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多重实时 SYBR Green I PCR assays 用于同时检测粪便样本中的 15 种常见肠道病原体。

Multiplex real-time SYBR Green I PCR assays for simultaneous detection of 15 common enteric pathogens in stool samples.

机构信息

College of Life Sciences and Food Engineering, Hebei University of Engineering, Handan, 056038, China.

Chinese PLA Center for Disease Control and Prevention, Beijing, 100071, China.

出版信息

Mol Cell Probes. 2020 Oct;53:101619. doi: 10.1016/j.mcp.2020.101619. Epub 2020 Jun 18.

Abstract

Diarrheal diseases account for more than 50% of foodborne diseases worldwide, the majority of which occur in infants and young children. The traditional bacterial detection method is complex and time-consuming; therefore, it is necessary to establish a rapid and convenient detection method that can detect multiple pathogens simultaneously. In this study, we developed a set of five multiplex real-time SYBR Green I PCR assays to simultaneously detect 15 common enteric pathogens based on the Homo-Tag Assisted Non-Dimer system. These assays effectively reduced primer-dimer formation and improved the stability, uniformity, and amplification efficiency of multiplex PCR. The detection limit of the multiplex SYBR Green I PCR system was approximately 10-10 CFU/mL for stool specimens. Furthermore, we vitrified heat-unstable components on the cap of a reaction tube, showing that Taq DNA polymerase, dNTPs, primers, and SYBR Green I remained stable at 25 °C. In summary, we developed multiplex SYBR Green I PCR assays that can simultaneously detect 15 enteric pathogens. This method is comprehensive, rapid, inexpensive, accurate, and simple and displays high specificity.

摘要

腹泻病占全世界食源性疾病的 50%以上,其中大部分发生在婴儿和幼儿中。传统的细菌检测方法复杂且耗时;因此,有必要建立一种快速便捷的检测方法,能够同时检测多种病原体。在本研究中,我们开发了一套基于 Homo-Tag 辅助非二聚体系统的五重实时 SYBR Green I PCR 检测方法,用于同时检测 15 种常见的肠道病原体。这些检测方法有效地减少了引物二聚体的形成,提高了多重 PCR 的稳定性、均一性和扩增效率。多重 SYBR Green I PCR 系统的检测限约为 10-10 CFU/mL 粪便标本。此外,我们将不稳定的热成分冷冻在反应管的管盖上,结果表明 Taq DNA 聚合酶、dNTPs、引物和 SYBR Green I 在 25°C 下保持稳定。总之,我们开发了可以同时检测 15 种肠道病原体的多重 SYBR Green I PCR 检测方法。该方法全面、快速、廉价、准确、简单,具有高特异性。

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