PerfeCTa Multiplex qPCR SuperMix, Low ROX, 200 Reactions

Code: 95108-200

PerfeCTa MultiPlex qPCR SuperMix offers sensitive and robust multiplex qPCR assay performance, with user-friendly 1-tube reagents

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Quantabio PerfeCTa MultiPlex qPCR SuperMix offers sensitive and robust multiplex qPCR assay performance, with user-friendly 1-tube reagents.

  • Available in two versions: Universal and Low-ROX
  • Maximum assay sensitivity and target precision with stringent, ultrapure, and high-yielding AccuStart II hot start Taq DNA polymerase
  • Broad linear detection range with cDNA or genomic DNA templates
  • Enables highly sensitive 4 target detection assays with coamplified, robust internal positive controls
  • Supports efficient vortex mixing with proprietary anti-foaming technology

Quantabio PerfeCTa Multiplex qPCR SuperMix is a 2X concentrated, ready-to-use reaction cocktail that contains all the necessary components except primers, probe(s), and DNA template for highly-multiplexed, real-time quantitative PCR. This reagent formulation pushes the boundary of multiplex qPCR by enabling unbiased amplification of up to 5 targets in a single amplification reaction. Suppression of low abundance targets by high abundance reference targets during co-amplification is a common problem in multiplex PCR in which individual assay sensitivity can be significantly compromised. PerfeCTa Multiplex qPCR SuperMix, Low ROX delivers assay performance with exceptionally broad, linear detection and limit-of-detection (LOD) sensitivity to multiplexed qPCR that is comparable to single-plex assay performance without the need for rigorous titration of individual primer assays. A key component of this SuperMix is ultra-pure AccuStart hot start Taq DNA polymerase that is completely arrested prior to the initial PCR denaturation step. Upon heat activation at 95°C, the antibodies are rapidly and irreversibly denatured, releasing a fully active high-yielding Taq DNA polymerase mutant. This enables specific and efficient primer extension with the convenience of ambient room-temperature reaction assembly.

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