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Fast SYBR Green qPCR Master Mix
2 × Fast SYBR Green qPCR Master Mix
Cat. #: BSY3323
Availability: In Stock
Options:
- 1 mL (None ROX)
- 1 mL (Low ROX)
- 1 mL (High ROX)
List Price: $99.00
Product Information
Description:
2× Fast SYBR Green qPCR Master Mix (None ROX) is a special 2× premix for qPCR reaction using SYBR Green I chimeric fluorescence method, which contains all qPCR components except primers and DNA templates, which can reduce the operation steps, shorten the time of adding samples, and reduce the chance of contamination. The core component is genetically engineered hot-start Taq DNA Polymerase, which effectively seals off DNA polymerase activity and prevents non-specific amplification at low temperatures by efficiently combining monoclonal antibody and Taq DNA Polymerase, with many advantages such as high specificity and high sensitivity and is coupled with a reaction buffer optimized for qPCR. It is very suitable for high specificity and high sensitivity qPCR reaction. This product is a 2× premixed reagent containing the optimal concentration of SYBR Green I for qPCR reaction, which can obtain a good standard curve in a wide quantitative region, accurate quantification of target genes, good reproducibility, high confidence, and the fastest qPCR reaction can be completed in 30 minutes.
Key Features:
- Fast & easy: 2× premixed, requires only primers and DNA, completing qPCR in 30 minutes.
- High precision: Hot-start Taq polymerase prevents non-specific amplification.
- Reliable results: Optimized buffer ensures accurate quantification and good reproducibility.
Storage & Stability
Ship with wet ice. Store at -20°C without light, valid for 12 months. Avoid freeze-thaw cycles. After thawing, it can be stably stored at 4℃ for one month without light.
Performance Data
- Li, J., et al.Downregulation of enhancer RNA AC003092.1 is associated with poor prognosis in kidney renal clear cell carcinoma.Sci Rep14,13475(2024).PMID 38866983IF 4.6
- Li, Q., et al.Target analysis and identification of curcumin against vascular calcification.Sci Rep14,17344(2024).PMID 39069521IF 4.6
Chen, Y., et al.B-cell hub genes play a cardiovascular pathogenic role of in childhood obesity and Kawasaki disease as revealed by transcriptomics-based analyses.Sci Rep14,15671(2024).PMID 38977728IF 4.6 - Tan, S., et al.Identification of Transcriptomic Signatures of Pancreatic Ductal Adenocarcinoma-Derived Exosomes That Promote Macrophage M2 Polarization and Predict Prognosis: S100A9 Reveals Tumor Progression.Clin Med Insights Oncol18,11795549241239042(2024).PMID 38510315IF 2.2
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