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Comparison of SYBR Green and TaqMan Methods in Quantitative Real-time Polymerase Chain Reaction Analysis of Four Adenosine Receptor Subtypes

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Journal Adv Biomed Res
Date 2014 Apr 25
PMID 24761393
Citations 68
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Abstract

Background: Real-time polymerase chain reaction (PCR) is based on the revolutionary method of PCR. This technique is the result of PCR enormous sensitivity and real-time monitoring combination. In quantitative gene expression analysis, two methods have more popularity, SYBR Green and TaqMan, SYBR Green is relatively cost benefit and easy to use and technically based on binding the fluorescent dye to double-stranded deoxyribonucleic acid (dsDNA) where TaqMan method has more expensive and based on dual labeled oligonucleotide and exonuclease activity of Taq polymerase enzyme. Specificity is the most important concern with the usage of any non-specific dsDNA-binding Dyes such as SYBR Green whiles more specificity showed by labeled oligonucleotide method such as TaqMan. In this study, we compared two common RT PCR methods, TaqMan and SYBR Green in measurement gene expression profile of adenosine receptors.

Materials And Methods: Gene expression profiles of A1, A2A, A2B and A3 Adenosine receptors were analyzed by optimized TaqMan and SYBR Green quantitative RT PCR in breast cancer tissues. Primary expression data was normalizing by B. actin reference gene.

Results: Efficiencies were calculated more than 95% for TaqMan and SYBR Green methods in all genes. The correlations between means of normalized data of each gene in two methods were positive and significant (P < 0.05).

Conclusion: Data analysis showed that with the use of high performance primer and by use proper protocols and material we can make precise data by SYBR Green as TaqMan method. In other word by optimization of SYBR Green method, its performance and quality could be comparable to TaqMan method.

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References
1.
Connor R, Mohri H, Cao Y, Ho D . Increased viral burden and cytopathicity correlate temporally with CD4+ T-lymphocyte decline and clinical progression in human immunodeficiency virus type 1-infected individuals. J Virol. 1993; 67(4):1772-7. PMC: 240220. DOI: 10.1128/JVI.67.4.1772-1777.1993. View

2.
Huang S, Yi M, Palmer E, Marsh D . A dominant T cell receptor beta-chain in response to a short ragweed allergen, Amb a 5. J Immunol. 1995; 154(11):6157-62. View

3.
Manzin A, Solforosi L, Bianchi D, Gabrielli A, Giostra F, Bruno S . Viral load in samples from hepatitis C virus (HCV)-infected patients with various clinical conditions. Res Virol. 1995; 146(4):279-84. DOI: 10.1016/0923-2516(96)80572-3. View

4.
Klein D . Quantification using real-time PCR technology: applications and limitations. Trends Mol Med. 2002; 8(6):257-60. DOI: 10.1016/s1471-4914(02)02355-9. View

5.
Fasco M, Treanor C, Spivack S, Figge H, Kaminsky L . Quantitative RNA-polymerase chain reaction-DNA analysis by capillary electrophoresis and laser-induced fluorescence. Anal Biochem. 1995; 224(1):140-7. DOI: 10.1006/abio.1995.1019. View