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诊断和监测家畜传染病的新技术:撒哈拉以南非洲面临的挑战

New technologies to diagnose and monitor infectious diseases of livestock: challenges for sub-Saharan Africa.

作者信息

King Donald P, Madi Miki, Mioulet Valerie, Wadsworth Jemma, Wright Caroline F, Valdazo-González Begoña, Ferris Nigel P, Knowles Nick J, Hammond Jef

机构信息

Institute for Animal Health, Pirbright.

出版信息

Onderstepoort J Vet Res. 2012 Jun 20;79(2):456. doi: 10.4102/ojvr.v79i2.456.

Abstract

Using foot-and-mouth disease (FMD) as an example, this review describes new tools that can be used to detect and characterise livestock diseases. In recent years, molecular tests that can detect and characterise pathogens in a diverse range of sample types have revolutionised laboratory diagnostics. In addition to use in centralised laboratories, there are opportunities to locate diagnostic technologies close to the animals with suspected clinical signs. Work in this area has developed simple-to-use lateral-flow devices for the detection of FMD virus (FMDV), as well as new hardware platforms to allow molecular testing to be deployed into the field for use by non-specialists. Once FMDV has been detected, nucleotide sequencing is used to compare field strains with reference viruses. Transboundary movements of FMDV are routinely monitored using VP1 sequence data, while higher resolution transmission trees (at the farm-to-farm level) can be reconstructed using full-genome sequencing approaches. New technologies such as next-generation sequencing technologies are now being applied to dissect the viral sequence populations that exist within single samples. The driving force for the use of these technologies has largely been influenced by the priorities of developed countries with FMD-free (without vaccination) status. However, it is important to recognise that these approaches also show considerable promise for use in countries where FMD is endemic, although further modifications (such as sample archiving and strain and serotype characterisation) may be required to tailor these tests for use in these regions. Access to these new diagnostic and sequencing technologies in sub-Saharan Africa have the potential to provide novel insights into FMD epidemiology and will impact upon improved strategies for disease control.Effective control of infectious diseases is reliant upon accurate diagnosis of clinical cases using laboratory tests, together with an understanding of factors that impact upon the epidemiology of the infectious agent. A wide range of new diagnostic tools and nucleotide sequencing methods are used by international reference laboratories to detect and characterise the agents causing outbreaks of infectious diseases. In the past, high costs (initial capital expenses, as well as day-to-day maintenance and running costs) and complexity of the protocols used to perform some of these tests have limited the use of these methods in smaller laboratories. However, simpler and more cost-effective formats are now being developed that offer the prospect that these technologies will be even more widely deployed into laboratories particularly those in developing regions of the world such as sub-Saharan Africa.

摘要

以口蹄疫为例,本综述介绍了可用于检测和鉴定家畜疾病的新工具。近年来,能够检测和鉴定多种样本类型中病原体的分子检测方法彻底改变了实验室诊断。除了在集中实验室使用外,还有机会将诊断技术部署到出现疑似临床症状的动物附近。该领域的工作开发了用于检测口蹄疫病毒(FMDV)的简单易用的侧向流动装置,以及新的硬件平台,以便将分子检测技术应用于现场供非专业人员使用。一旦检测到FMDV,就会使用核苷酸测序将田间毒株与参考病毒进行比较。FMDV的跨境传播通常使用VP1序列数据进行监测,而更高分辨率的传播树(在农场到农场层面)可以使用全基因组测序方法重建。诸如新一代测序技术等新技术现在正被用于剖析单个样本中存在的病毒序列群体。使用这些技术的驱动力在很大程度上受到具有无口蹄疫(不接种疫苗)状态的发达国家优先事项的影响。然而,必须认识到,这些方法在口蹄疫流行的国家也显示出相当大的应用前景,尽管可能需要进一步修改(如样本存档以及毒株和血清型鉴定),以便针对这些地区调整这些检测方法。撒哈拉以南非洲地区获得这些新的诊断和测序技术有可能为口蹄疫流行病学提供新的见解,并将影响改善疾病控制策略。传染病的有效控制依赖于使用实验室检测对临床病例进行准确诊断,以及对影响传染病流行病学因素的了解。国际参考实验室使用各种新的诊断工具和核苷酸测序方法来检测和鉴定导致传染病爆发的病原体。过去,执行其中一些检测所使用的方案成本高昂(初始资本支出以及日常维护和运营成本)且复杂,限制了这些方法在较小实验室中的使用。然而,现在正在开发更简单、更具成本效益的形式,这使得这些技术有望更广泛地应用于实验室,特别是世界上发展中地区(如撒哈拉以南非洲)的实验室。

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