Solution reagent kit qPCRBIO Probe 1-Step
RNase inhibitordiagnosticclinical

Solution reagent kit - qPCRBIO Probe 1-Step - PCR Biosystems Ltd. - RNase inhibitor / diagnostic / clinical
Solution reagent kit - qPCRBIO Probe 1-Step - PCR Biosystems Ltd. - RNase inhibitor / diagnostic / clinical
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Characteristics

Type
solution, RNase inhibitor
Applications
diagnostic, clinical, RT-qPCR
Micro-organism
virus, SARS-COV-2
Other characteristics
hot start
Storage temperature

Min.: -30 °C
(-22 °F)

Max.: -15 °C
(5 °F)

Description

The kit has been optimised with a high-concentration 4x mix, enabling greater sample input and increasing sensitivity, even when working with small volume reactions. Features Recommended kit for SARS-CoV-2 diagnostics Validated for qualitative detection of SARS-CoV-2 nucleic acid Concentrated 4x mix format, ideal for high-throughput, highly multiplexed assays Ultra-sensitive detection of RNA viruses Earlier detection of a wide range of template amounts Includes UltraScript RTase for thermostable reverse transcription up to 55°C Advanced RNase inhibitor Antibody-mediated hot start technology Compatible with all real-time PCR platforms – standard and fast cycling conditions More Information qPCRBIO Probe 1-Step Virus Detect is designed for ultra-sensitive detection of viral RNA by reverse transcription real-time PCR (RT-qPCR) using sequence-specific probes. The kit contains proprietary components that are optimised to enable cDNA synthesis and PCR amplification to be performed in a single tube. High sensitivity Developed with a high concentration 4x mix format, qPCRBIO Probe 1-Step Virus Detect offers greater sensitivity and flexibility by allowing more sample to be added to each reaction, and for smaller reaction volumes to be used with confidence. This is particularly beneficial in high throughput assays or for clinical diagnostic testing where accurate and reproducible detection of low copy viral templates is of crucial importance. This specialised kit allows accurate and sensitive detection of viral sequences over a broad range of input RNA, down to 4 copies tested per reaction (0.8 copies per μL).

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