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Product NameCatalog NoSizePrice
Arraystar SYBR® Green qPCR Master Mix(ROX-), 5mL AS-MR-005-5 5mL $345.00
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Arraystar SYBR® Green qPCR Master Mix(ROX-), 25mL AS-MR-005-25 25mL $1,155.00
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Arraystar SYBR® Green qPCR Master Mix(ROX+), 5mL AS-MR-006-5 5mL $345.00
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Arraystar SYBR® Green qPCR Master Mix(ROX+), 25mL AS-MR-006-25 25mL $1,155.00
Add To Cart

Arraystar SYBR® Green real-time quantitative PCR Master Mix is a reaction mix containing all components, with the exception of template and primers. It is optimized for real-time quantitative PCR assays. It combines the hot-start technology of Taq DNA polymerase and SYBR® Green I fluorescent dye. The Master Mix is supplied at a 2 x concentration and contains Taq DNA polymerase, SYBR® Green I dye, MgCl2, dNTPs and stabilizers.

High stability and good repeatability

Higher Specificity

Fig1. qPCR results of Master Mix from Arraystar and Competitor A.  miRStar™ Master Mix yielded PCR products(1 and 2) with single dissociation peaks, while PCR products using Master Mix of competitor A (3 and 4) had multiple dissociation peaks

miR-21 silencing ameliorates experimental autoimmune encephalomyelitis by promoting the differentiation of IL-10-producing B cells. Wang H, et al. Oncotarget, 2017

Long noncoding RNA HAS2-AS1 mediates hypoxia-induced invasiveness of oral squamous cell carcinoma. Zhu G, et al. Molecular Carcinogenesis, 2017  

Mir-344b-1-3p targets Tlr2 and negatively regulates Tlr2 signaling pathway. Wu Y,  et al. International Journal of COPD, 2017

Scutellarin suppresses human colorectal cancer metastasis and angiogenesis by targeting ephrinb2. Zhu P T, et al. Am J Transl Res, 2017

Plasma lncRNA GAS8-AS1 as a Potential Biomarker of Papillary Thyroid Carcinoma in Chinese Patients. Zhang D,et al. International Journal of Endocrinology, 2017  

Anxiety-like behavior and dysregulation of miR-34a in triple transgenic mice of Alzheimer's disease. Y.-L. Zhang, et al. Eur Rev Med Pharmacol Sci, 2016

Physiological and transcriptional responses of Nitrosomonas europaea to TiO2 and ZnO nanoparticles and their mixtures. Yu R, Wu J, Liu M, et al. Environmental Science and Pollution Research, 2016