用双引物寡核苷酸系统特异性检测屠宰龄家畜布鲁氏菌。

IF 4 2区 生物学 Q2 MICROBIOLOGY
Dandan Li, Wenxing Xu, Shengnan Huang, Wei An, Zhe Chao, Fang Zhao, Jun Ai, Junxing Yang, Shenyang Gao, Yuying Li, Lijun Chen, Guofeng Xu
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引用次数: 0

摘要

背景:布鲁氏菌属是引起布鲁氏菌病的革兰氏阴性菌,是一种影响动物和人类的主要人畜共患疾病。全球每年报告的人类病例超过50万例,其中许多病例由于非特异性症状和诊断困难而未得到诊断。目前的布鲁氏菌检测方法,如培养和血清学,耗时且缺乏特异性,阻碍了有效的疾病控制。本研究旨在建立一种新的基于双引物寡核苷酸(DPO)系统的布鲁氏菌特异性PCR检测方法。这种方法提供了一种快速、敏感和可现场部署的工具,以改善布鲁氏菌病的早期诊断和控制。方法:建立了基于DPO系统的布鲁氏菌特异性PCR检测方法。该方法利用两组引物设计专门针对布鲁氏菌基因组的独特区域。使用家畜中常见的15种非靶细菌,包括大肠杆菌、沙门氏菌和弯曲杆菌,验证了该检测方法的特异性。使用从一系列布鲁氏菌菌株中提取的DNA评估了灵敏度,并使用连续稀释的样品评估了检测限。在500只屠宰龄羊的样品上进一步测试了该分析方法的性能,以评估其在现场条件下的适用性。结果:基于dpo的PCR检测显示出极好的特异性,在测试的15种非目标细菌中均未观察到交叉反应性。该方法能够在低DNA浓度下检测布鲁氏菌,每次反应的灵敏度限约为5.3 × 101 CFU/mL。在现场验证中,对屠宰龄羊的500个样本进行了测试,该分析成功地确定了动物中的布鲁氏菌感染,没有假阳性或假阴性。与传统PCR相比,DPO-PCR方法具有更高的特异性和更快的结果,显著缩短了诊断时间。结论:基于dpo的PCR方法为屠宰龄牲畜布鲁氏菌的检测提供了一种高度特异性、快速和经济的工具。这种方法适用于屠宰场的常规监测,为在牲畜和公共卫生环境中早期发现和控制布鲁氏菌病提供了一种有希望的解决方案。该检测方法的简单性和稳健性使其成为现场部署的理想选择,特别是在资源有限的环境中,及时控制疾病至关重要。临床试验号:不适用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specific detection of Brucella spp. from slaughter-aged livestock using a dual priming oligonucleotide system.

Background: Brucella spp. are Gram-negative bacteria causing brucellosis, a major zoonotic disease affecting animals and humans. Annually, over 500,000 human cases are reported globally, with many undiagnosed due to nonspecific symptoms and diagnostic challenges. Current methods for Brucella detection, such as culture and serology, are time-consuming and lack specificity, hindering effective disease control. This study aims to develop a novel dual priming oligonucleotide (DPO) system-based PCR method for the specific detection of Brucella spp. in slaughter-aged livestock. This approach provides a rapid, sensitive, and field-deployable tool to improve early diagnosis and control of brucellosis.

Methods: We developed a DPO system-based PCR assay for the specific detection of Brucella spp. in slaughter-aged livestock. The method utilizes two sets of primers designed to specifically target unique regions of the Brucella genome. The assay was validated for specificity using a panel of 15 non-target bacterial species commonly found in livestock, including Escherichia coli, Salmonella spp., and Campylobacter spp. Sensitivity was evaluated using DNA extracted from a range of Brucella strains, with detection limits assessed using serially diluted samples. The assay's performance was further tested on 500 samples from slaughter-aged sheep to assess its applicability in field conditions.

Results: The DPO-based PCR assay demonstrated excellent specificity, with no cross-reactivity observed in any of the 15 non-target bacterial species tested. The assay was able to detect Brucella spp. at low DNA concentrations, with a sensitivity limit of approximately 5.3 × 101 CFU/mL of the Brucella per reaction. In the field validation, 500 samples from slaughter-aged sheep were tested, and the assay successfully identified Brucella infections in animals with no false positives or negatives. When compared to conventional PCR, the DPO-PCR method exhibited improved specificity and faster results, with a significantly reduced time to diagnosis.

Conclusions: The DPO-based PCR assay provides a highly specific, rapid, and cost-effective tool for the detection of Brucella spp. in slaughter-aged livestock. This method is suitable for routine surveillance in slaughterhouses, offering a promising solution for early detection and control of brucellosis in both livestock and public health contexts. The assay's simplicity and robustness make it an ideal candidate for field deployment, particularly in resource-limited settings where timely disease control is crucial.

Clinical trial number: Not applicable.

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来源期刊
BMC Microbiology
BMC Microbiology 生物-微生物学
CiteScore
7.20
自引率
0.00%
发文量
280
审稿时长
3 months
期刊介绍: BMC Microbiology is an open access, peer-reviewed journal that considers articles on analytical and functional studies of prokaryotic and eukaryotic microorganisms, viruses and small parasites, as well as host and therapeutic responses to them and their interaction with the environment.
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