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Quantitative sugar-flotation in a cover-slide system for quantifying Cryptosporidium parvum oocysts in feces:
Aditya Yudhana1, Isao Teramoto2, Dyah Haryuningtyas Sawitri3
1Department of Veterinary Science, Graduate School of Veterinary Science, Osaka Metropolitan University, 1-58 Rinku Orai Kita, Izumisano, Osaka, 598-8531, Japan; Veterinary Medicine Study Program, Department of Health and Life Sciences, Faculty of Health, Medicine, and Life Sciences, Universitas Airlangga, Banyuwangi, East Java, 68425, Indonesia; Research Group for Animal Biomedical and Conservation, Universitas Airlangga, Banyuwangi, East Java, 68425, Indonesia.
Abstract:
Cryptosporidium parvum is a zoonotic protozoan parasite that causes cryptosporidiosis, a disease characterized by intestinal tissue damage in animals and humans. The oocysts of Cryptosporidium parvum, which are the infective stage of this parasite in feces, are extremely small (4-6 μm in diameter), making microscopic detection and quantification difficult. In the present study, we developed a quantitative sugar-flotation in a cover-slide system (QUSIC), which is a novel, simple, sensitive, and cost-effective method for quantifying C. parvum oocysts in feces. Fecal samples from non-infected mice and purified oocyst stocks of C. parvum (HNJ-1 strain) were used in this study. To determine the optimal conditions for oocyst recovery, we evaluated sucrose solutions with different specific gravity (SG) values (1.306, 1.234, 1.216, and 1.207), incubation times (30-180 min), and oocyst numbers (102-106). Oocyst recovery was the highest (95.2%) when using a sucrose solution with SG 1.234, whereas lower recoveries were observed with SGs of 1.306, 1.216, and 1.207 (86.4%, 66.0%, and 22.7%, respectively). Furthermore, recovery peaked at 60 min (97.5%), but decreased with both shorter and longer incubation times. Across oocyst numbers ranging from 102 to 106, recovery remained consistently high (83.3-98.2%). These findings indicate that a sucrose solution with SG of 1.234 and a 60-min incubation time are optimal conditions for the QUSIC. By optimizing flotation conditions, the QUSIC offers a useful approach for quantifying C. parvum oocysts in fecal samples. These advantages make the QUSIC well-suited for routine diagnostics and research, particularly in resource-limited facilities.
Insights
A new method, quantitative sugar-flotation in a cover-slide system (QUSIC), accurately quantifies Cryptosporidium parvum oocysts in feces. Optimal conditions involve a specific sugar solution and incubation time for reliable detection.
Area of Science:
- Veterinary Parasitology
- Clinical Diagnostics
- Microbiology
Background:
- Cryptosporidium parvum is a zoonotic protozoan parasite causing intestinal disease in humans and animals.
- Accurate quantification of C. parvum oocysts in feces is crucial for diagnosis and control.
- The small size of oocysts complicates microscopic detection and quantification.
Purpose of the Study:
- To develop and optimize a novel, simple, sensitive, and cost-effective method for quantifying C. parvum oocysts.
- To establish optimal conditions for the quantitative sugar-flotation in a cover-slide system (QUSIC).
Main Methods:
- Development of the quantitative sugar-flotation in a cover-slide system (QUSIC).
- Evaluation of different sucrose solution specific gravity (SG) values (1.306, 1.234, 1.216, 1.207).
- Optimization of incubation times (30-180 min) and oocyst concentrations (10^2-10^6).
Main Results:
- Highest oocyst recovery (95.2%) achieved with sucrose SG 1.234.
- Optimal incubation time for oocyst recovery was 60 minutes (97.5%).
- Consistent high recovery rates (83.3-98.2%) across a wide range of oocyst numbers.
Conclusions:
- The QUSIC method, with optimized conditions (SG 1.234, 60 min incubation), provides a reliable approach for quantifying C. parvum oocysts.
- The QUSIC is a valuable tool for routine diagnostics and research, especially in resource-limited settings.
- This method enhances the ability to detect and manage cryptosporidiosis in veterinary and human health.
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