1.Ultrastructural Changes in Cryptosporidium parvum Oocysts by Gamma Irradiation.
Migyo JOUNG ; Sejeong YUN ; Mijoung JOUNG ; Woo Yoon PARK ; Jae Ran YU
The Korean Journal of Parasitology 2011;49(1):25-31
Cryptosporidium parvum is known as one of the most highly resistant parasites to gamma irradiation. To morphologically have an insight on the radioresistance of this parasite, ultrastructural changes in C. parvum sporozoites were observed after gamma irradiation using various doses (1, 5, 10, and 25 kGy) following a range of post-irradiation incubation times (10 kGy for 6, 12, 24, 48, 72, and 96 hr). The ultrastructures of C. parvum oocysts changed remarkably after a 10-kGy irradiation. Nuclear membrane changes and degranulation of dense granules were observed with high doses over 10 kGy, and morphological changes in micronemes and rhoptries were observed with very high doses over 25 kGy. Oocyst walls were not affected by irradiation, whereas the internal structures of sporozoites degenerated completely 96 hr post-irradiation using a dose of 10 kGy. From this study, morphological evidence of radioresistance of C. parvum has been supplemented.
Animals
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Cryptosporidiosis/parasitology
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Cryptosporidium parvum/*growth & development/radiation effects/ultrastructure
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Female
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Gamma Rays
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Humans
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Mice
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Mice, Inbred C57BL
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Microscopy, Electron, Transmission
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Oocysts/growth & development/*radiation effects/*ultrastructure
2.Multiplex PCR Detection of Waterborne Intestinal Protozoa; Microsporidia, Cyclospora, and Cryptosporidium.
Seung Hyun LEE ; Migyo JOUNG ; Sejoung YOON ; Kyoungjin CHOI ; Woo Yoon PARK ; Jae Ran YU
The Korean Journal of Parasitology 2010;48(4):297-301
Recently, emerging waterborne protozoa, such as microsporidia, Cyclospora, and Cryptosporidium, have become a challenge to human health worldwide. Rapid, simple, and economical detection methods for these major waterborne protozoa in environmental and clinical samples are necessary to control infection and improve public health. In the present study, we developed a multiplex PCR test that is able to detect all these 3 major waterborne protozoa at the same time. Detection limits of the multiplex PCR method ranged from 101 to 102 oocysts or spores. The primers for microsporidia or Cryptosporidium used in this study can detect both Enterocytozoon bieneusi and Encephalitozoon intestinalis, or both Cryptosporidium hominis and Cryptosporidium parvum, respectively. Restriction enzyme digestion of PCR products with BsaBI or BsiEI makes it possible to distinguish the 2 species of microsporidia or Cryptosporidium, respectively. This simple, rapid, and cost-effective multiplex PCR method will be useful for detecting outbreaks or sporadic cases of waterborne protozoa infections.
Cryptosporidium/*isolation & purification
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Cyclospora/*isolation & purification
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DNA Primers/genetics
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DNA Restriction Enzymes/metabolism
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DNA, Protozoan/genetics/metabolism
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Humans
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Microsporidia/*isolation & purification
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Parasitology/*methods
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Polymerase Chain Reaction/*methods
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Polymorphism, Restriction Fragment Length
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Sensitivity and Specificity
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Water/*parasitology