities of mosquitoes infected with the parasite in Ganghwa-do (Island), a vivax malaria endemic area in the Republic of Korea. Mosquitoes were collected periodically with a dry-ice-tent trap and a blacklight trap during the mosquito season (April-October) in 2008. Anopheles sinensis (94.9%) was the most abundant species collected, followed by Anopheles belenrae (3.8%), Anopheles pullus (1.2%), and Anopheles lesteri (0.1%). Hibernating Anopheles mosquitoes were also collected from December 2007 to March 2008. An. pullus (72.1%) was the most frequently collected, followed by An. sinensis (18.4%) and An. belenrae (9.5%). The composition of Anopheles species differed between the mosquito season and hibernation seasons. The parous rate fluctuated from 0% to 92.9%, and the highest rate was recorded on 10 September 2008. Sporozoite infections were detected by PCR in the head and thorax of female Anopheles mosquitoes. The annual sporozoite rate of mosquitoes was 0.11% (2 of 1,845 mosquitoes). The 2 mosquitoes that tested positive for sporozoites were An. sinensis. Malarial infections in anopheline mosquitoes from a population pool were also tried irrespective of the mosquito species. Nine of 2,331 pools of Anopheles mosquitoes were positive. From our study, it can be concluded that An. sinensis, which was the predominant vector species and confirmed as sporozoite-infected, plays an important role in malaria transmission in Ganghwa-do.

Development of Eimeriu tenezla in MDEK cell culture with a note on enhancing effeet of preincubation with chicken spleen cells (MDBK 세포 배양에서 Eimeria tenella 발육 상황 및 닭 비장세포에 의한 발육 항진 효과)

  • 채종일;이순형
    • Parasites, Hosts and Diseases
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    • v.27 no.2
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    • pp.87-100
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    • 1989
  • Eimeria tenella, an intracellular protozoan parasite infecting the epithelial cells of the ceca of chickens, causes severe diarrhea and bleeding that can lead its host to death. It is of interest that 2. tenezla first penetrate into the mucosal intraepithelial Iymphocytes (IEL) before they parasitize crypt or villous epithelial cells. This in vitro study was undertaken to know whether the penetration of E. tenella into such a lymphoid cell is a beneficial step for the parasite survival and development. Three sequential experiments were performed. First, the in vitro established bovine kidney cell line, MDBK cells, were evaluated for use as host cells for E. tenella, through morphological observation. Second, the degree of parasite development and multiplication in MDBK cells was quantitatively assayed using radioisotope labelled uracil ($^3H-uracil$) . Third, the E. tenella sporozoites viability was assayed after preincubation of them with thicken spleen cells. E. tenella oocysts obtained from the ceca of the infected chickens were used for the source of the sporozoites. Spleen cells (I) obtained from normal chickens (FP strain) were preincubated with the sporozoites (T) at the E:T ratio of 100:1, 50:1 or 25:1 for 4 or 12 hours, and then the mixture was inoculated into the MDBK cell monolayer. Morphologically the infected MDBK cells revealed active schisogonic cycle of E. tenella in 3~4 days, which was characterized by the appearance of trophozoites, and immature and mature schizonts containing merogoites. The 3H-uracil uptake by E. tenella increased gradually in the MDBK cells, which made a plateau after 48~60 hours, and decreased thereafter. The uptake amount of $^3H-uracil$ depended not only upon the inoculum sixte of the sporozoites but also on the degree of time delay (preincubation; sporozoites only) from excystation to inoculation into MDBK cells. The 3H-uracil uptake became lower as the preincubation time was prolonged. In comparison, after preincubation of sporozoites with spleen cells for 4 or 12 hours, the 3H-uracil uptake was significantly increased compared with that of control group. From the results, it was inferred that, although the penetration of E. tenella sporozoites into the lymphoid cells such as IEL is not an essential step, it should be at least a beneficial one for the survival and development of sporozoites in the chicken intestine.

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Specific bovine antibody response against a new recombinant Cryptosporidium parvum antigen containing 4 zinc-finger motifs

  • De Graaf, Dirk-C.;Coninck, Hans-De;Petry, Franz;Eeckhout, Ilka-B.;Peeters, Johan-E.
    • Parasites, Hosts and Diseases
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    • v.40 no.1
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    • pp.59-64
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    • 2002
  • A Cryptosporidium parvum sporozoite and oocyst λgt11 cDNA library was screened with a hyperimmune rabbit serum that was developed against insoluble fragments of ultrasonicated oocysts. A clone named Cp22.4.1 encoding a protein of 231 amino acids with 4 zinc-finger domains characterized by a Cys-X2-Cys-X4-His-X4-Cys motif was isolated and characterized. There was a complete match between the sequencing data of the coding region of Cp22.4.1 and the corresponding gene at chromosomal level. Cloning in a pBAD-TOPO-TA expression vector permitted to evaluate the antigenicty of the recombinant His-tagged antigen. This antigen was recognized by 2 out of 5 sera from Cruptosporidium immune calves and not by sera from parasite naive animals.

Ultrastructural Localization of Cryptosporidium parvum Antigen Using Human Patients Sera

  • Lee, Jong-Gyu;Han, Eun-Taek;Park, Woo-Yoon;Yu, Jae-Ran
    • Parasites, Hosts and Diseases
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    • v.47 no.2
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    • pp.171-174
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    • 2009
  • The antigen location of Cryptosporidium parvum, which stimulates antibody formation in humans and animals, was investigated using infected human sera. Immuno-electron microscopy revealed that antigenicity-inducing humoral immunity was located at various developmental stages of parasites, including asexual, sexual stages, and oocysts. The amount of antigen-stimulating IgG antibodies was particularly high on the oocyst wall. The sporozoite surface was shown to give stimulation on IgG and IgM antibody formation. Trophozoites implicated the lowest antigenicity to humoral immunity, both IgG and IgM, by showing the least amount of gold labeling. Immunogold labeling also provided clues that antigens were presented to the host-cell cytoplasm via feeder organelles and host-parasite junctions.

The Development of Chicken Recombinant Single-chain Fv (ScFv) Antibody Reactive with Sporozoite Antigen of Eimeria spp. which Causes Avian Coccidiosis (가금 콕시듐증을 일으키는 Eimeria spp.의 포자충 항원에 결합하는 닭의 재조합 항체(ScFv)의 개발)

  • Park, Dong-Woon;Kim, Eon-Dong;Kim, Sung-Heon;Han, Jae-Yong;Kim, Jin-Kyoo
    • Korean Journal of Poultry Science
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    • v.38 no.4
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    • pp.323-330
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    • 2011
  • The chicken monoclonal antibody (mAb), 13C8, reacts with sporozoite antigens of Eimeria spp. which causes avian coccidiosis. Since this mAb was produced at low amount due to genetic instability of chicken hybridoma, a recombinant 13C8 single-chain Fv (ScFv) antibody was constructed by amplification of the variable domain of heavy (VH) and light chain (VL) genes of antibody derived from chicken hybridoma. The constructed 13C8 ScFv was successfully expressed in E. coli and purified as a soluble form. In ELISA analysis, this recombinant 13C8 ScFv antibody showed antigen binding activity as the original mAb. In addition, nucleotide sequence comparison of 13C8 gene to the germline chicken VL and VH genes suggested that the gene conversion with $V{\lambda}$ and VH pseudogenes might contribute to the diversification of VL and VH genes in chickens.