4.5 Review

Properties of targeted preamplification in DNA and cDNA quantification

Journal

EXPERT REVIEW OF MOLECULAR DIAGNOSTICS
Volume 15, Issue 8, Pages 1085-1100

Publisher

TAYLOR & FRANCIS AS
DOI: 10.1586/14737159.2015.1057124

Keywords

experimental design; multiplex PCR; preamplification; primer-pools; quantitative real-time PCR; single-cell analysis; targeted preamplification

Categories

Funding

  1. Assar Gabrielssons Research Foundation
  2. LUA/ALF Vastra Gotaland
  3. Johan Jansson Foundation for Cancer Research
  4. Swedish Cancer Society
  5. Swedish Society for Medical Research
  6. Swedish Research Council
  7. Swedish Society for Medicine
  8. BioCARE National Strategic Research Program at University of Gothenburg
  9. VINNOVA
  10. Wilhelm and Martina Lundgren Foundation for Scientific Research
  11. Ake Winbergs Foundation
  12. ERDF [LK21305, BIOCEV CZ.1.05/1.1.00/02.0109]
  13. Ministry of Youth, Education and Sports of the Czech Republic [AV0Z50520701]
  14. Academy of Science, Czech Republic

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Objective: Quantification of small molecule numbers often requires preamplification to generate enough copies for accurate downstream enumerations. Here, we studied experimental parameters in targeted preamplification and their effects on downstream quantitative real-time PCR (qPCR). Methods: To evaluate different strategies, we monitored the preamplification reaction in real-time using SYBR Green detection chemistry followed by melting curve analysis. Furthermore, individual targets were evaluated by qPCR. Result: The preamplification reaction performed best when a large number of primer pairs was included in the primer pool. In addition, preamplification efficiency, reproducibility and specificity were found to depend on the number of template molecules present, primer concentration, annealing time and annealing temperature. The amount of nonspecific PCR products could also be reduced about 1000-fold using bovine serum albumin, glycerol and formamide in the preamplification. Conclusion: On the basis of our findings, we provide recommendations how to perform robust and highly accurate targeted preamplification in combination with qPCR or next-generation sequencing.

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