Probe-quantitative Real-time PCR Kit for Mycoplasma Agalactiae
- Product Code: 112294
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Density: | Storage Condition: | 2-8℃, avoid light |
Product Description:
The Probe-quantitative Real-time PCR Kit for Mycoplasma Agalactiae is primarily used for the detection and quantification of Mycoplasma agalactiae, a pathogen responsible for contagious agalactia in sheep and goats. This kit is essential in veterinary diagnostics, enabling accurate and rapid identification of the pathogen in clinical samples such as milk, tissue, or blood. Its high sensitivity and specificity make it a valuable tool for monitoring and controlling outbreaks, ensuring timely intervention to prevent the spread of the disease. Additionally, it is used in research settings to study the epidemiology and pathogenicity of Mycoplasma agalactiae, contributing to the development of effective prevention and treatment strategies. The kit's quantitative capability allows for assessing the bacterial load, which is critical for understanding infection severity and evaluating the effectiveness of therapeutic measures.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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20.000 | 10-20 days | £452.29 |
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Probe-quantitative Real-time PCR Kit for Mycoplasma Agalactiae
The Probe-quantitative Real-time PCR Kit for Mycoplasma Agalactiae is primarily used for the detection and quantification of Mycoplasma agalactiae, a pathogen responsible for contagious agalactia in sheep and goats. This kit is essential in veterinary diagnostics, enabling accurate and rapid identification of the pathogen in clinical samples such as milk, tissue, or blood. Its high sensitivity and specificity make it a valuable tool for monitoring and controlling outbreaks, ensuring timely intervention to prevent the spread of the disease. Additionally, it is used in research settings to study the epidemiology and pathogenicity of Mycoplasma agalactiae, contributing to the development of effective prevention and treatment strategies. The kit's quantitative capability allows for assessing the bacterial load, which is critical for understanding infection severity and evaluating the effectiveness of therapeutic measures.
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