qPCRBIO Probe 1-Step Virus Detect


qPCRBIO Probe 1-Step Virus Detect is designed for ultrasensitive detection of viral RNA in a single-step RT-qPCR using sequence-specific primers. The kit is optimized with a high-concentration 4x mix, allowing for increased input sample volume and enhanced sensitivity, even when working with small reaction volumes. Features The kit is recommended for SARS-CoV-2 diagnosis Validated for qualitative detection of SARS-CoV-2 nucleic acids High concentration 4x mix format, ideal for high-throughput and highly diversified assays Ultrasensitive viral RNA detection Early detection with a variety of sample volumes 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.

In Stock

CAT NumberProductSizePrice
PB25.51-01qPCRBIO Probe 1-Step Virus Detect Lo-ROX200 x 20 μL ReactionsContact us
PB25.51-03qPCRBIO Probe 1-Step Virus Detect Lo-ROX600 x 20 μL ReactionsContact us
PB25.51-05qPCRBIO Probe 1-Step Virus Detect Lo-ROX1000 x 20 μL Reactions (1 x 5 mL)Contact us
PB25.51-50qPCRBIO Probe 1-Step Virus Detect Lo-ROX10 000 x 20 μL Reactions (1 x 50 mL)Contact us
PB25.52-01qPCRBIO Probe 1-Step Virus Detect Hi-ROX200 x 20 μL ReactionsContact us
PB25.52-03qPCRBIO Probe 1-Step Virus Detect Hi-ROX600 x 20 μL ReactionsContact us
PB25.52-05qPCRBIO Probe 1-Step Virus Detect Hi-ROX1000 x 20 μL Reactions (1 x 5 mL)Contact us
PB25.52-50qPCRBIO Probe 1-Step Virus Detect Hi-ROX10 000 x 20 μL Reactions (1 x 50 mL)Contact us
PB25.53-01qPCRBIO Probe 1-Step Virus Detect No-ROX200 x 20 μL ReactionsContact us
PB25.53-03qPCRBIO Probe 1-Step Virus Detect No-ROX600 x 20 μL ReactionsContact us
PB25.53-05qPCRBIO Probe 1-Step Virus Detect No-ROX1000 x 20 μL Reactions (1 x 5 mL)Contact us
PB25.53-50qPCRBIO Probe 1-Step Virus Detect No-ROX10 000 x 20 μL Reactions (1 x 50 mL)Contact us
PB25.54-01qPCRBIO Probe 1-Step Virus Detect Separate-ROX200 x 20 μL ReactionsContact us
PB25.54-03qPCRBIO Probe 1-Step Virus Detect Separate-ROX600 x 20 μL ReactionsContact us
PB25.54-05qPCRBIO Probe 1-Step Virus Detect Separate-ROX1000 x 20 μL Reactions (1 x 5 mL)Contact us

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Additional Information

qPCRBIO Probe 1-Step Virus Detect is designed for ultra-sensitive detection of viral RNA by real-time PCR (RT-qPCR) using primers specific to a sequence. The kit contains proprietary components optimized to allow cDNA synthesis and PCR amplification to be performed within a single tube.

High Sensitivity

Developed in a high-concentration 4x mix format, qPCRBIO Probe 1-Step Virus Detect offers higher sensitivity and flexibility by allowing more sample to be added into each reaction and using smaller reaction volumes with confidence. This is particularly beneficial in large assays or for clinical diagnostic tests where accurate and repeatable detection of low copy number virus templates is of utmost importance. This specialty kit enables accurate and sensitive detection of viral sequences across a wide range of input RNA down to 4 copies tested per reaction (0.8 copies per μL).

Consistent and Repeatable RT-qPCR

Fast and efficient cDNA synthesis is provided by UltraScript Reverse Transcriptase, capable of operating over a wide range of temperatures for reactions. The reverse transcription reaction can be undertaken within just 5 minutes and at temperatures up to 55°C, enhancing detection of RNA viral sequences that contain high GC and complex structure. PCR amplification is enabled by PCRBIO HS Taq DNA Polymerase, using antibody-mediated hot start technology to specifically amplify cDNA templates derived from viruses, with improved tolerance to common PCR inhibitors. Combined with a specially formulated buffer system with proprietary smart screen technology, qPCRBIO Probe 1-Step Virus Detect offers consistent and repeatable RT-qPCR whilst minimizing potential primer dimer and non-specific products.

SARS-CoV-2 Detection

qPCRBIO Probe 1-Step Virus Detect is optimized and validated for the qualitative detection of SARS-CoV-2 nucleic acids and is ideally suited for high throughput COVID-19 testing, whether for laboratory-developed tests or as a component of diagnostic kits. Validation has been performed using primer-probe sequences recommended by Charité (Berlin, Germany) (RdRp and E genes), and primer-probe sequences of the Centers for Disease Control and Prevention (Atlanta, USA) (N gene).

Versatile Detection Kit

qPCRBIO Probe 1-Step Virus Detect contains all the necessary components for accurate and sensitive RT-qPCR except for primers, probes, template RNA, and water. To maximize flexibility, the kit is designed for use with different probe technologies, including TaqMan®, Scorpions®, and molecular beacon probes. It can be used with RNA extracted by most commercial kits provided that input RNA amounts and quality are within acceptable ranges. The kit is compatible with multiplexing assays and with all real-time PCR platforms. Use our qPCR Selection Tool to determine which ROX variant is compatible with your instrument.

This product alone does not provide any diagnostic results and is supplied for Research Purposes only. It may be used as a component of molecular diagnostic tests where country-specific regulatory requirements allow.

Applications

  • COVID-19 / SARS-CoV-2 diagnosis and research
  • Viral RNA detection
  • Diagnostic RT-qPCR
  • Detection of ultra-low copy number targets
  • Large-scale testing
  • Singleplex and multiplex
  • TaqMan®, Scorpions® and molecular beacon probes

Technical Specifications

qPCRBIO Probe 1-Step Virus Detect Lo-ROX

Component 200 reactions 600 reactions 1000 reactions 10 000 reactions 100 000 reactions
4x qPCRBIO Probe 1-Step Virus Detect Lo-ROX 1 x 1mL 3 x 1mL 1 x 5mL 1 x 50mL 1 x 500mL
20x UltraScript RTase (with RNase inhibitor) 1 x 200μL 1 x 600μL 1 x 1mL 2 x 5mL 1 x 100mL

qPCRBIO Probe 1-Step Virus Detect Hi-ROX

Component 200 reactions 600 reactions 1000 reactions 10 000 reactions 100 000 reactions
4x qPCRBIO Probe 1-Step Virus Detect Hi-ROX 1 x 1mL 3 x 1mL 1 x 5mL 1 x 50mL 1 x 500mL
20x UltraScript RTase (with RNase inhibitor) 1 x 200μL 1 x 600μL 1 x 1mL 2 x 5mL 1 x 100mL

qPCRBIO Probe 1-Step Virus Detect No-ROX

Component 200 reactions 600 reactions 1000 reactions 10 000 reactions 100 000 reactions
4x qPCRBIO Probe 1-Step Virus Detect No-ROX 1 x 1mL 3 x 1mL 1 x 5mL 1 x 50mL 1 x 500mL
20x UltraScript RTase (with RNase inhibitor) 1 x 200μL 1 x 600μL 1 x 1mL 2 x 5mL 1 x 100mL

qPCRBIO Probe 1-Step Virus Detect Separate-ROX

Component 200 reactions 600 reactions 1000 reactions
4x qPCRBIO Probe 1-Step Virus Detect No-ROX 1 x 1mL 3 x 1mL 1 x 5mL
20x UltraScript RTase (with RNase inhibitor) 1 x 200μL 1 x 600μL 1 x 1mL
50μM ROX Additive 1 x 200μL 1 x 200μL 1 x 200μL

Reaction Information

Reaction volume Storage
20 μL Upon receipt, store between -30 and -20 °C.
If stored correctly, the product will retain full activity until the expiry date indicated.

Device Compatibility

This product is compatible with all standard and fast qPCR machines. Use our qPCR Selection Tool to determine which of our ROX range best suits your qPCR instrument.

Frequently Asked Questions (FAQs)

Ct values can vary depending on sample concentration, reaction optimization, equipment, and laboratory, so caution is advised when selecting a cutoff Ct value. Typically, Ct values above 35 may be considered unreliable. However, late Ct values can be observed for inefficient reactions when using low sample quantities. Good practice is to standardize cutoff values using relative or absolute quantification methods. Additionally, run and analyze melting curves or gels of products to identify any late amplification products.

ROX (6-carboxy-X-rhodamine) is used as a passive reference dye in ROX-dependent real-time PCR instruments to normalize fluorescence fluctuations that may occur due to optical variations between wells. Rn (normalized fluorescence intensity) is achieved in real-time PCR software by dividing the emission intensity of the specific signal by that of ROX.

ROX is not involved in the PCR reaction, and its fluorescence intensity does not change in proportion to the amount of DNA in each well, providing a constant fluorescence signal during amplification.

Different real-time PCR instruments require an optimal concentration of ROX for reference, usually due to the distinct optical configurations of each system (e.g., different types of excitation sources and optics used).

Adding too little or too much ROX will result in noisy signals, affecting the reaction outcomes. Therefore, it is crucial for users to:

  1. Determine the correct ROX concentration to optimize real-time PCR results, and
  2. Verify the ROX settings on the software used to set up the reaction.

A useful selection tool for commonly used systems can be found here.

We recommend a minimum of 2 minutes to activate the polymerase. Longer times up to 15 minutes can also be used without adversely affecting the enzyme.

1-step

Both cDNA synthesis and PCR occur in the same mix. This option is suitable for high-throughput applications due to speed and ease of setup. Additionally, there is less risk of contamination. However, it is not ideal for low-quality RNA samples or if cDNA needs to be stored or analyzed separately.

2-step

cDNA synthesis and PCR occur separately. This option is preferable if cDNA product needs to be retained for analysis. It also allows for higher optimization of reaction levels. It allows control over enzyme type and concentration, RNA input, and cDNA concentration, leading to higher sensitivity than the 1-step format.

No, UltraScript® RTase 20x contains an RNase inhibitor to prevent degradation and enhance sensitivity.

If you observe unusually late Ct values, try diluting the sample RNA. By doing this, you are diluting any inhibitors that may be present at a concentration that does not inhibit the reaction. Additionally, try increasing the reverse transcription reaction temperature to 55°C and increase the annealing/extension temperature. This may help overcome difficulties due to secondary structure within the sample RNA and/or primers.

In the event of potential reaction inhibition, try reducing the sample amount1 or adding 0.4 – 4.4 mg/ml BSA to the reaction2.

For more specific issues, contact technical@pcrbio.com providing the following information:

  • Amplicon size
  • Reaction setup
  • Cycling conditions
  • Screenshots of amplification plots and melt profiles

1 Scipioni et al. A SYBR Green RT-PCR assay in one tube for detection of human and bovine noroviruses and control of inhibition. Virology Journal.5:94 (2008). doi: 1186/1743-422X-5-94

2 Plante et al. Use of bovine serum albumin to improve the detection of enteric viruses from washing of vegetable produce. Applied Microbiology. 52:3 (2010) doi: https://doi.org/10.1111/j.1472-765X.2010.02989.x

Different products are likely to fluoresce at different levels. However, this does not impact the quantitative accuracy and Ct values will not differ between products.

Probe-based kits like qPCRBIO Probe 1-Step Virus Detect provide higher sensitivity and are less likely to amplify non-targets. Multiplexes can be measured by using amplicons with different fluorophores to target probes, which cannot be achieved with dyes.

Dye-based systems like qPCRBIO SyGreen 1-Step Detect and 1-Step Go detect any intact dsDNA, so they will show primer-dimer or non-target amplification. These can be separated from product peaks by melt curve analysis.

ROX is a passive reference dye, meaning it does not participate in the PCR. It is used to normalize fluorescence fluctuations not related to PCR. You can use our qPCR Selection Tool in the Resources section to determine which of our qPCR mixes are best suited for your qPCR machine.

All qPCRBIO Probe 1-Step Virus Detect 4x mixes contain MgCl2 at a concentration of 18 mM. This means the final concentration in the reaction is 4.5 mM.

Gene-specific primers can be used in the 1-step reaction.

Primers should be designed to ensure they have similar attachment temperatures, are target-specific, and do not form primer-dimers. The reverse transcription step time can be extended to 10 minutes to ensure sufficient material for attachment and amplification.

We recommend 400-1000 nM for each primer. There is some flexibility around this recommended concentration, however, primer concentrations should not exceed this range as it may significantly affect enzyme activity.

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