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基于发夹型 DNA zyme 的氧化石墨烯电化学生物传感器用于牛奶中致吐性蜡样芽胞杆菌的检测

Catalytic hairpin assembly combined with graphene oxide for the detection of emetic Bacillus cereus in milk.

机构信息

State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang, 330047, PR China.

Zystein LLC, Fayetteville, AR 72703.

出版信息

J Dairy Sci. 2019 Jun;102(6):4945-4953. doi: 10.3168/jds.2018-15812. Epub 2019 Mar 21.

Abstract

A fluorescence assay combined with PCR, catalytic hairpin assembly (CHA), and graphene oxide (GO) was established to detect emetic Bacillus cereus in milk samples. The processes of the assay are not new, but components of the processes make the assay useful. Two partially complementary hairpin probes (H1 and FAM-H2) were designed according to the target single-strand DNA (ssDNA). The CHA reaction could be initiated only by the target ssDNA, which was generated by the denaturation of PCR amplicons. In the absence of the target ssDNA, CHA reaction could not be triggered, which caused the H1 and FAM-H2 adsorbing on the surface of GO and exhibiting a low fluorescence intensity. Addition of the target ssDNA resulted in opening of the hairpin H1 that subsequently hybridized with H2. Then, target ssDNA would be replaced from the H1 and recycled to promote another CHA reaction. Through the CHA reaction, multiple H1-H2 duplexes were generated that could not adsorb on the surface of GO. Thus, a strong fluorescence signal would be obtained. The assay showed a limit of detection for emetic B. cereus of 6.2 × 10 cfu/mL in pure culture and 5.9 × 10 cfu/mL in spiked milk without enrichment. By changing the PCR primer, the assay developed in this study had potential to detect other bacteria.

摘要

建立了一种荧光分析方法,结合聚合酶链反应(PCR)、催化发夹组装(CHA)和氧化石墨烯(GO),用于检测牛奶样品中的呕吐型蜡样芽胞杆菌。该分析方法的过程并不新颖,但过程中的成分使其具有实用性。根据目标单链 DNA(ssDNA)设计了两条部分互补的发夹探针(H1 和 FAM-H2)。只有当目标 ssDNA 由 PCR 扩增子变性产生时,CHA 反应才能被引发。在没有目标 ssDNA 的情况下,CHA 反应不能被触发,这导致 H1 和 FAM-H2 吸附在 GO 表面并表现出低荧光强度。添加目标 ssDNA 会导致发夹 H1 打开,随后与 H2 杂交。然后,目标 ssDNA 将从 H1 中取代并被回收,以促进另一个 CHA 反应。通过 CHA 反应,生成了多个不能吸附在 GO 表面的 H1-H2 双链体,从而获得了强荧光信号。该分析方法在纯培养物中的呕吐型蜡样芽胞杆菌检测限为 6.2×10 cfu/mL,在未富集的牛奶中的检测限为 5.9×10 cfu/mL。通过改变 PCR 引物,本研究开发的分析方法有可能检测其他细菌。

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