Scientific Reports (Jul 2015)

RETRACTED ARTICLE: Polymerase Spiral Reaction (PSR): A novel isothermal nucleic acid amplification method

  • Wei Liu,
  • Derong Dong,
  • Zhan Yang,
  • Dayang Zou,
  • Zeliang Chen,
  • Jing Yuan,
  • Liuyu Huang

DOI
https://doi.org/10.1038/srep12723
Journal volume & issue
Vol. 5, no. 1
pp. 1 – 8

Abstract

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Abstract In this study, we report a novel isothermal nucleic acid amplification method only requires one pair of primers and one enzyme, termed Polymerase Spiral Reaction (PSR) with high specificity, efficiency and rapidity under isothermal condition. The recombinant plasmid of bla NDM-1 was imported to Escherichia coli BL21 and selected as the microbial target. PSR method employs a Bst DNA polymerase and a pair of primers designed targeting the bla NDM-1 gene sequence. The forward and reverse Tab primer sequences are reverse to each other at their 5’ end (Nr and N), whereas their 3’ end sequences are complementary to their respective target nucleic acid sequences. The PSR method was performed at a constant temperature 61 °C–65 °C, yielding a complicated spiral structure. PSR assay was monitored continuously in a real-time turbidimeter instrument or visually detected with the aid of a fluorescent dye (SYBR Greenı) and could be finished within 1 h with a high accumulation of 109 copies of the target and a fine sensitivity of 6 CFU per reaction. Clinical evaluation was also conducted using PSR, showing high specificity of this method. The PSR technique provides a convenient and cost-effective alternative for clinical screening, on-site diagnosis and primary quarantine purposes.