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Standing of nucleic acid testing strategies in veterinary diagnosis laboratories to uncover Mycobacterium tuberculosis complex members

机译:核酸检测策略在兽医诊断实验室中对结核分枝杆菌复杂成员的发现

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摘要

Nucleic acid testing (NAT) designate any molecular approach used for the detection, identification, and characterization of pathogenic microorganisms, enabling the rapid, specific, and sensitive diagnostic of infectious diseases, such as tuberculosis. These assays have been widely used since the 90s of the last century in human clinical laboratories and, subsequently, also in veterinary diagnostics. Most NAT strategies are based in the polymerase chain reaction (PCR) and its several enhancements and variations. From the conventional PCR, real-time PCR and its combinations, isothermal DNA amplification, to the nanotechnologies, here we review how the NAT assays have been applied to decipher if and which member of the Mycobacterium tuberculosis complex is present in a clinical sample. Recent advances in DNA sequencing also brought new challenges and have made possible to generate rapidly and at a low cost, large amounts of sequence data. This revolution with the high-throughput sequencing (HTS) technologies makes whole genome sequencing (WGS) and metagenomics the trendiest NAT strategies, today. The ranking of NAT techniques in the field of clinical diagnostics is rising, and we provide a SWOT (Strengths, Weaknesses, Opportunities, and Threats) analysis with our view of the use of molecular diagnostics for detecting tuberculosis in veterinary laboratories, notwithstanding the gold standard being still the classical culture of the agent. The complementary use of both classical and molecular diagnostics approaches is recommended to speed the diagnostic, enabling a fast decision by competent authorities and rapid tackling of the disease.
机译:核酸检测(NAT)指用于检测,鉴定和表征病原微生物的任何分子方法,可对结核病等传染性疾病进行快速,特异性和灵敏的诊断。自上世纪90年代以来,这些测定已广泛用于人类临床实验室,随后也用于兽医诊断。大多数NAT策略都基于聚合酶链反应(PCR)及其一些增强和变化。从常规PCR,实时PCR及其组合,等温DNA扩增到纳米技术,这里我们回顾一下NAT分析如何应用于解密临床样品中是否存在结核分枝杆菌复合物以及其成员。 DNA测序的最新进展也带来了新的挑战,并使得以低成本快速生成大量序列数据成为可能。高通量测序(HTS)技术的这一革命使全基因组测序(WGS)和宏基因组学成为当今最流行的NAT策略。 NAT技术在临床诊断领域的排名不断提高,我们提供了SWOT(优势,劣势,机会和威胁)分析,尽管我们使用了黄金诊断标准,但我们仍将分子诊断技术用于兽医实验室中的结核病检测。仍然是代理商的经典文化。建议同时使用经典诊断方法和分子诊断方法,以加快诊断速度,从而使主管部门能够快速做出决定并迅速解决该疾病。

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