1.Comparative Sensitivity of PCR Primer Sets for Detection of Cryptosporidium parvum.
Jae Ran YU ; Soo Ung LEE ; Woo Yoon PARK
The Korean Journal of Parasitology 2009;47(3):293-297
Improved methods for detection of Cryptosporidium oocysts in environmental and clinical samples are urgently needed to improve detection of cryptosporidiosis. We compared the sensitivity of 7 PCR primer sets for detection of Cryptosporidium parvum. Each target gene was amplified by PCR or nested PCR with serially diluted DNA extracted from purified C. parvum oocysts. The target genes included Cryptosporidium oocyst wall protein (COWP), small subunit ribosomal RNA (SSU rRNA), and random amplified polymorphic DNA. The detection limit of the PCR method ranged from 10(3) to 10(4) oocysts, and the nested PCR method was able to detect 10(0) to 10(2) oocysts. A second-round amplification of target genes showed that the nested primer set specific for the COWP gene proved to be the most sensitive one compared to the other primer sets tested in this study and would therefore be useful for the detection of C. parvum.
Animals
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Cryptosporidiosis/diagnosis/*parasitology
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Cryptosporidium parvum/genetics/*isolation & purification
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DNA Primers/*genetics
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DNA, Protozoan/diagnostic use/genetics
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Humans
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Polymerase Chain Reaction/*methods
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Sensitivity and Specificity
2.Detection of Cryptosporidium parvum in Environmental Soil and Vegetables.
Semie HONG ; Kyungjin KIM ; Sejoung YOON ; Woo Yoon PARK ; Seobo SIM ; Jae Ran YU
Journal of Korean Medical Science 2014;29(10):1367-1371
Cryptosporidium parvum is a zoonotic protozoan parasite that causes cryptosporidial enteritis. Numerous outbreaks of cryptosporidiosis have been reported worldwide. Cryptosporidium is transmitted to hosts via consumption of contaminated water and food but also by direct contact with contaminated soil or infected hosts. The present study investigated farm soil collected from 34 locations along the western Korean peninsula and 24 vegetables purchased from local grocery markets in Seoul. The soil and vegetable samples were examined by real-time polymerase chain reaction (qPCR) to estimate the risk of infection. Eleven of 34 locations (32.4%) and 3 of 24 vegetable samples (12.5%) were contaminated with Cryptosporidium parvum, as confirmed by TaqI enzyme digestion of qPCR products and DNA sequencing. It is suggested that Cryptosporidium infection can be mediated via farm soil and vegetables. Therefore, it is necessary to reduce contamination of this organism in view of public health.
Base Sequence
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Cryptosporidiosis/parasitology
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Cryptosporidium parvum/*genetics/*isolation & purification
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DNA, Protozoan/analysis/genetics
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Enteritis/parasitology
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Foodborne Diseases/*parasitology
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Humans
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Sequence Alignment
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Sequence Analysis, DNA
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Soil/*parasitology
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Vegetables/*parasitology
3.A Waterborne Outbreak and Detection of Cryptosporidium Oocysts in Drinking Water of an Older High-Rise Apartment Complex in Seoul.
Eun Joo CHO ; Jin Young YANG ; Eun Sook LEE ; Se Chul KIM ; So Yang CHA ; Sung Tek KIM ; Man Ho LEE ; Sun Hee HAN ; Young Sang PARK
The Korean Journal of Parasitology 2013;51(4):461-466
From May to June 2012, a waterborne outbreak of 124 cases of cryptosporidiosis occurred in the plumbing systems of an older high-rise apartment complex in Seoul, Republic of Korea. The residents of this apartment complex had symptoms of watery diarrhea and vomiting. Tap water samples in the apartment complex and its adjacent buildings were collected and tested for 57 parameters under the Korean Drinking Water Standards and for additional 11 microbiological parameters. The microbiological parameters included total colony counts, Clostridium perfringens, Enterococcus, fecal streptococcus, Salmonella, Shigella, Pseudomonas aeruginosa, Cryptosporidium oocysts, Giardia cysts, total culturable viruses, and Norovirus. While the tap water samples of the adjacent buildings complied with the Korean Drinking Water Standards for all parameters, fecal bacteria and Cryptosporidium oocysts were detected in the tap water samples of the outbreak apartment complex. It turned out that the agent of the disease was Cryptosporidium parvum. The drinking water was polluted with sewage from a septic tank in the apartment complex. To remove C. parvum oocysts, we conducted physical processes of cleaning the water storage tanks, flushing the indoor pipes, and replacing old pipes with new ones. Finally we restored the clean drinking water to the apartment complex after identification of no oocysts.
Cryptosporidiosis/*epidemiology/*parasitology
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Cryptosporidium parvum/genetics/growth & development/*isolation & purification
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Disease Outbreaks
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Drinking Water/*parasitology
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Housing
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Humans
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Oocysts/growth & development
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Republic of Korea/epidemiology
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Water Supply/analysis
4.Genotype analysis of Cryptosporidium spp. prevalent in a rural village in Hwasun-gun, Republic of Korea.
Jae Hwan PARK ; Sang Mee GUK ; Eun Taek HAN ; Eun Hee SHIN ; Jae Lip KIM ; Jong Yil CHAI
The Korean Journal of Parasitology 2006;44(1):27-33
Two species of Cryptosporidium are known to infect man; C. hominis which shows anthroponotic transmission between humans, and C. parvum which shows zoonotic transmission between animals or between animals and man. In this study, we focused on identifying genotypes of Cryptosporidium prevalent among inhabitants and domestic animals (cattle and goats), to elucidate transmittal routes in a known endemic area in Hwasun-gun, Jeollanam-do, Republic of Korea. The existence of Cryptosporidium oocysts was confirmed using a modified Ziehl- Neelsen stain. Human infections were found in 7 (25.9%) of 27 people examined. Cattle cryptosporidiosis cases constituted 7 (41.2%) of 17 examined, and goat cases 3 (42.9%) of 7 examined. Species characterizations were performed on the small subunit of the rRNA gene using both PCR-RFLP and sequence analysis. Most of the human isolates were mixtures of C. hominis and C. parvum genotypes and similar PCR-RFLP patterns were observed in cattle and goat isolates. However, sequence analyses identified only C. hominis in all isolates examined. The natural infection of cattle and goats with C. hominis is a new and unique finding in the present study. It is suggested that human cryptosporidiosis in the studied area is caused by mixtures of C. hominis and C. parvum oocysts originating from both inhabitants and domestic animals.
Rural Health
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Prevalence
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Polymorphism, Restriction Fragment Length
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Polymerase Chain Reaction/methods
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Mutation/genetics
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Molecular Sequence Data
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Korea/epidemiology
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Humans
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Goats
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Goat Diseases/epidemiology/*parasitology
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Genotype
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Genes, rRNA/genetics
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DNA, Protozoan/chemistry
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DNA Primers/chemistry
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Cryptosporidium parvum/genetics/isolation & purification
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Cryptosporidium/classification/*genetics
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Cryptosporidiosis/*epidemiology/*parasitology
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Cattle Diseases/epidemiology/*parasitology
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Cattle
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Base Sequence
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Animals