Outstanding assay reproducibility, sensitivity and robustness from both DNA and RNA templates, under fast thermal cycling conditions.
The rps18 gene was amplified using SensiFAST SYBR No-ROX used a 10 fold serial dilution of cDNA over four orders of magnitude. The results illustrate that SensiFAST SYBR No-ROX is a fast (early Ct), highly reproducible and sensitive kit, with do detectable primer-dimers.
The SensiFAST™ SYBR No-ROX Kit has been developed for fast, highly accurate real-time PCR and has been validated on all commonly-used real-time instruments that do not require the passive reference dye ROX.
A combination of the latest advances in buffer chemistry and PCR enhancers ensures that the SensiFAST SYBR No-ROX Kit produces reliable assay results under fast thermal cycling conditions. An antibody-mediated hot-start DNA polymerase system promotes highly-specific amplification, in turn improving assay sensitivity and dynamic range.
The SensiFAST SYBR® No-ROX Kit has been optimized to deliver optimal performance in tandem with the SensiFAST cDNA Synthesis Kit, which offers fast, unbiased cDNA synthesis, without compromising cDNA yield or coverage.
| Concentration | 2x |
| Presentation | BIO-98005: 500 x 20 µL Reactions: 5 x 1 mL BIO-98020: 2000 x 20 µL Reactions: 4 x 5 mL BIO-98050: 5000 x 20 µL Reactions: 10 x 5 mL |
| Appearance | Clear, colorless solution |
| Hot Start | Antibody mediated |
| Application | SYBR-based, qPCR, two-step RT-qPCR |
| Sample type | cDNA, DNA |
| Presentation | 5 vials / 4 vials / 10 vials |
| Storage | -20 °C, avoid exposure of the SYBR™ to light |
| Mix stability | See outer label |
| Consistency | ±0.5 Ct variance between test and reference sample |
| DNA Contamination | None detected in PCR amplification with traces overlay with the negative control on E. coli and mouse genomic DNA specific targets. |
| DNase Contamination | No detectable degradation |
Cat. No. Size
BIO-98005 500 x 20µl Reactions
BIO-98020 2000 x 20µl Reactions
BIO-98050 5000 x 20µl Reactions
Joey Liu, Ohio State University, Columbus, United States
Jeremy Drake, CHRE-Sunshine Hospital, Victoria University, Melbourne, Australia
Kevin Danastas, Discipline of Anatomy and Histology, The University of Sydney, Australia
Patrick Winterhagen, University of Hohenheim, Stuttgart, Germany
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