Spatz Stephen, Afonso Claudio L
Southeast Poultry Research Laboratory, Agricultural Research Service, United States Department of Agriculture, 934 College Station Road, Athens, GA 30605, USA.
BASE2BIO, 1945 Arlington Drive, Oshkosh, WI 54904, USA.
Vet Sci. 2024 May 26;11(6):239. doi: 10.3390/vetsci11060239.
Metagenomics offers the potential to replace and simplify classical methods used in the clinical diagnosis of human and veterinary infectious diseases. Metagenomics boasts a high pathogen discovery rate and high specificity, advantages absent in most classical approaches. However, its widespread adoption in clinical settings is still pending, with a slow transition from research to routine use. While longer turnaround times and higher costs were once concerns, these issues are currently being addressed by automation, better chemistries, improved sequencing platforms, better databases, and automated bioinformatics analysis. However, many technical options and steps, each producing highly variable outcomes, have reduced the technology's operational value, discouraging its implementation in diagnostic labs. We present a case for utilizing non-targeted RNA sequencing (NT-RNA-seq) as an ideal metagenomics method for the detection of infectious disease-causing agents in humans and animals. Additionally, to create operational value, we propose to identify best practices for the "core" of steps that are invariably shared among many human and veterinary protocols. Reference materials, sequencing procedures, and bioinformatics standards should accelerate the validation processes necessary for the widespread adoption of this technology. Best practices could be determined through "implementation research" by a consortium of interested institutions working on common samples.
宏基因组学为替代和简化用于人类及兽医传染病临床诊断的传统方法提供了可能。宏基因组学具有较高的病原体发现率和特异性,这是大多数传统方法所不具备的优势。然而,它在临床环境中的广泛应用仍有待实现,从研究到常规使用的转变较为缓慢。虽然较长的周转时间和较高的成本曾是人们关注的问题,但目前这些问题正通过自动化、更好的化学方法、改进的测序平台、更好的数据库以及自动化生物信息学分析来解决。然而,许多技术选项和步骤,每个都会产生高度可变的结果,这降低了该技术的操作价值,阻碍了其在诊断实验室中的应用。我们提出一个案例,即利用非靶向RNA测序(NT-RNA-seq)作为检测人类和动物传染病病原体的理想宏基因组学方法。此外,为了创造操作价值,我们建议为许多人类和兽医检测方案中必然共有的步骤“核心”确定最佳实践。参考材料、测序程序和生物信息学标准应加速该技术广泛应用所需的验证过程。最佳实践可通过由致力于共同样本研究的相关机构组成的联盟进行“实施研究”来确定。