Used BIOTAGE PyroMark ID #9127573 for sale
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BIOTAGE PyroMark ID is a lab equipment and accessory specifically designed to detect and identify small nucleic acid polymorphisms. The device consists of three components: PyroMark ID, PyroMark MD, and PyroMark Pyroseal. It allows for the fast and efficient detection, hybridization, and amplification of small nucleic acid polymorphisms in a single step. BIOTAGE PyroMark ID component is used to detect and identify both single nucleotide polymorphisms and other polymorphisms associated with microsatellite repeats or indels. The PyroMark MD component is used to hybridize target nucleic acids to a DNA microarray, providing high throughput for multiple SNP genotyping. The PyroMark Pyroseal component is used to seal and protect the DNA samples and primers being used in the analysis. PyroMark ID equipment offers high levels of accuracy and precision and is well qualified for genotyping of single nucleotide polymorphisms and mutations. The system is capable of genotyping more than 4,000 loci in less than 48 hours. BIOTAGE PyroMark ID unit also permits the analysis of complete genomes using high throughput technology. The device is also fast and easy to use, saving valuable time and resources compared to other genotyping methods. PyroMark ID machine offers high sensitivity, with no quantitative limitations for the amount of parental DNA, and it can detect partial genetic membership. The PyroMark tool has been used to genotype more than 140,000 loci in mouse and human samples, and it can provide data on thousands of samples in a single experiment. BIOTAGE PyroMark ID asset is compatible with multiple platforms, from single lab benches to high-throughput laboratories. This makes it a flexible tool for different scenarios. Additionally, PyroMark ID model is scalable and cost-effective, allowing laboratories to increase their throughput and reduce overall costs. Overall, BIOTAGE PyroMark ID is a powerful, efficient, and cost-effective tool for genotyping and amplifying small nucleic acids and for detecting single nucleotide polymorphisms. It allows for fast, reliable, and accurate detection of genetic polymorphisms, making it an invaluable tool for modern biological laboratories and research.
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