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基于重组酶聚合酶的B族链球菌等温可视化扩增快速分子诊断平台的建立与应用

Establishment and application of a rapid molecular diagnostic platform for the isothermal visual amplification of group B Streptococcus based on recombinase polymerase.

作者信息

Liu Meilin, Wang Huan, Chu Chu, Min Fanli, Sun Lizhou, Zhang Teng, Meng Qian

机构信息

Obstetrical Department, Lianyungang Maternal and Child Health Hospital, Lianyungang, Jiangsu, China.

Obstetrical Department, The First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu, China.

出版信息

Front Cell Infect Microbiol. 2024 Feb 23;14:1281827. doi: 10.3389/fcimb.2024.1281827. eCollection 2024.

Abstract

With growing concerns about Group B streptococcal (GBS) infections and their adverse effects on perinatal pregnancies, including infection, premature delivery, neonatal septicemia, and meningitis, it is urgent to promote GBS screening at all pregnancy stages. The purpose of this study is to establish a device-independent, fast, sensitive, and visual GBS detection method. Taking advantage of the characteristics of the recombinase polymerase isothermal amplification (RPA), the activity of the nfo nuclease cleavage base analog (tetrahydrofuran, THF) site, and the advantages of visual reading of the lateral flow chromatography strip (LFS), a GBS detection method was developed. This method focused on the conservative region of the Christie-Atkins-Munch-Petersen factor encoded by the cfb gene, a virulence gene specific to GBS. Two forward primers, two biotin-labeled reverse primers, and one fluorescein isothiocyanate (FITC)-labeled and C3spacer-blocked probe were designed. The study involved optimizing the primer pair and probe combination, determining the optimal reaction temperature and time, evaluating specificity, analyzing detection limits, and testing the method on 87 vaginal swabs from perinatal pregnant women. The results showed that the visual detection method of GBS-RPA-LFS, using the cfb-F1/R2/P1 primer probe, could detect GBS within 15 min at the temperature ranging from 39°C to 42°C. Furthermore, the method specifically amplified only GBS, without cross-reacting with pathogens like , , , , , , , , , , , , , or . It could detect a minimum of 100 copies per reaction. In clinical 98 samples of vaginal swabs from pregnant women, the agreement rate between the GBS-RPA-LFS method and TaqMan real-time fluorescence quantification method was 95.92%. In conclusion, this study successfully established a combined RPA and LFS GBS detection platform, with short reaction time, high sensitivity, high specificity, portability, and device independence, providing a feasible strategy for clinical GBS screening.

摘要

随着对B族链球菌(GBS)感染及其对围产期妊娠的不良影响(包括感染、早产、新生儿败血症和脑膜炎)的日益关注,在所有妊娠阶段推广GBS筛查迫在眉睫。本研究的目的是建立一种与设备无关、快速、灵敏且可视化的GBS检测方法。利用重组酶聚合酶等温扩增(RPA)的特性、nfo核酸酶切割碱基类似物(四氢呋喃,THF)位点的活性以及侧向流动色谱条(LFS)可视化读数的优势,开发了一种GBS检测方法。该方法聚焦于由cfb基因编码的克里斯蒂-阿特金斯-蒙克-彼得森因子的保守区域,cfb基因是GBS特有的毒力基因。设计了两条正向引物、两条生物素标记的反向引物以及一条异硫氰酸荧光素(FITC)标记且带有C3间隔区阻断的探针。该研究包括优化引物对和探针组合、确定最佳反应温度和时间、评估特异性、分析检测限以及在87份围产期孕妇阴道拭子上测试该方法。结果表明,使用cfb-F1/R2/P1引物探针的GBS-RPA-LFS可视化检测方法在39℃至42℃的温度范围内15分钟内可检测到GBS。此外,该方法仅特异性扩增GBS,不与 、 、 、 、 、 、 、 、 、 、 、 或 等病原体发生交叉反应。每个反应最低可检测到100个拷贝。在临床98份孕妇阴道拭子样本中,GBS-RPA-LFS方法与TaqMan实时荧光定量方法的符合率为95.92%。总之,本研究成功建立了一个结合RPA和LFS的GBS检测平台,具有反应时间短、灵敏度高、特异性高、便携且与设备无关的特点,为临床GBS筛查提供了一种可行的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1202/10920233/e9df369ffe1a/fcimb-14-1281827-g001.jpg

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